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WO2018176626A1 - Appareil de type guide d'air, procédé de commande de guide d'air, climatiseur et dispositif informatique - Google Patents

Appareil de type guide d'air, procédé de commande de guide d'air, climatiseur et dispositif informatique Download PDF

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Publication number
WO2018176626A1
WO2018176626A1 PCT/CN2017/086401 CN2017086401W WO2018176626A1 WO 2018176626 A1 WO2018176626 A1 WO 2018176626A1 CN 2017086401 W CN2017086401 W CN 2017086401W WO 2018176626 A1 WO2018176626 A1 WO 2018176626A1
Authority
WO
WIPO (PCT)
Prior art keywords
air
air outlet
wind
door body
assembly
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2017/086401
Other languages
English (en)
Chinese (zh)
Inventor
闫长林
陈良锐
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
GD Midea Air Conditioning Equipment Co Ltd
Original Assignee
Guangdong Midea Refrigeration Equipment Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201710200676.9A external-priority patent/CN106839127A/zh
Priority claimed from CN201710200678.8A external-priority patent/CN106907774A/zh
Application filed by Guangdong Midea Refrigeration Equipment Co Ltd filed Critical Guangdong Midea Refrigeration Equipment Co Ltd
Publication of WO2018176626A1 publication Critical patent/WO2018176626A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/02Ducting arrangements
    • F24F13/06Outlets for directing or distributing air into rooms or spaces, e.g. ceiling air diffuser
    • F24F13/065Outlets for directing or distributing air into rooms or spaces, e.g. ceiling air diffuser formed as cylindrical or spherical bodies which are rotatable
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/08Air-flow control members, e.g. louvres, grilles, flaps or guide plates
    • F24F13/10Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers
    • F24F13/12Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers built up of sliding members

Definitions

  • the present invention relates to the field of air conditioner technology, and in particular to an air guiding device, a wind guiding control method, an air conditioner, a computer device, and a computer readable storage medium.
  • the air conditioner in the related art usually has a door at each air outlet to open or close the air outlet to realize intermediate air outlet or three-sided air outlet, and multiple door bodies increase the cost of the air conditioner, and seriously affect the appearance of the air conditioner. Beautiful, reducing user satisfaction.
  • the air conditioner in the related art is generally divided into a front air outlet and a side air outlet, and it is difficult to realize an air outlet mode combining a front air outlet and a side air outlet, and the air guide is usually used to guide the wind, so that the air guide range is limited, and the guide air is limited. The comfort of cooling and heating of the air conditioner is reduced, and the user's use experience is not good.
  • an embodiment of the first aspect of the present invention proposes an air guiding device.
  • an air guiding device is also proposed.
  • a wind guiding control method is also proposed.
  • an air conditioner is also proposed.
  • an air conditioner is also proposed.
  • a computer device is also proposed.
  • a computer readable storage medium is also proposed.
  • the present invention provides an air guiding device for an air conditioner, the air conditioner comprising a housing and a wind wheel assembly, the housing is provided with an intermediate air outlet and located in the middle Two side air outlets on both sides of the air outlet, the wind wheel assembly is disposed inside the casing, and the wind wheel assembly includes two wind wheels that rotate in opposite directions during operation to realize two air outlet zones, and the air guiding device comprises: air duct assembly Connected to the wind wheel assembly, two wind wheels are installed inside the air duct assembly, the air duct assembly is disposed inside the housing at the two air outlet areas; the door body assembly is mounted on the housing, and the door body assembly includes The first door body and the second door body are matched, and the first door body and the second door body are closed to close the middle air outlet and the two side air outlets, and the first door body and the second door body are moved to different positions. Open the middle air outlet, or the middle air outlet and the two side air outlets.
  • the air guiding device provided by the present invention is used for an air conditioner, and the air conditioner comprises a casing and a wind wheel assembly provided with an intermediate air outlet and two side air outlets, and the wind wheel assembly is disposed inside the casing and includes two wind wheels.
  • the air guiding device comprises a air duct assembly and a door body assembly, the air duct assembly is connected with the wind wheel assembly, two wind wheels are installed inside the air duct assembly, and the air duct assembly is arranged in the shell at the two air outlet areas, the door body
  • the assembly is mounted on the housing, and includes a first door body and a second door body. The first door body and the second door body are moved to different positions to connect the intermediate air outlet, or the intermediate air outlet and the two side surfaces.
  • the tuyere is opened, so that the wind generated by the working of the wind wheel assembly is blown out to the external environment through the middle air outlet or the three air outlets, and the middle air outlet and the three side air outlets of the air conditioner are realized, and three doors are arranged at the three air outlets.
  • the cost of the air conditioner is effectively reduced, the market competitiveness of the product is improved, and the first door body and the second door body are closed at the same time. Closed
  • the air outlet and the two side air outlets can close the three air outlets by closing the two door bodies, thereby avoiding the three air outlets respectively closing the three air outlets to cause a plurality of gaps in the appearance of the air conditioner housing.
  • the appearance of the air conditioner is beautiful, which ensures the consistency of the appearance of the air conditioner housing and improves the satisfaction of the user.
  • the wind wheel assembly includes two wind wheels that rotate in opposite directions during operation to realize two air outlet zones, which increases the air outlet range of the wind wheel assembly, and can satisfy an intermediate air outlet and two side air outlets.
  • the demand ensures sufficient air volume and rapid air output, so that the air conditioner can quickly achieve the heating or cooling comfort, improve the user experience and improve the user satisfaction.
  • the air guiding device in the above embodiment provided by the present invention may further have the following additional technical features:
  • the air guiding assembly is rotatably disposed inside the air duct assembly, and the air guiding assembly includes two air guiding members respectively located between the intermediate air outlet and each of the side air outlets, and each of the air guiding members The rotation of the air guiding members respectively abuts one side of the air duct assembly to connect the two air outlet regions with the intermediate air outlet, and each of the air guiding members rotates against the middle portion of the air duct assembly to enable two air outlets The zones are respectively connected to the two side air outlets.
  • the air guiding device further comprises a wind guiding assembly disposed inside the air duct assembly, the air guiding assembly comprising two air guiding members respectively located between the intermediate air outlet and each side air outlet, through two The air guiding members rotate respectively to abut the two sides or the middle portion of the air duct assembly to connect the two air outlet regions with the intermediate air outlet or the two side air outlets, or one of the air guiding members is located through the two air guiding members
  • the two air outlets are connected to the three air outlets between the side and the middle portion, and then the first door body and the second door body are moved to different positions to open the middle air outlet or the three air outlets, thereby realizing the air conditioner.
  • the middle air outlet, the air outlet on both sides and the air outlet on three sides meet the user's pursuit of multi-dimensional air outlet mode of the air conditioner, improve the satisfaction of the user, and reduce the air volume loss of the air conditioner during the air blowing process, thereby improving the wind.
  • the efficiency of the wheel reduces the cost of use.
  • the two air outlets are connected to the middle air outlet by the rotation of each air guiding member and the one side of the air duct assembly, and the two air outlet areas and the two side air outlets are blocked at the same time.
  • the winds of the two air outlet regions generated by the two wind wheel operations are all blown out to the external environment through the intermediate air outlet, thereby realizing the middle air outlet of the air conditioner.
  • it is ensured that the wind generated by the working of the wind wheel is blown out to the external environment through the intermediate air outlet which is performing the air blowing action, which reduces the air volume loss inside the casing during the air outlet process, and improves the working efficiency of the wind wheel.
  • the utility model reduces the use cost, and at the same time ensures sufficient air output, can quickly reach the heating or cooling comfort of the air conditioner, and improves the user experience.
  • the two air outlet regions are respectively connected to the two side air outlets by the rotation of the two air guiding members and the middle portion of the air duct assembly, and the two air outlet regions and the intermediate air outlet are blocked at the same time.
  • the winds of the two air outlets generated by the two wind turbines are all blown out to the external environment through the two side air outlets.
  • the air output on both sides of the air conditioner is realized, and the wind loss caused by the wind generated by the wind wheel assembly is reduced, the working efficiency of the wind wheel is improved, and the air outlet is blown from the two sides to the external environment.
  • the air volume is sufficient, so that sufficient air exchange with the external environment can quickly achieve the heating or cooling comfort, improve the user experience and improve the user satisfaction.
  • the two air guiding members are respectively located between one side and the middle portion of the air duct assembly, so that the two air outlet regions generated by the two wind wheel working are simultaneously connected with the intermediate air outlet and the two side air outlets respectively.
  • the wind generated by the working of the wind wheel assembly is simultaneously blown out to the external environment through the three air outlets, and the air outlet of the air conditioner is realized on three sides.
  • the two air guiding members are located inside the two air outlet regions, the two air outlet regions are divided by the two air guiding members so that the air volume blown to the external environment through the two side air outlets and the intermediate air outlet is even and sufficient.
  • the problem that the wind generated by the working of the wind wheel is not shunted out through the side air outlet and the middle air outlet to the external environment has different air volume unevenness, which effectively ensures that the air outlets of all air outlets are even and sufficient, so that the air is blown out.
  • the uniform and sufficient air to the outside of the casing is fully exchanged with the air of the external environment to achieve uniform heating or cooling, which improves the satisfaction of the user, while the intermediate air outlet and the two side air outlets simultaneously expand the air.
  • the range of the air outlet increases the range of heat exchange between the wind blown out of the casing and the external ambient wind, thereby expanding the comfort range of the air conditioner and improving the user experience.
  • the intermediate portion of the duct assembly is provided with a guiding ramp, and the two air guiding members are coupled to the guiding ramp when the rotating portion abuts against the intermediate portion of the duct assembly.
  • the middle portion of the air duct assembly is provided with a guiding inclined surface, which is connected with the guiding inclined surface when the two air guiding members rotate against the middle portion of the air duct assembly, which is beneficial to the wind generated by the wind wheel working.
  • the wind deflecting surface and the air guiding member are smoothly and quickly blown out to the outside of the casing through the side air outlet, thereby ensuring sufficient air output and good air blowing effect, thereby satisfying the user to quickly achieve cooling or heating of the air conditioner.
  • the need for comfort increases the satisfaction of user use.
  • the first door body and the second door body are slidably slidably Set on the housing.
  • the first door body and the second door body are slidably disposed on the casing through the sliding rail, and the sliding rail has low cost, high reliability, wide application range, and can satisfy the first door body and the second door body.
  • the need for smooth and accurate sliding saves the manufacturing cost of the air conditioner and improves the satisfaction of the user.
  • the slide rails are two, and the two slide rails are symmetrically disposed with a center line in a vertical direction of the middle air outlet.
  • the slide rails are two, and the two slide rails are symmetrically arranged with the center line of the vertical air outlet in the vertical direction, so that the first door body and the second door body on the two slide rails have the middle air outlet.
  • the center line of the vertical direction is symmetrically arranged, thereby facilitating the air conditioner to control the synchronous movement of the first door body and the second door body to open an intermediate air outlet and three air outlets, the control program is simple, the cost is low, and the first door is made at the same time.
  • the sliding distance between the body and the second door body is consistent along the two sliding rails, and the movement is accurate and flexible, thereby improving the reliability of the product and improving the satisfaction of the user.
  • the slide rails are one, and one slide rail is disposed on the outer peripheral wall of the housing.
  • the slide rail is one, and one slide rail is disposed on the outer peripheral wall of the casing, so that both the first door body and the second door body can slide circumferentially along the outer peripheral wall of the casing, thereby facilitating the first
  • the door body and the second door body are moved to different positions to close or open the middle air outlet and each side air outlet, which can realize the middle air outlet of the air conditioner, the air outlet on both sides, the air outlet on three sides and the air outlet on one side, further satisfying the user.
  • the pursuit of multi-dimensional air-conditioning methods for air conditioners enhances the user experience and improves user satisfaction.
  • one of the first door body and the second door body is provided with a groove structure
  • the other of the first door body and the second door body is provided with a groove structure
  • the matching raised structure, the groove structure and the raised structure are located on a side adjacent to the first door body and the second door body.
  • one of the first door body and the second door body is provided with a groove structure
  • the other of the first door body and the second door body is provided with a convex body adapted to the groove structure.
  • the structure, the groove structure and the convex structure are located on a side adjacent to the first door body and the second door body, so that the first door body and the second door body are tightly connected by the mating connection of the groove structure and the convex structure
  • the two door side air outlets can be tightly connected to avoid the gap between the first door body and the second door body and affect the appearance of the air conditioner. Sexuality effectively ensures the appearance of the air conditioner and improves the satisfaction of the user.
  • the method further includes: a louver assembly disposed inside the housing opposite to the intermediate air outlet.
  • the louver assembly is disposed at a position opposite to the intermediate air outlet in the interior of the casing, and the louver assembly is rotated to control the air outlet direction of the intermediate air outlet, so that the air outlet direction of one intermediate air outlet is different, further satisfying
  • the user's pursuit of the multi-dimensional air-conditioning method of the air conditioner improves the satisfaction of the user.
  • a louver assembly may be disposed at a position opposite to each side air outlet in the interior of the housing, and the air outlet direction of each side air outlet is controlled by the louver assembly rotation, so that the same side air outlet can blow the wind in different directions. Further satisfying the user's pursuit of the multi-dimensional air outlet mode of the air conditioner and improving the satisfaction of the user.
  • the present invention provides an air guiding device for an air conditioner, the air conditioner comprising a housing and a wind wheel assembly, the housing is provided with an intermediate air outlet located in the middle and located in the middle Two side air outlets on both sides of the tuyere, the wind wheel assembly includes two wind wheels that rotate in opposite directions during operation to realize two air outlet zones, and the air guiding device comprises: a duct assembly, which is connected with the wind wheel assembly, and two The wind wheel is installed inside the air duct assembly, the air duct assembly is disposed inside the housing at the two air outlet areas, and the damper assembly is mounted on the housing, including three at the middle air outlet and the two side air outlets.
  • each cylindrical revolving door is provided with a ventilation passage, and each cylindrical revolving door rotates to close the intermediate air outlet or each side air outlet when the ventilation passage is inside the housing, and each cylindrical revolving door rotates to make a ventilation passage Open the intermediate air outlet or each side air outlet when connecting the inside and outside of the housing.
  • the air guiding device provided by the embodiment of the second aspect of the present invention is used for an air conditioner, and the air conditioner includes a casing and a wind wheel assembly provided with an intermediate air outlet and two side air outlets, and the air guiding device includes a air duct assembly and a damper assembly.
  • the air duct assembly is connected to the wind wheel assembly, and the wind wheel assembly includes two wind wheels that rotate in opposite directions during operation to realize two air outlet zones, two wind wheels are installed inside the air duct assembly, and the air duct assembly is disposed in two
  • the inside of the casing at the outlet area is rotated by three cylindrical revolving doors mounted on the casing such that the ventilation passages are located inside the casing or internal or external to the casing to close or open the intermediate air outlet and/or each side
  • the tuyere allows the wind generated by the work of the two wind wheels to be blown out to the external environment through the open intermediate air outlet and/or the side air outlet, so that various air outlet modes of the air conditioner can be realized to meet the user's demand for the multi-dimensional air outlet of the air conditioner, and improve User satisfaction.
  • the ventilation passage provided by the cylindrical revolving door communicates with the inside and the outside of the casing to realize the wind, so that the wind generated by the operation of the wind wheel is smoothly and quickly blown out to the external environment through the ventilation passage of the cylindrical revolving door, thereby avoiding the passage through the louver assembly.
  • the air deflector limits the airflow range, effectively increases the airflow range, ensures sufficient airflow and a wide range of airflow, and allows the wind blown from the inside of the casing to the outside to quickly and fully with the external environment.
  • the air exchange in the air quickly reaches the comfort of heating or cooling of the air conditioner, satisfies the user's need for the air conditioner to quickly achieve the cooling or heating comfort, enhances the user experience and improves the satisfaction of the user; meanwhile, the cylinder
  • the revolving door is provided with a ventilation passage, which can further control the direction of the air outlet by controlling the position of the ventilation passage when the cylindrical revolving door opens the middle air outlet and/or the side air outlet, so that the same air outlet can blow the wind in different directions, thereby improving the user's use. Satisfaction, while avoiding the rotation of the revolving door through a single door panel to change the direction of the wind will be
  • the air outlets are divided into two air outlets to affect the user's comfort. The air outlets are used to change the air outlet direction of the air outlets to ensure uniform airflow and sufficient airflow, ensuring user comfort and improving user use. Satisfaction.
  • the intermediate air outlet and the two side air outlets are disposed on the outer peripheral wall of the casing, and the wind that facilitates the working of the wind wheel assembly is quickly and smoothly blown out to the external environment through the intermediate air outlet and the side air outlet to satisfy the user's air conditioning.
  • the cylindrical revolving door is installed at one of the middle air outlets and the two side air outlets, which is advantageous for mass production, convenient maintenance and reduced maintenance cost, and is advantageous for realizing generalization and standardization of product structure, reducing production cost and Maintenance costs and increase market competitiveness.
  • the wind wheel assembly includes two wind wheels that rotate in opposite directions during operation to realize two air outlet zones, which increases the air flow range of the wind wheel assembly, and can satisfy the air outlets of the middle air outlet and the two side air outlets.
  • the demand in turn, satisfies the user's demand for the multi-dimensional air outlet mode of the air conditioner, and improves the satisfaction of the user.
  • the ventilation passage is a wide mouth structure or a curved structure; wherein each of the cylindrical rotary doors rotates to open the middle air outlet or each side air outlet, and the wide mouth of the wide mouth structure is located inside the casing .
  • the ventilation passage is a wide-mouth structure or a curved structure
  • the ventilation passage of the wide-mouth structure and the curved structure can meet the different structures of the air passage assembly, so that the wind generated by the operation of the wind wheel assembly passes through
  • the air duct along the wind tunnel assembly with different structure is smoothly and quickly blown out to the external environment to ensure sufficient air volume, wide air outlet range and uniform air output effect, and improve the user's Satisfaction with the use of the wide-mouth structure and the curved structure of the ventilation channel can meet the needs of the different positions of the intermediate air outlet and the side air outlet, and can meet the requirements of different air outlet directions of the same air outlet, and the scope of application is wide.
  • the ventilation passage is a wide-mouth structure, and each of the cylindrical revolving doors rotates to open the middle air outlet or the side air outlet when the wide mouth structure is located inside the casing, which is beneficial to the wind generated by the wind wheel working in the wind outlet area.
  • the air duct assembly is smoothly and quickly blown out to the outside of the casing along the wide mouth of the wide-mouth structure, ensuring a sufficient amount of air blown out to the outside of the casing and a good air blowing effect, thereby satisfying the user's rapid achievement of the air conditioner.
  • the need for refrigeration or heating comfort enhances the user experience, and the wide-mouth structure is conducive to centralized and rapid airflow, further improving user satisfaction.
  • the ventilation passage is an arc structure, and the ventilation passage of the arc structure communicates with the inside of the housing and the outside to open the intermediate air outlet or the side air outlet, which is beneficial to control the wind generated by the wind wheel operation along the curved structure of the ventilation passage from the middle
  • the two sides of the air outlet or the side air outlet are blown out to the external environment, further expanding the air outlet range, satisfying the user's demand for the multi-dimensional air outlet mode of the air conditioner, and a large range of air outlets is favorable for uniform heating or cooling of the air conditioner. Meet the user's need for uniform heating or cooling of the air conditioner, and improve user satisfaction.
  • the three cylindrical revolving doors comprise an intermediate cylindrical revolving door corresponding to the intermediate air outlet and two side cylindrical revolving doors corresponding to the two side air outlets; wherein the middle cylinder
  • the ventilation passage of the revolving door is a wide-mouth structure, and the ventilation passages of the two side cylindrical revolving doors are curved structures.
  • the three cylindrical revolving doors comprise an intermediate cylindrical revolving door corresponding to the intermediate air outlet and two side cylindrical revolving doors corresponding to the two side air outlets, and the two side cylindrical revolving doors are symmetrically distributed. On both sides of the middle cylindrical revolving door, the appearance of the air conditioner is ensured and the satisfaction of the user is improved.
  • the ventilation passage of the middle cylindrical revolving door is a wide-mouth structure, which is beneficial to the wind passage generated by the wind wheel working through the ventilation passage of the wide-mouth structure, which is quickly, concentratedly and uniformly blown out from the middle air outlet to the external environment, and can satisfy the user to the middle air outlet.
  • the demand for wind concentration and large air volume, and the concentrated and sufficient air output are beneficial to quickly realize the heating or cooling of the air conditioner, thereby improving the user experience and improving the satisfaction of the user; further, the middle cylinder revolving door opens.
  • the wide mouth of the wide-mouth structure is located inside the casing during the middle air outlet, which is beneficial to the wind generated by the wind wheel working along the air duct component located in the wind outlet area along the wide mouth
  • the wide mouth of the structure is smoothly and quickly blown out to the outside of the casing, further ensuring a sufficient amount of air blown out to the outside of the casing and a good air blowing effect, ensuring that the air conditioner can quickly achieve the comfort of cooling or heating, and improve User experience, improve user satisfaction.
  • the ventilation passages of the two side cylindrical revolving doors are arc-shaped structures, and the direction of the air outlet of the side air outlets can be further controlled by adjusting the position of the arc-shaped structure communicating with the inside and the outside of the casing, thereby expanding the air outlet to the sides of the side air outlets.
  • the range can meet the user's demand for multi-dimensional air outlet mode of the air conditioner, and the larger air outlet range is beneficial for the air blown from the inside of the casing to the outside to exchange heat with the air of the external environment, and the air conditioner heating or
  • the scope of refrigeration can meet the needs of users for uniform heating or even cooling of air conditioners, improve user experience and improve user satisfaction.
  • the two side cylindrical revolving doors are disposed opposite to each other when the two side air outlets are opened.
  • the two arc structures are arranged facing away from each other, so as to avoid the opposite arrangement of the two arc-shaped structures, the air direction of the two side air outlets is biased.
  • the middle air outlet reduces the air outlet range, and avoids the arrangement of the two arc-shaped structures, so that the wind blown by the side air outlet intersects with the wind blown by the middle air outlet, thereby affecting the air volume and the air output effect, effectively increasing the wind output.
  • the range ensures a good airflow effect and improves user satisfaction.
  • the two side cylindrical revolving doors are arranged with the two arc-shaped structures facing away when the two side air outlets are opened, so that the wind generated by the working of the wind wheel can be blown out to the side of the side air outlet, further increasing the side.
  • the air outlet area of the air outlet further exchanges heat with the outside air in a large range from the air blown inside the casing, so that the air conditioner can reach the heating or cooling comfort evenly and in a wide range. Uniform heating or even cooling, to meet the user's demand for air conditioner comfort, improve user experience and improve user satisfaction.
  • the middle portion of the air duct assembly is provided with a first guiding slope near one side of each wind wheel, and the first guiding slope when each side cylindrical rotating door opens each side air outlet Adapted to the curved structure.
  • a first guiding slope is disposed on a side of the air passage assembly near the side of each wind wheel, and each of the side cylindrical rotating doors opens each side air outlet, the first guiding slope and the curved structure are Adapted so that the wind generated by the working of the wind wheel flows quickly and smoothly to the curved structure through the first guiding slope of the air duct assembly in the wind-out area, and is quickly and smoothly blown out through the ventilation passage of the curved structure to
  • the external environment ensures sufficient airflow and good airflow at the side air outlets, which can meet the user's need for the air conditioner to quickly reach the cooling or heating comfort, and improve the user's satisfaction.
  • the middle portion of the air duct assembly is provided with a concave curved surface structure on a side close to the intermediate air outlet, and the concave curved surface structure is matched with the intermediate cylindrical rotating door.
  • the middle portion of the air duct assembly is provided with a concave curved surface structure on a side close to the middle air outlet, and the concave curved surface structure is matched with the intermediate cylindrical revolving door, so that the middle cylindrical revolving door is in the middle of closing
  • the door body and the curved surface structure are matched to prevent the wind generated by the operation of the two wind wheel assemblies from flowing through the gap between the intermediate cylindrical revolving door and the middle portion of the air duct assembly, thereby affecting the air volume and the air outlet of the two side air outlets.
  • the effect ensures that the middle air outlet does not emit air, and the air output at the side of the two side air outlets has sufficient air output and good air blowing effect to improve the user satisfaction.
  • the middle portion of the air duct assembly is provided with a second guiding slope on both sides of the concave curved surface structure, and the second guiding slope is a curved surface structure protruding outward.
  • the middle portion of the air duct assembly is provided with a second guiding inclined surface on both sides of the concave curved surface structure, and the second guiding inclined surface is an outwardly convex curved surface structure, so that the intermediate cylindrical rotating door is opened in the middle
  • the wind generated by the working of the wind wheel smoothly and quickly flows into the ventilation passage of the middle circular revolving door and blows out to the outside of the casing, ensuring sufficient air volume and good airflow at the intermediate air outlet.
  • the effect of the air outlet can further satisfy the user's need for the air conditioner to quickly achieve the cooling or heating comfort, and improve the satisfaction of the user.
  • each cylindrical revolving door comprises two door bodies forming a ventilation passage, and the larger one of the two door bodies is adapted to the intermediate air outlet or each side air outlet .
  • each cylindrical revolving door includes two door bodies forming a ventilation passage, and the larger one of the two door bodies is matched with the intermediate air outlet and or each side air outlet, so that the cylinder rotates
  • the larger door body of the door is connected with the casing to close the intermediate air outlet or the side air outlet, and the portion between the larger door body and the smaller door body is a ventilation passage, which further increases the air outlet range of the ventilation passage.
  • the air blown from the inside of the casing exchanges heat with the outside air in a relatively large range, so that the air conditioner can achieve the heating or cooling comfort quickly, uniformly, and in a wide range, thereby improving the user experience and improving the user experience. User satisfaction.
  • a wind guide control method for an air conditioner comprising a housing, a wind wheel assembly, and the guide according to any one of the above first embodiment.
  • the wind device is provided with a middle air outlet and two side air outlets on both sides of the middle air outlet, the wind wheel assembly is disposed inside the housing, and the wind wheel assembly includes rotating in opposite directions during operation to realize two air outlet regions
  • the two wind turbines, the air guiding control method includes: detecting the wind mode command; controlling the first door body and the second door body of the door body assembly to move to different positions according to the wind mode command, and controlling the working state of the wind wheel component .
  • An embodiment of a third aspect of the present invention provides an air guiding control method for an air conditioner, the air conditioner comprising a housing and a wind wheel assembly provided with an intermediate air outlet and two side air outlets, the wind wheel assembly being disposed inside the housing And comprising two wind wheels, the air guiding control method is: detecting the wind mode command, controlling the first door body and the second door body of the door body assembly to move to different positions according to the air outlet mode command, and controlling the working state of the wind wheel component
  • the intermediate air outlet, or the intermediate air outlet and the two side air outlets are opened by moving the first door body and the second door body to different positions, so that the wind generated by the working of the wind wheel assembly is blown out through the middle air outlet or the three air outlets.
  • the middle air outlet and the three-sided air outlet of the air conditioner are realized, and three doors are arranged at the three air outlets to realize the problem that the intermediate air outlet of the air conditioner and the three-sided air outlet structure are complicated and the cost is high.
  • the utility model effectively reduces the cost of the air conditioner, improves the market competitiveness of the product, and simultaneously closes the middle air outlet and the two side air outlets through the first door body and the second door body, so that the passage When the door body is closed, the three air outlets can be closed, and the three air outlets are respectively closed by the three door bodies, so that the appearance of the air conditioner has a plurality of gaps, which affects the appearance of the air conditioner, and effectively ensures the air conditioner.
  • the consistency of the appearance of the housing improves the satisfaction of the user.
  • the two air guiding members of the air guiding device are controlled to rotate to different positions according to the air outlet mode command.
  • the two air guiding members of the air guiding device are controlled to rotate to different positions according to the air blowing mode command, so that the two air guiding members rotate respectively to abut against the two sides or the middle portion of the air duct assembly,
  • the air outlet area is connected with the middle air outlet or the two side air outlets, and the two air guiding members are respectively located between one side and the middle portion of the air duct assembly, and the two air outlet areas are connected with the three air outlets, thereby further
  • the first door body and the second door body are moved to different positions to open the middle air outlet or the three air outlets, so that the middle air outlet of the air conditioner, the air outlet on both sides and the air outlet on three sides can be realized, and the user can multi-dimensionally wind out the air conditioner.
  • the pursuit of the way to improve the satisfaction of the user's use, while ensuring the wind generated by the wind wheel work The air outlet that is being blown out is blown out to the outside of the casing, which reduces the loss of air volume inside the casing during the air blowing process, improves the working efficiency of the wind turbine, reduces the use cost, and ensures sufficient output.
  • the air volume can quickly achieve the comfort of the air conditioner heating or cooling, and enhance the user experience.
  • the air outlet mode command is an intermediate air blowing command
  • the first door body and the second door body of the door body assembly are controlled to move to different positions, and the wind wheel assembly is controlled.
  • the specific steps of the working state include: controlling the first door body and the second door body to move to close the two side air outlets and open the middle air outlet according to the middle air blowing command, and control the two wind wheels to start working.
  • the air outlet mode command is an intermediate air blowing command
  • the first door body and the second door body are controlled to move to close the two side air outlets and open the middle air outlet to control the two winds.
  • the wheel starts to work, so that the wind generated by the working of the wind wheel assembly is quickly and smoothly blown out to the external environment through the middle air outlet opened by the first door body and the second door body, and the middle air outlet of the air conditioner is realized.
  • the method further comprises: controlling, according to the intermediate air blowing instruction, each of the air guiding members of the air guiding device to respectively abut against one side of the air duct assembly to connect the two air outlet regions with the middle air outlet The tuyere is connected.
  • each of the air guiding members of the air guiding device is controlled to abut against one side of the air duct assembly, and the two air outlet regions are connected with the intermediate air outlet, and two The outlet area and the two side air outlets are blocked, so that when the air conditioner executes the intermediate air outlet command, the winds of the two outlet areas generated by the two wind turbines are all blown out to the external environment through the intermediate air outlet, which is reduced.
  • the air volume loss inside the air conditioner during the air outlet process improves the working efficiency of the wind wheel, reduces the use cost, and ensures sufficient air output, can quickly achieve the comfort of the air conditioner heating or cooling, and enhance the user. The experience of using.
  • the air outlet mode command is a three-sided air outlet command
  • the first door body and the second door body of the door body assembly are controlled to move to different positions, and the wind wheel assembly is controlled.
  • the specific steps of the working state include: controlling the first door body and the second door body to move to open the middle air outlet and the two side air outlets according to the three-sided air blowing command, and control the two wind wheels to start working.
  • the air outlet mode command is a three-sided air outlet command
  • the first door body and the second door body are controlled to move to open the middle air outlet and the two side air outlets, and control two The wind wheel starts to work, so that the wind generated by the working of the wind wheel assembly is quickly and smoothly blown out to the external environment through the middle air outlet and the two side air outlets, and the air outlet of the air conditioner is realized on three sides.
  • the method further comprises: controlling each air guiding member of the air guiding device to rotate between one side and the middle portion of the air duct assembly according to the three-sided air blowing command, and the two air outlet regions It is connected with the middle air outlet and the two side air outlets.
  • each air guiding member of the air guiding device is controlled to rotate between one side and the middle portion of the air duct assembly, and the two air outlet regions and the middle air outlet and the two side portions are The air outlets are connected. Since the two air guiding members are located inside the two air outlets, the two air guiding portions are divided by two air guiding members to blow the air volume to the external environment through the two side air outlets and the middle air outlet. Uniform and sufficient, avoiding the problem that the wind generated by the working of the wind wheel is not shunted and is blown out through the side air outlet and the middle air outlet to the external environment, and the air volume of the air outlet is uneven, effectively ensuring that the air outlets of all the air outlets are even and sufficient.
  • the uniform and sufficient air blown out to the outside of the casing is fully exchanged with the air of the external environment to achieve uniform heating or cooling, thereby improving the satisfaction of the user, and the intermediate air outlet and the two side air outlets simultaneously
  • the air outlet expands the range of the air, so that the heat exchange between the wind blown out of the casing and the external environment wind increases, thereby expanding the comfort range of the air conditioner and improving Use households experience.
  • the air blowing mode command is a two-way air blowing command
  • the specific steps of controlling the two air guiding members of the air guiding device to rotate to different positions include: controlling the first door body and the second door body to move to open according to the air blowing commands on both sides
  • the middle air outlet and the two side air outlets control the rotation of the two air guiding members to abut against the middle portion of the air duct assembly, and the two air outlet regions are respectively connected with the two side air outlets to control the two wind wheels to start working.
  • the air outlet mode command is an air blowing command on both sides
  • the first door body and the second door body are controlled to move to open the middle air outlet and the two side air outlets, and control two
  • the rotation of the air guiding member abuts against the middle portion of the air duct assembly, and the two air outlet regions are respectively connected with the two side air outlets, and the two air outlet regions and the intermediate air outlet are blocked at the first door body and the first
  • the winds of the two air outlets generated by the two wind turbines are all blown out to the external environment through the two side air outlets, thereby realizing the air conditioner.
  • the air outlet mode command is to stop the air blowing command
  • the first door body and the second door body of the door body assembly are controlled to move to different positions, and the wind wheel assembly is controlled.
  • the working state, according to the air mode command, the specific steps of controlling the two air guiding members of the air guiding device to rotate to different positions include: controlling the two wind wheels to stop working according to the stop air blowing command, controlling the first door body and the first The two doors move to close the middle air outlet and the two side air outlets, and control the two air guiding members to stop rotating.
  • the air outlet mode command is to stop the air blowing command, according to the stop air blowing command, the two wind wheels are controlled to stop working to stop generating wind, and the first door body and the second door body are controlled to move to close the middle air outlet port and
  • the two side air outlets prevent the air conditioner from stopping the air outlet state, and the intermediate air outlet and the two side air outlets are exposed to the outside to affect the appearance of the air conditioner, effectively ensuring the appearance of the air conditioner, and simultaneously controlling the two guides.
  • the wind member stops rotating, which prevents the air guiding member from rotating under the condition of stopping the air blowing command, wastes energy and generates noise, which affects the user's use and improves the satisfaction of the user.
  • a wind guide control method for an air conditioner comprising a housing, a wind wheel assembly, and the guide according to any one of the above second embodiment
  • the wind device is provided with a middle air outlet in the middle and two side air outlets on both sides of the middle air outlet, and the wind wheel assembly includes two wind wheels that rotate in opposite directions during operation to realize two air outlet areas.
  • the air guiding control method includes: detecting a wind mode command; controlling each cylindrical revolving door of the damper assembly according to an air blowing mode command to cause the ventilation passage to be located inside the housing or communicating with the inside and outside of the housing to control the working state of the wind wheel assembly .
  • the embodiment of the fourth aspect of the present invention provides an air guiding control method for an air conditioner, the air conditioner comprising a housing, a wind wheel assembly, and the air guiding device according to any one of the second aspect embodiments, the housing
  • the upper air outlet is provided with two side air outlets on both sides of the middle air outlet
  • the wind wheel assembly comprises two wind wheels which are reversely rotated during operation to realize two air outlet areas
  • the air guiding control method comprises: detecting The air outlet mode command controls each cylindrical revolving door of the damper assembly according to the air outlet mode command
  • the rotation causes the ventilation passage to be located inside the housing or inside and outside the housing to control the working state of the wind wheel assembly, so that the ventilation passage is located inside the housing or connected to the inside of the housing by rotating the three cylindrical revolving doors mounted on the housing
  • externally closing or opening the intermediate air outlet and/or each side air outlet so that the wind generated by the working of the wind wheel assembly is blown out to the external environment through the open intermediate air outlet and/or each side air outlet,
  • the ventilation passage provided by the cylindrical revolving door communicates with the inside and the outside of the casing to realize the wind, so that the wind generated by the operation of the wind wheel is smoothly and quickly blown out to the external environment through the ventilation passage of the cylindrical revolving door, thereby avoiding the passage through the louver assembly.
  • the air deflector limits the airflow range, effectively increases the airflow range, ensures sufficient airflow and a wide range of airflow, and allows the wind blown from the inside of the casing to the outside to quickly and fully with the external environment.
  • the air exchange in the air quickly reaches the comfort of heating or cooling of the air conditioner, satisfies the user's need for the air conditioner to quickly achieve the cooling or heating comfort, enhances the user experience and improves the satisfaction of the user; meanwhile, the cylinder
  • the revolving door is provided with a ventilation passage, which can further control the direction of the air outlet by controlling the position of the ventilation passage when the cylindrical revolving door opens the middle air outlet and/or the side air outlet, so that the same air outlet can blow the wind in different directions, thereby improving the user's use. Satisfaction, while avoiding the rotation of the revolving door through a single door panel to change the direction of the wind will be
  • the air outlets are divided into two air outlets to affect the user's comfort. The air outlets are used to change the air outlet direction of the air outlets to ensure uniform airflow and sufficient airflow, ensuring user comfort and improving user use. Satisfaction.
  • the three cylindrical revolving doors include an intermediate cylindrical revolving door corresponding to the intermediate air outlet and two side cylindrical revolving doors corresponding to the two side air outlets.
  • the three cylindrical revolving doors comprise an intermediate cylindrical revolving door corresponding to the intermediate air outlet and two side cylindrical revolving doors corresponding to the two side air outlets, and the two side cylindrical revolving doors are symmetrically distributed. On both sides of the middle cylindrical revolving door, the appearance of the air conditioner is ensured and the satisfaction of the user is improved.
  • the air outlet mode command is an intermediate air blowing command
  • each cylindrical revolving door of the damper assembly is rotated to cause the ventilation passage to be located inside the housing or inside the housing and
  • the specific steps of controlling the working state of the wind wheel assembly include: The middle air outlet command controls the rotation of the intermediate cylindrical revolving door to open the middle air outlet of the ventilation passage connecting the inner and outer parts of the casing, and controls the rotation of each side cylindrical revolving door so that the ventilation passage is located inside the casing to close each side air outlet, and control two The wind wheel started working.
  • the air outlet mode is an intermediate air blowing command
  • the middle cylinder revolving door is controlled to rotate, so that the ventilation passage communicates with the inner and outer portions of the casing to open the middle air outlet, and controls the rotation of each side cylindrical revolving door.
  • the ventilation passage is located inside the casing to close each side air outlet, and the two wind wheels are controlled to start working, so that the wind generated by the two wind turbines is smoothly, quickly and concentratedly blown along the air passage assembly through the ventilation passage of the intermediate cylindrical revolving door.
  • the middle air outlet of the air conditioner is realized; and the wind generated by the working of the wind wheel is blown out to the outside of the casing through the ventilation passage of the intermediate cylindrical revolving door, thereby avoiding the wind passing through the louver assembly to limit the wind out range.
  • Uniform and effective to ensure that the air blown from the middle air outlet is uniform the air volume is sufficient and the range is wide, which is beneficial to the sufficient, uniform and wide range of winds to quickly exchange heat with the air of the external environment, and improve the heating or cooling of the air conditioner.
  • the efficiency of the air conditioner can quickly achieve the heating or cooling comfort, improve the user experience, and improve the user's Satisfaction.
  • the air outlet mode command is a two-side air outlet command
  • each cylindrical revolving door of the damper assembly is rotated to make the ventilation passage be located inside the casing or inside the connecting casing.
  • the specific steps of controlling the working state of the wind wheel assembly include: controlling the rotation of the intermediate cylindrical revolving door according to the air blowing commands on both sides, so that the ventilation passage is located inside the casing to close the middle air outlet, and controlling the rotation of each side cylindrical revolving door to ventilate
  • the channel communicates with the inside and outside of the housing to open each side air outlet to control the two wind wheels to start working.
  • the air outlet mode command is an air blowing command on both sides, and according to the air blowing commands on both sides, the rotation of the middle cylinder revolving door is controlled so that the ventilation passage is located inside the casing to close the middle air outlet, and the rotation of each side cylindrical revolving door is controlled.
  • the ventilation passage is connected to the inside and outside of the casing to open each side air outlet, and the two wind wheels are controlled to start working, so that the wind generated by the two wind wheel works smoothly and quickly blows out along the air passage assembly through the ventilation passage of the side cylindrical revolving door.
  • the air from both sides of the air conditioner is realized; and the wind generated by the working of the wind wheel is directly blown out to the outside of the casing through the ventilation passage of the side cylindrical revolving door, thereby avoiding the limitation of the air outlet range by the wind guide of the louver assembly.
  • the uneven wind ensures that the wind blown from the middle air outlet is uniform, the air volume is sufficient, and the range is wide, which is beneficial to the heat exchange of the air in the external environment with sufficient, uniform and wide range of winds to improve the heat of the air conditioner.
  • cooling The efficiency enables the air conditioner to quickly achieve heating or cooling comfort, enhance the user experience, and increase user satisfaction.
  • the air outlet mode command is a three-sided air outlet command
  • each cylindrical revolving door of the damper assembly is rotated to cause the ventilation passage to be located inside the housing or inside the housing and
  • the specific steps of controlling the working state of the wind wheel assembly include: controlling the intermediate cylindrical revolving door and each side cylindrical revolving door according to the three-sided air blowing command, so that the ventilation passage communicates with the inside and outside of the casing to open the intermediate air outlet and each The side air outlet controls the two wind wheels to start working.
  • the air outlet mode command is a three-sided air outlet command
  • the middle cylinder revolving door and each side cylindrical revolving door are rotated to open the air outlet and the inner air outlet of the ventilation passage connecting the inner and outer portions of the casing and
  • Each side air outlet controls two wind wheels to start working, so that the wind generated by the two wind wheels works smoothly and quickly along the air passage assembly through the ventilation passage of the intermediate cylindrical revolving door and the ventilation passages of the two side cylindrical revolving doors.
  • the three sides of the air conditioner are ventilated; and the wind generated by the working of the wind wheel is blown out to the outside of the casing through the ventilation passage of the intermediate cylindrical revolving door and the side cylindrical revolving door, thereby preventing the louver assembly from guiding the wind.
  • the range is limited, and the wind is uneven. It effectively ensures that the air blown from the middle air outlet and the two side air outlets is uniform, the air volume is sufficient and the range is wide, which is beneficial to the sufficient, uniform and wide range of winds and the external environment.
  • the air outlet mode command is to stop the air blowing command
  • each cylindrical revolving door of the damper assembly is rotated to cause the ventilation passage to be located inside the housing or in the communication housing and
  • the specific steps of controlling the working state of the wind wheel assembly include: controlling the two wind wheels to stop working according to the stop air blowing command, controlling the intermediate cylindrical rotating door and rotating the side cylindrical rotating door to close the ventilation passage inside the casing Middle air outlet and air outlet on each side.
  • the air outlet mode command is to stop the air blowing command, according to the stop air blowing command, the two wind wheels are controlled to stop working without generating wind, and the middle cylinder revolving door and each side cylindrical revolving door are rotated to make the ventilation passage be located.
  • the inner part of the casing closes the middle air outlet and each side air outlet, thereby avoiding the middle air outlet and the two side air outlets exposed to the outer peripheral wall of the casing when the air conditioner stops the air outlet mode, thereby affecting the appearance of the air conditioner, and effectively Guarantee the appearance of the air conditioner and improve it Satisfaction of household use.
  • the ventilation passage of the intermediate cylindrical revolving door is a wide-mouth structure, and the wide opening of the wide-mouth structure is located inside the casing when the intermediate cylindrical revolving door is rotated to open the intermediate air outlet.
  • the ventilation passage of the middle cylindrical revolving door is a wide-mouth structure, which is favorable for the wind generated by the wind wheel working through the ventilation passage of the wide-mouth structure to be quickly, concentratedly and evenly blown out to the external environment by the intermediate air outlet, which can satisfy
  • the user needs to concentrate on the air outlet and the large amount of airflow, and the concentrated and sufficient air output is beneficial to quickly realize the heating or cooling of the air conditioner, thereby improving the user experience and improving the satisfaction of the user;
  • the revolving door opens the middle air outlet
  • the wide mouth of the wide-mouth structure is located inside the casing, which is favorable for the wind generated by the wind wheel to smoothly and quickly blow out to the shell through the wide mouth of the wide-mouth structure.
  • the outside of the body further ensures the sufficient air output and good air blowing effect to be blown out to the outside of the casing, ensuring that the air conditioner can quickly achieve the comfort of cooling or heating, improve the user experience and improve the satisfaction of the user. .
  • the ventilation passages of the two side cylindrical revolving doors are arc-shaped structures, and when the two side cylindrical revolving doors are rotated to open the two side air outlets, the two arc-shaped structures are disposed away from each other.
  • the ventilation passages of the two side cylindrical revolving doors are arc-shaped structures, and the direction of the air outlet of the side air outlets can be further controlled by adjusting the position of the arc-shaped structure communicating with the inside and the outside of the casing, thereby expanding the side air outlets.
  • the air outlet range to both sides can meet the user's demand for the multi-dimensional air outlet mode of the air conditioner, and the large air outlet range is advantageous for the air blown from the inside of the casing to the outside to exchange heat with the air of the external environment. Expanding the range of heating or cooling of air conditioners can meet the needs of users for uniform heating or even cooling of air conditioners, improve user experience and improve user satisfaction.
  • the two arc-shaped structures are arranged facing away from each other, so as to avoid the opposite arrangement of the two arc-shaped structures, the air outlet direction of the two side air outlets is biased toward the middle air outlet to be reduced.
  • the wind range avoids the arrangement of the two curved structures so that the wind blown by the side air outlet intersects with the wind blown by the middle air outlet to affect the air volume and the air output effect, effectively increasing the air flow range and ensuring a good wind.
  • the effect of the wind is to improve the satisfaction of the user.
  • the two side cylindrical revolving doors are arranged with the two arc-shaped structures facing away when the two side air outlets are opened, so that the wind generated by the working of the wind wheel can be blown out to the side of the side air outlet, further increasing the side.
  • Out of the air outlet The range, in turn, allows the air blown from the inside of the casing to exchange heat with the outside air in a relatively large range, so that the air conditioner can achieve uniform heating and cooling comfort evenly, and achieve uniform heating or uniformity. Refrigeration meets the user's need for air conditioner comfort, enhances the user's experience, and improves user satisfaction.
  • an air conditioner comprising: a housing, wherein the housing is provided with an intermediate air outlet and two side air outlets on both sides of the intermediate air outlet; the wind wheel assembly is arranged Inside the housing, the wind wheel assembly includes two wind wheels that rotate in opposite directions during operation to achieve two air outlet zones; and the air guiding device of any of the above first embodiments.
  • An air conditioner includes a housing, a wind wheel assembly, and the air guiding device according to any one of the first aspect of the present invention, wherein the housing is provided with an intermediate air outlet located in the middle And two side air outlets on both sides of the middle air outlet, the wind wheel assembly is disposed inside the casing, and includes two wind wheels which are reversely rotated during operation to realize two air outlet zones.
  • the air conditioner provided by the embodiment of the fifth aspect of the present invention includes all the advantageous technical effects of the air guiding device provided by the first aspect of the present invention, and is not described herein.
  • the method further includes: detecting means disposed on the casing for detecting the wind mode command; the controller being disposed on the casing, and the wind wheel component, the door body assembly, and the guide The two air guiding members of the wind device are connected, and the two wind wheels of the wind wheel assembly, the first door body and the second door body of the door body assembly, and the two air guiding members are controlled according to the wind mode command; wherein
  • the air outlet mode command includes an intermediate air blowing command, two side air blowing commands, three side air blowing commands, and a stop air blowing command.
  • the air conditioner further includes a detecting device and a controller.
  • the detecting device is disposed on the casing to detect the wind mode command
  • the controller is disposed on the casing, and the wind wheel assembly, the door body assembly, and the wind guide
  • the two air guiding members of the device are connected, and according to the intermediate air blowing command detected by the detecting device, the air blowing command on both sides, the three-side air blowing command, and the stop air blowing command, the first door of the two wind wheels and the door body assembly
  • the body and the second door body are controlled such that the intermediate air outlet, or the intermediate air outlet and the two side air outlets are opened by moving the first door body and the second door body to different positions, and each air guiding member of the air guiding assembly Rotating with one side of the duct assembly, abutting the intermediate portion of the duct assembly or between one side and the middle portion of the duct assembly to connect the two outlet regions to different outlets Through, the wind generated by the working of the wind wheel assembly is blown out to the external environment
  • the first air outlet and the two side air outlets are closed by the first door body and the second door body, so that the three air outlets can be closed by closing the two door bodies, thereby avoiding being closed by the three door bodies respectively.
  • the three air outlets cause a plurality of gaps in the appearance of the air conditioner to affect the appearance of the air conditioner, effectively ensuring the consistency of the appearance of the air conditioner housing, and improving the satisfaction of the user.
  • an air conditioner comprising: a housing, wherein the housing is provided with an intermediate air outlet at the middle and two side air outlets at two sides of the intermediate air outlet; the wind wheel The assembly, the wind wheel assembly includes two wind wheels that rotate in opposite directions during operation to achieve two air outlet zones; and the air guiding device of any one of the above aspects of the second aspect.
  • An air conditioner includes a housing, a wind wheel assembly, and the air guiding device according to any one of the second aspect, wherein the housing is provided with an intermediate air outlet located in the middle And two side air outlets on both sides of the middle air outlet, the wind wheel assembly includes two wind wheels that are reversely rotated during operation to realize two air outlet zones.
  • the air conditioner provided by the embodiment of the sixth aspect of the present invention includes all the advantageous technical effects of the air guiding device provided by the embodiment of the second aspect, and is not described herein.
  • the method further includes: detecting means disposed on the casing for detecting the wind mode command; the controller being disposed on the casing, and the damper of the wind wheel assembly and the air guiding device The components are connected, and the two wind wheels of the wind wheel assembly, one middle cylindrical revolving door of the damper assembly and two side cylindrical revolving doors are controlled according to the air mode command; wherein the air outlet mode command includes an intermediate air blowing command, Wind command on both sides, three-way air command, stop air command.
  • the air conditioner further includes a detecting device and a controller.
  • the detecting device is disposed on the casing to detect the wind mode command
  • the controller is disposed on the casing, and is connected to the wind wheel assembly and the damper assembly, and Controlling two wind wheels, one intermediate cylindrical revolving door of the damper assembly and two side cylindrical revolving doors according to the intermediate air blowing command detected by the detecting device, the two side air blowing commands, the three side air blowing commands, and the stop air blowing command, a cylindrical revolving door that passes through the damper assembly
  • the two side cylindrical revolving doors respectively close and open the intermediate air outlet and/or the two side air outlets, and can blow the wind generated by the two wind wheel operations through the open intermediate air outlet and/or each side air outlet to the outside
  • the environment in turn, achieves a variety of air outlets for air conditioners to meet the user's demand for multi-dimensional air conditioners and improve user satisfaction.
  • a computer apparatus comprising a memory, a processor, and a computer program stored on the memory and operable on the processor, the processor for performing the third aspect embodiment Or the step of any one of the air guiding control methods of the fourth aspect.
  • the computer device provided by the embodiment of the seventh aspect of the present invention includes a memory, a processor, and a computer program stored on the memory and operable on the processor, where the processor is configured to execute the third aspect embodiment or the fourth aspect embodiment The steps of any of the methods of controlling the wind.
  • the processor of the computer device according to the embodiment of the seventh aspect of the present invention is capable of performing the steps of any one of the air conduction control methods of the third aspect embodiment or the fourth aspect embodiment, and therefore, the third aspect embodiment is provided The full beneficial effects of the air guiding control method described in the fourth embodiment are not described herein again.
  • a computer readable storage medium having stored thereon a computer program, wherein the third aspect embodiment or the fourth aspect embodiment is implemented when the computer program is executed by the processor The steps of any of the methods of controlling the wind.
  • the computer readable storage medium provided by the embodiment of the eighth aspect of the present invention has a computer program stored thereon, and when the computer program is executed by the processor, the air guiding control method of the third aspect embodiment or the fourth aspect embodiment is implemented. The steps of any method.
  • the computer program of the computer readable storage medium provided by the embodiment of the eighth aspect of the present invention is executed by the processor to perform the steps of any of the methods of the air guiding control method of the third aspect embodiment or the fourth aspect embodiment, All the beneficial technical effects of the air guiding control method described in the third embodiment or the fourth embodiment are not described herein.
  • FIG. 1 is a schematic structural view of an air conditioner in an intermediate air blowing instruction according to an embodiment of the present invention
  • FIG. 2 is a schematic structural view of an air conditioner in accordance with an embodiment of the present invention.
  • FIG. 3 is a schematic structural view of an air conditioner when an air blower is instructed on both sides according to an embodiment of the present invention
  • FIG. 4 is a schematic structural view of an air conditioner when an air blowing command is stopped according to an embodiment of the present invention
  • Figure 5 is a schematic structural view of the air conditioner when the air blower is in the middle of the air blowing instruction according to still another embodiment of the present invention.
  • Figure 6 is a schematic view showing the structure of the air conditioner when the air conditioner is vented on both sides according to still another embodiment of the present invention.
  • Figure 7 is a schematic view showing the structure of the air conditioner when the air conditioner is in three directions;
  • FIG. 8 is a schematic structural view of the air conditioner when the air blower is stopped according to still another embodiment of the present invention.
  • FIG. 9 is a schematic flow chart of a wind guiding control method according to a first embodiment of the present invention.
  • Figure 10 is a flow chart showing a wind guiding control method according to a second embodiment of the present invention.
  • Figure 11 is a flow chart showing a wind guiding control method according to a third embodiment of the present invention.
  • Figure 12 is a flow chart showing a wind guiding control method according to a fourth embodiment of the present invention.
  • Figure 13 is a flow chart showing the air guiding control method of the fifth embodiment of the present invention.
  • Figure 14 is a flow chart showing a wind guiding control method according to a sixth embodiment of the present invention.
  • Figure 15 is a flow chart showing a wind guiding control method according to a seventh embodiment of the present invention.
  • Figure 16 is a flow chart showing the air guiding control method of the eighth embodiment of the present invention.
  • Figure 17 is a flow chart showing the air guiding control method of the ninth embodiment of the present invention.
  • FIG. 18 is a schematic flow chart of a wind guiding control method according to a tenth embodiment of the present invention.
  • Figure 19 is a schematic block diagram of a computer processing device of an embodiment of the present invention.
  • An air guiding device 10 a wind guiding control method, an air conditioner 100, a computer device 200, and a computer readable storage medium according to some embodiments of the present invention are described below with reference to FIGS. 1 through 19.
  • the present invention provides an air guiding device 10 for an air conditioner 100.
  • the air conditioner 100 includes a housing 20 and a wind wheel assembly 30.
  • the housing 20 is provided with an intermediate air outlet 202 and is located.
  • Two side air outlets 204 on both sides of the middle air outlet 202, the wind wheel assembly 30 is disposed inside the casing 20, and the wind wheel assembly 30 includes two wind wheels 302 that rotate in opposite directions during operation to realize two air outlet zones.
  • the wind device 10 includes: a duct assembly 12 connected to the wind wheel assembly 30, two wind wheels 302 installed inside the air duct assembly 12, and the air duct assembly 12 disposed inside the housing 20 at the two outlet regions;
  • the door assembly 14 is mounted on the housing 20, and the door assembly 14 includes a first door body 1402 and a second door body 1404.
  • the first door body 1402 and the second door body 1404 are closed to close the intermediate air outlet. 202 and the two side air outlets 204, the first door body 1402 and the second door body 1404 are moved to different positions to open the intermediate air outlet 202, or the intermediate air outlet 202 and the two side air outlets 204.
  • the air guiding device 10 provided by the present invention is used for an air conditioner 100.
  • the air conditioner 100 includes a housing 20 and a wind wheel assembly 30 provided with an intermediate air outlet 202 and two side air outlets 204.
  • the wind wheel assembly 30 is disposed in the housing. 20 is internally and includes two wind wheels 302.
  • the air guiding device 10 includes a duct assembly 12 and a door assembly 14, the air duct assembly 12 is coupled to the wind wheel assembly 30, and the two wind wheels 302 are mounted inside the duct assembly 12.
  • the air duct assembly 12 is disposed in the housing 20 at the two air outlets, and the door assembly 14 is mounted on the housing 20, including the first door body 1402 and the second door body 1404, through the first door.
  • the body 1402 and the second door body 1404 are moved to different positions to open the intermediate air outlet 202, or the intermediate air outlet 202 and the two side air outlets 204, so that the wind generated by the operation of the wind wheel assembly 30 passes through the intermediate air outlet 202 or three out
  • the tuyere is blown out to the external environment, and the middle air outlet and the three-sided air outlet of the air conditioner 100 are realized, and three doors are disposed at the three air outlets to realize the middle air outlet of the air conditioner 100 and
  • the three-sided air outlet has a complicated structure and high cost, effectively reducing the cost of the air conditioner 100, improving the market competitiveness of the product, and closing the intermediate air outlet 202 through the first door body 1402 and the second door body 1404.
  • the two side air outlets 204 enable the three air outlets to be closed by closing the two door bodies, thereby avoiding the three air outlets respectively closing the three air outlets to cause a plurality of gaps in the appearance of the casing 20 of the air conditioner 100.
  • the appearance of the air conditioner 100 is beautiful, and the appearance of the casing 20 of the air conditioner 100 is effectively ensured, and the satisfaction of the user is improved.
  • the wind wheel assembly 30 includes two wind wheels 302 that rotate in opposite directions during operation to realize two air outlet zones, which increases the air flow range in which the wind wheel assembly 30 operates, and can satisfy one intermediate air outlet 202 and two side surfaces.
  • the air outlet 204 needs to ensure sufficient air volume and rapid air output, so that the air conditioner 100 can quickly achieve heating or cooling comfort, improve the user experience, and improve user satisfaction.
  • the air guiding assembly 16 is rotatably disposed inside the air duct assembly 12, and the air guiding unit 16 is disposed at the intermediate air outlet 202, respectively.
  • Two air guiding members 162 are disposed between each of the side air outlets 204, and each of the air guiding members 162 is respectively abutted against one side of the air duct assembly 12 to connect the two air outlet regions with the intermediate air outlet 202. Rotation of each air guiding member 162 with the intermediate portion of the air duct assembly 12 enables the two air outlet regions to communicate with the two side air outlets 204, respectively.
  • the air guiding device 10 further includes a wind guiding assembly 16 rotatably disposed inside the air duct assembly 12, the air guiding assembly 16 including two guides respectively located between the intermediate air outlet 202 and each of the side air outlets 204.
  • the wind member 162 is rotated by the two air guiding members 162 to abut against the two sides or the intermediate portion of the air duct assembly 12 to connect the two air outlet regions with the intermediate air outlet 202 or the two side air outlets 204, or through two
  • the air guiding members 162 are respectively located between one side and the middle portion of the air duct assembly 12 to connect the two air outlet regions with the three air outlets, thereby moving the first door body 1402 and the second door body 1404 to different positions.
  • the intermediate air outlet 202 or the three air outlets are opened, and the air outlet 202 of the air conditioner 100, the air outlet on both sides, and the air outlet on the three sides can be realized, which satisfies the user's pursuit of the multi-dimensional air outlet mode of the air conditioner 100, and improves the satisfaction of the user.
  • the air volume loss of the air conditioner 100 during the air blowing process is reduced, the working efficiency of the wind wheel 302 is improved, and the use cost is reduced.
  • each of the air guiding members 162 is rotated to abut one side of the air duct assembly 12 to connect the two air outlet regions with the intermediate air outlet 202, and the two air outlet regions are Two The side air outlets 204 are blocked.
  • the winds of the two air outlets generated by the operation of the two wind wheels 302 are all passed through the intermediate air outlet 202.
  • the middle air outlet of the air conditioner 100 is realized, and at the same time, the wind generated by the operation of the wind wheel 302 is all blown out to the external environment through the intermediate air outlet 204 that is performing the air blowing operation, and the air conditioner 100 is reduced in the air outlet.
  • the loss of the air volume inside the casing 20 in the process improves the working efficiency of the wind wheel 302, reduces the use cost, and ensures sufficient air volume, can quickly achieve the heating or cooling comfort of the air conditioner 100, and enhance the user's Use experience.
  • the two air guiding regions are respectively connected to the two side air outlets 204 by rotating the two air guiding members 162 to abut against the intermediate portion of the air duct assembly 12, and two air outlets are simultaneously provided.
  • the zone and the intermediate air outlet 202 are blocked.
  • the two wind turbines 302 work to generate two out The wind in the wind zone is blown out to the external environment through the two side air outlets 204, thereby achieving air discharge on both sides of the air conditioner 100, and reducing the air volume loss of the wind generated by the operation of the wind wheel assembly 30 inside the casing 20, thereby improving the air volume.
  • the working efficiency of the wind wheel 302 ensures that the air volume blown from the two side air outlets 204 to the external environment is sufficient, so that sufficient air exchanges with the external environment can quickly achieve the heating or cooling comfort and enhance the user's use. Experience and increase user satisfaction.
  • the two air guiding members 162 are respectively rotated between one side and the middle portion of the air duct assembly 12, so that the two air outlet regions generated by the two wind wheels 302 work are respectively separated from the middle.
  • the tuyere 202 and the two side air outlets 204 are simultaneously connected.
  • the wind generated by the operation of the wind wheel assembly 30 is simultaneously blown out through the three air outlets.
  • the air outlet of the air conditioner 100 is realized on three sides.
  • the two air outlet regions are divided by the two air guiding members 162 so that the air volume is blown out to the external environment through the two side air outlets 204 and the intermediate air outlet 202.
  • Uniform and sufficient avoiding the problem that the wind generated by the operation of the wind wheel 302 is not shunted and is blown out through the side air outlet 204 and the intermediate air outlet 202 to the external environment, and the air volume of the air outlet is uneven, effectively ensuring the air volume of all the air outlets.
  • the intermediate portion of the duct assembly 12 is provided with a guiding ramp 122, and the two air guiding members 162 are rotated to offset the intermediate portion of the duct assembly 12. It is connected to the guiding slope 122 at the time.
  • the intermediate portion of the air duct assembly 12 is provided with a guiding inclined surface 122, which is connected to the guiding inclined surface 122 when the two air guiding members 162 are rotated to abut against the intermediate portion of the air duct assembly 12, facilitating the wind wheel 302.
  • the wind generated by the work is smoothly and quickly blown out to the outside of the casing 20 along the guiding inclined surface 122 and the air guiding member 162 in the air outlet region, thereby ensuring sufficient air volume and good air blowing effect, thereby being able to satisfy the wind.
  • the user quickly meets the demand for cooling or heating comfort of the air conditioner 100, and improves the satisfaction of the user.
  • first door body 1402 and the second door body 1404 are slidably disposed on the housing 20 by slide rails.
  • the first door body 1402 and the second door body 1404 are slidably disposed on the casing 20 through the sliding rails, and the sliding rail has low cost, high reliability, wide application range, and can satisfy the first door body 1402 and The requirement that the second door body 1404 smoothly and accurately slides saves the manufacturing cost of the air conditioner 100 and improves the satisfaction of the user.
  • the slide rails are two, and the two slide rails are symmetrically arranged with a center line in the vertical direction of the intermediate air outlet 202.
  • the slide rails are two, and the two slide rails are symmetrically disposed with the center line of the vertical air outlet 202 in the vertical direction, so that the first door body 1402 and the second door body 1404 are located in the middle on the two slide rails.
  • the center line of the vertical direction of the air outlet 202 is symmetrically arranged, thereby facilitating the air conditioner 100 to control the synchronous movement of the first door body 1402 and the second door body 1404 to open an intermediate air outlet 202 and three air outlets, and the control program is simple and costly.
  • the first door body 1402 and the second door body 1404 have the same sliding distance along the two sliding rails, and the movement is accurate and flexible, thereby improving product reliability and improving user satisfaction.
  • the slide rails are one, and a slide rail is provided on the outer peripheral wall of the housing 20.
  • the slide rails are one, and one slide rail is disposed on the outer peripheral wall of the housing 20 such that both the first door body 1402 and the second door body 1404 can slide circumferentially along the outer peripheral wall of the housing 20. Further The first door body 1402 and the second door body 1404 are moved to different positions to close or open the middle air outlet 202 and each side air outlet 204, which can realize the middle air outlet of the air conditioner 100, the air outlet on both sides, and the air outlet on three sides.
  • the unilateral air outlet further satisfies the user's pursuit of the multi-dimensional air outlet mode of the air conditioner, improves the user experience, and improves the satisfaction of the user.
  • one of the first door body 1402 and the second door body 1404 is provided with a groove structure, and the other one of the first door body 1402 and the second door body 1404 is disposed There is a convex structure adapted to the groove structure, and the groove structure and the convex structure are located on a side adjacent to the first door body 1402 and the second door body 1404.
  • one of the first door body 1402 and the second door body 1404 is provided with a groove structure
  • the other of the first door body 1402 and the second door body 1404 is provided with the groove structure
  • the adapted raised structure, the groove structure and the raised structure are located on a side adjacent to the first door body 1402 and the second door body 1404, such that the first door is tightly connected by the mating connection of the groove structure and the raised structure
  • the body 1402 and the second door body 1404 can be tightly coupled together when the first door body 1402 and the second door body 1404 close the intermediate air outlet 202 and the two side air outlets 204, avoiding the first door body 1402 and the second When the door body 1404 is connected, there is a gap which affects the consistency of the appearance of the air conditioner 100, effectively ensuring the appearance of the air conditioner 100, and improving the satisfaction of the user.
  • the louver assembly is disposed inside the casing 20 opposite to the intermediate air outlet 202.
  • the louver assembly is disposed at a position opposite to the intermediate air outlet 202 inside the casing 20, and the louver assembly is rotated to control the air outlet direction of the intermediate air outlet 202 such that the air outlet direction of the intermediate air outlet 202 is made.
  • the user's pursuit of the multi-dimensional air outlet mode of the air conditioner 100 is further satisfied, and the satisfaction of the user's use is improved.
  • a louver assembly may be disposed at a position opposite to each side air outlet 204 in the interior of the casing 20, and the air outlet direction of each side air outlet 204 is controlled by the louver assembly rotation, so that the same side air outlet 204 can blow differently.
  • the direction of the wind further satisfies the user's pursuit of the multi-dimensional air outlet mode of the air conditioner, and improves the satisfaction of the user.
  • an air guiding device 10 is further proposed for an air conditioner 100.
  • the air conditioner 100 includes a housing 20 and a wind wheel assembly 30, and the housing 20
  • the middle air outlet 202 in the middle and the two sides on the two sides of the middle air outlet 202 are disposed on the upper side
  • the air outlet 204 includes two wind wheels 302 that rotate in opposite directions during operation to realize two air outlets.
  • the air guiding device 10 includes: a duct assembly 12 connected to the wind wheel assembly 30, two winds
  • the wheel 302 is mounted inside the air duct assembly 12, and the air duct assembly 12 is disposed inside the housing 20 at the two air outlet areas.
  • the damper assembly 140 is mounted on the housing 20, including the intermediate air outlet 202 and the two sides.
  • Three cylindrical revolving doors 142 at the air outlet 204 wherein each cylindrical revolving door 142 is provided with a ventilation passage 1422, and each cylindrical revolving door 142 is rotated to close the intermediate air outlet 202 or each when the ventilation passage 1422 is inside the casing 20.
  • the side air outlets 204, each of the cylindrical revolving doors 142 are rotated to open the intermediate air outlets 202 or each of the side air outlets 204 when the ventilation passages 1422 communicate with the interior and exterior of the housing 20.
  • the air guiding device 10 provided by the embodiment of the second aspect of the present invention is used for the air conditioner 100.
  • the air conditioner 100 includes a casing 20 and a wind wheel assembly 30 provided with an intermediate air outlet 202 and two side air outlets 204, and the air guiding device 10 Including the air duct assembly 12 and the damper assembly 140, the air duct assembly 12 is coupled to the wind wheel assembly 30, and the wind wheel assembly 30 includes two wind wheels 302 that rotate in opposite directions during operation to achieve two air outlet zones, two wind wheels 302 is installed inside the duct assembly 12, and the duct assembly 12 is disposed inside the casing 20 at the two outlet regions, and the ventilation passages 1422 are located in the casing by the rotation of the three cylindrical revolving doors 142 mounted on the casing 20.
  • the inner air outlet 202 and/or each of the side air outlets 204 are closed or opened inside or outside the connecting housing 20 such that the wind generated by the two wind wheels 302 is opened through the intermediate air outlet 202 and/or the side air outlet.
  • the air outlet 100 can be configured in various ways to meet the user's demand for multi-dimensional airflow of the air conditioner 100, thereby improving the satisfaction of the user.
  • the ventilation passage 1422 provided by the cylindrical revolving door 142 communicates with the inside and the outside of the casing 20 to realize the wind, so that the wind generated by the operation of the wind wheel 302 is smoothly and quickly blown out to the external environment through the ventilation passage 1422 of the cylindrical revolving door 142.
  • the air guiding through the louver assembly is avoided to limit the air outlet range, effectively increasing the air outlet range, ensuring a sufficient air output amount and a wide air outlet range, thereby enabling the wind blown from the inside of the casing 20 to the outside to be able to Quickly and fully exchange heat with the air in the external environment to quickly achieve the heating or cooling comfort of the air conditioner 100, satisfying the user's need to quickly achieve the cooling or heating comfort of the air conditioner 100, improving the user experience and improving the user experience.
  • the cylindrical revolving door 142 is provided with a ventilation passage 1422, which can be controlled by the ventilation passage 1422 when the cylindrical revolving door 142 opens the intermediate air outlet 202 and/or the side air outlet 204.
  • the position further controls the direction of the wind, so that the same air outlet can blow out the wind in different directions, improving the satisfaction of the user, and avoiding the change of the wind direction by the rotation of the revolving door of the single door panel to separate one air outlet into two air outlets.
  • the area affects the comfort of the user, and the air outlet direction of the air outlet is changed through the ventilation passage 1422, and the air outlet is uniform and the air volume is sufficient, the user's comfort is ensured, and the user's satisfaction is improved.
  • the intermediate air outlet 202 and the two side air outlets 204 are disposed on the outer peripheral wall of the housing 20, and the wind that facilitates the operation of the wind wheel assembly 30 is quickly and smoothly blown out to the outside through the intermediate air outlet 202 and the side air outlet 204.
  • the environment satisfies the user's need for air conditioning of the air conditioner 100.
  • the cylindrical revolving door 142 is installed at one of the intermediate air outlets 202 and the two side air outlets 204, which is convenient for mass production, convenient for maintenance and low maintenance cost, and is advantageous for improving the generalization and standardization of the product structure and reducing Production costs and maintenance costs increase market competitiveness.
  • the wind wheel assembly 30 includes two wind wheels 302 that rotate in opposite directions during operation to realize two air outlet regions, which increases the air flow range in which the wind wheel assembly 30 operates, and can satisfy the intermediate air outlet 202 and the two side surfaces.
  • the demand for the outlet of the tuyere 204 further satisfies the user's demand for the multi-dimensional air outlet mode of the air conditioner 100, and improves the satisfaction of the user.
  • the ventilation passages 1422 are wide-mouth structures or curved structures; wherein each of the cylindrical rotating doors 142 rotates to open the intermediate air outlets 202 or each of the side air outlets 204 when the wide-mouth structure is The wide mouth is located inside the casing 20.
  • the ventilation passage 1422 is a wide-mouth structure or an arc structure, and the ventilation passage 1422 of the wide-mouth structure and the curved structure can satisfy the different structure of the air passage assembly 12, thereby causing the wind wheel assembly 30 to work.
  • the wind passages in the wind-out area are smoothly and quickly blown out to the external environment along the air ducts defined by the different structural components of the air duct assembly 12, ensuring sufficient air volume, wide air outlet range and uniform air output effect, and improving user satisfaction.
  • the ventilation passage 1422 of the wide-mouth structure and the curved structure can meet the requirements of different positions of the intermediate air outlet 202 and the side air outlet 204, and can meet the requirements of different air outlet directions of the same air outlet, and has wide application range.
  • the ventilation passages 1422 are wide-mouth structures.
  • the wide mouth of the wide-mouth structure is located inside the casing 20, which is beneficial to the wind generated by the operation of the wind wheel 302.
  • the air duct assembly 12 located in the air outlet area is smoothly and quickly blown out to the outside of the casing 20 along the wide mouth of the wide-mouth structure, thereby ensuring a sufficient amount of air blown out to the outside of the casing 20 and Good air blowing effect, which can meet the user's need to quickly achieve the cooling or heating comfort of the air conditioner 100, improve the user experience, and the wide-mouth structure is conducive to centralized and rapid airflow, further improving user satisfaction. .
  • the ventilation passage 1422 is an arc structure.
  • the ventilation passage 1422 of the arc structure communicates with the inside of the casing 20 and the outside to open the intermediate air outlet 202 or the side air outlet 204, it is advantageous to control the wind along the arc generated by the operation of the wind wheel 302.
  • the ventilation passages 1422 of the structure are blown out to the external environment from the two sides of the intermediate air outlet 202 or the side air outlet 204, thereby further expanding the air outlet range, satisfying the user's demand for the multi-dimensional air outlet mode of the air conditioner 100, and a large range of air outlets. It is advantageous for the air conditioner 100 to uniformly heat or cool, and meets the user's demand for uniform heating or cooling of the air conditioner 100, thereby improving the satisfaction of the user.
  • three cylindrical revolving doors 142 include an intermediate cylindrical revolving door 144 corresponding to the intermediate vent 202 and two side vents 204.
  • the three cylindrical revolving doors 142 include an intermediate cylindrical revolving door 144 corresponding to the intermediate vent 202 and two side cylindrical revolving doors 146 corresponding to the two side vents 204, two side cylinders
  • the revolving doors 146 are symmetrically distributed on both sides of the intermediate cylindrical revolving door 144, ensuring the appearance of the air conditioner 100 and improving the satisfaction of the user.
  • the ventilation passage 1422 of the intermediate cylindrical revolving door 144 is a wide-mouth structure, which facilitates the wind generated by the operation of the wind wheel 302 to be quickly, concentratedly and uniformly blown out from the intermediate air outlet 202 to the external environment through the ventilation passage 1422 of the wide-mouth structure, and can satisfy the user.
  • the need for concentrated air outlet and large air volume in the intermediate air outlet 202, and concentrated and sufficient air output, is advantageous for quickly achieving heating or cooling of the air conditioner 100, thereby improving the user experience and improving user satisfaction; further
  • the middle cylindrical revolving door 144 opens the middle air outlet 202 when the wide mouth structure is located inside the casing 20, which is beneficial to the wind generated by the wind wheel 302 working through the air duct assembly 12 located in the air outlet area along the wide mouth structure.
  • the wide mouth is smoothly and quickly blown out to the outside of the casing 20, further ensuring a sufficient amount of air blown out to the outside of the casing 20 and a good air blowing effect, and ensuring that the air conditioner 100 can quickly achieve the comfort of cooling or heating. Improve user experience and increase user satisfaction.
  • the ventilation passages 1422 of the two side cylindrical revolving doors 146 are arc-shaped structures, and the direction of the air outlets of the side air outlets 204 can be further controlled by adjusting the positions of the curved structures communicating with the inside and the outside of the casing 20, thereby expanding the side air outlets 204.
  • the air outlet range on both sides can meet the user's demand for the multi-dimensional air outlet mode of the air conditioner 100, and the large air outlet range is favorable for the air blown from the inside of the casing 20 to the outside to exchange heat with the air of the external environment.
  • the expansion of the range of heating or cooling of the air conditioner 100 can satisfy the user's need for uniform heating or uniform cooling of the air conditioner 100, improve the user experience, and improve user satisfaction.
  • the two side cylindrical revolving doors 146 are disposed away from each other when the two side air outlets 204 are opened.
  • the two arc-shaped structures are disposed away from each other, thereby avoiding the two arc-shaped structures being oppositely disposed so that the two side air outlets 204 are out.
  • the wind direction is biased toward the middle air outlet 202 to reduce the air outlet range, and the two arc-shaped structures are oppositely disposed so that the wind blown by the side air outlet 204 intersects with the wind blown by the intermediate air outlet 202 to affect the air volume and the air output effect, and is effective.
  • the ground has increased the wind output range and ensured a good air output effect, and improved user satisfaction.
  • the two side cylindrical revolving doors 146 are disposed opposite to each other when the two side air outlets 204 are opened, so that the wind generated by the operation of the wind wheel 302 can be blown out to the side of the side air outlet 204, further
  • the air outlet range of the side air outlet 204 is increased, and the air blown from the inside of the casing 20 is exchanged with the outside air in a large range, so that the air conditioner 100 can uniformly and widely heat up. Or the comfort of cooling, to achieve uniform heating or even cooling, to meet the user's demand for the comfort of the air conditioner 100, to enhance the user experience, and to improve user satisfaction.
  • a middle portion of the air duct assembly 12 is disposed near a side of each of the wind wheels 302 with a first guiding slope 1202, and each side cylinder is rotated.
  • the first guiding ramp 1202 is adapted to the curved structure.
  • a middle portion of the air duct assembly 12 is disposed adjacent to each side of each of the wind wheels 302 with a first guiding slope 1202.
  • the first guiding slope The 1202 is adapted to the curved structure, so that the wind generated by the working of the wind wheel 302 is in the air outlet area.
  • the first guiding inclined surface 1202 of the air duct assembly 12 flows quickly and smoothly to the curved structure, and is quickly and smoothly blown out to the external environment through the curved structure ventilation passage 1422, thereby ensuring sufficient air volume and good airflow of the side air outlet 204.
  • the air outlet effect can further satisfy the user's demand for the air conditioner 100 to quickly achieve the cooling or heating comfort, and improve the satisfaction of the user.
  • a middle portion of the air duct assembly 12 is disposed near a side of the intermediate air outlet 202 with a concave curved surface structure 1204, and a concave curved surface structure.
  • the 1204 is adapted to the intermediate cylindrical revolving door 144.
  • a portion of the middle portion of the duct assembly 12 adjacent the intermediate air outlet 202 is provided with a concave curved surface structure 1204, and the concave curved surface structure 1204 is adapted to the intermediate cylindrical revolving door 144 such that the intermediate cylinder rotates
  • the door body 1424 is adapted to the curved surface structure to prevent the wind generated by the operation of the two wind wheel assemblies 30 from flowing through the gap between the intermediate cylindrical rotating door 144 and the middle portion of the air duct assembly 12.
  • the air volume and the air outlet effect of the two side air outlets 204 ensure that the air outlets 202 do not emit air, and the air outlets 204 of the two side air outlets 204 have sufficient air volume and good air blowing effect when the air outlets 204 are exhausted. User satisfaction.
  • the middle portion of the air duct assembly 12 is disposed on both sides of the concave curved surface structure 1204 with a second guiding inclined surface 1206, and the second guiding inclined surface 1206 is a curved structure that protrudes outward.
  • the middle portion of the air duct assembly 12 is disposed on both sides of the concave curved surface structure 1204 with a second guiding inclined surface 1206, and the second guiding inclined surface 1206 is an outwardly convex curved surface structure, so that the intermediate cylindrical rotating door
  • the middle air outlet 202 is opened, the wind generated by the wind wheel 302 flows smoothly and rapidly into the air passage 1422 of the middle circular revolving door and is blown out to the outside of the casing 20 to ensure the middle.
  • the air outlet 202 has sufficient airflow and good airflow effect, thereby satisfying the user's need for the air conditioner 100 to quickly achieve cooling or heating comfort, and improving user satisfaction.
  • each cylindrical revolving door 142 includes two door bodies 1424 forming a venting passage 1422, a larger one of the two door bodies 1424 and the intermediate vent 202 or each The side air outlets 204 are adapted.
  • each cylindrical revolving door 142 includes two door bodies 1424 that form a venting passage 1422, a larger one of the two door bodies 1424 and the intermediate vent 202 and or each side
  • the face air outlet 204 is adapted such that the larger door body 1424 of the cylindrical revolving door 142 is coupled to the housing 20 to close the intermediate air outlet 202 or the side air outlet 204, and between the larger door body 1424 and the smaller door body 1424.
  • the parts are all the ventilation passages 1422, further increasing the air outlet range of the ventilation passages 1422, so that the air blown from the inside of the casing 20 exchanges heat with the outside air in a large range, so that the air conditioner 100 can be quickly, Uniformly and extensively achieve the comfort of heating or cooling, improve the user experience and improve user satisfaction.
  • a wind guide control method for an air conditioner comprising a housing, a wind wheel assembly, and the guide according to any one of the above first embodiment
  • the wind device is provided with a middle air outlet and two side air outlets on both sides of the middle air outlet, the wind wheel assembly is disposed inside the housing, and the wind wheel assembly includes rotating in opposite directions during operation to realize two air outlet regions
  • the two wind wheels as shown in FIG. 9 , are schematic flowcharts of the air guiding control method of the first embodiment of the present invention, and the air guiding control method includes:
  • Step 902 detecting a wind mode command
  • Step 904 according to the air outlet mode command, the first door body and the second door body of the door body assembly are controlled to move to different positions to control the working state of the wind wheel assembly.
  • An embodiment of a third aspect of the present invention provides an air guiding control method for an air conditioner, the air conditioner comprising a housing and a wind wheel assembly provided with an intermediate air outlet and two side air outlets, the wind wheel assembly being disposed inside the housing And comprising two wind wheels, the air guiding control method is: detecting the wind mode command, controlling the first door body and the second door body of the door body assembly to move to different positions according to the air outlet mode command, and controlling the working state of the wind wheel component
  • the intermediate air outlet, or the intermediate air outlet and the two side air outlets are opened by moving the first door body and the second door body to different positions, so that the wind generated by the working of the wind wheel assembly is blown out through the middle air outlet or the three air outlets.
  • the middle air outlet and the three-sided air outlet of the air conditioner are realized, and three doors are arranged at the three air outlets to realize the problem that the intermediate air outlet of the air conditioner and the three-sided air outlet structure are complicated and the cost is high.
  • the utility model effectively reduces the cost of the air conditioner, improves the market competitiveness of the product, and simultaneously closes the middle air outlet and the two side air outlets through the first door body and the second door body, so that the passage When the door body is closed, the three air outlets can be closed, and the three air outlets are respectively closed by the three door bodies, so that the appearance of the air conditioner has a plurality of gaps, which affects the appearance of the air conditioner, and effectively ensures the air conditioner.
  • the consistency of the appearance of the housing improves the satisfaction of the user.
  • FIG. 9 is a flow chart of the air guiding control method according to the first embodiment of the present invention. include:
  • Step 906 according to the air outlet mode command, the two air guiding members of the air guiding device are controlled to rotate to different positions.
  • the air guiding control method provided by the present invention controls the two air guiding members of the air guiding device to rotate to different positions according to the air blowing mode command, so that the two air guiding members rotate respectively against the two sides or the middle portion of the air duct assembly
  • the two air outlets are connected to the middle air outlet or the two side air outlets, and the two air guiding members are located between one side and the middle portion of the air duct assembly, and the two air outlet areas are connected to the three air outlets.
  • the first door body and the second door body are moved to different positions to open the middle air outlet or the three air outlets, so that the middle air outlet of the air conditioner, the air outlet on both sides and the air outlet on three sides can be realized, and the user can satisfy the air conditioner.
  • the pursuit of the multi-dimensional air way improves the satisfaction of the user's use, and at the same time ensures that the wind generated by the wind wheel work is blown out to the outside of the casing through the air outlet that is performing the wind action, reducing the inside of the casing during the air blowing process.
  • the loss of air volume improves the working efficiency of the wind turbine, reduces the cost of use, and ensures sufficient air output, which can quickly achieve the comfort of heating or cooling of the air conditioner and enhance the user's use.
  • FIG. 10 is a schematic flowchart diagram of a wind guiding control method according to a second embodiment of the present invention, the air guiding control method includes:
  • Step 1002 detecting a wind mode command
  • Step 1004 according to the middle air blowing command, control the first door body and the second door body to move to close the two side air outlets and open the middle air outlet to control the two wind wheels to start working.
  • the air blowing mode command is an intermediate air blowing command
  • the first door body and the second door body are controlled to move to close the two side air outlets and open the middle air outlet, and the control is performed.
  • the two wind wheels start to work, so that the wind generated by the working of the wind wheel assembly is quickly and smoothly blown out to the external environment through the middle air outlet opened by the first door body and the second door body, and the middle air outlet of the air conditioner is realized.
  • the flow diagram of the air guiding control method of the second embodiment of the present invention as shown in FIG. 10 further includes:
  • Step 1006 According to the intermediate air blowing instruction, each of the air guiding members of the air guiding device is controlled to be in contact with one side of the air duct assembly, and the two air outlet portions are connected to the intermediate air outlet.
  • the air guiding control method provided by the present invention controls each of the air guiding devices according to the intermediate air blowing instruction
  • the rotation of the air guiding members respectively abuts one side of the air duct assembly to connect the two air outlet areas with the middle air outlet, and simultaneously blocks the two air outlet areas and the two side air outlets, so that the air conditioner performs the middle out
  • the winds of the two outlets generated by the two wind turbines are all blown out to the external environment through the intermediate air outlet, which reduces the air loss inside the air conditioner during the air outlet, and improves the wind turbine's Work efficiency, reducing the cost of use, while ensuring sufficient air volume, can quickly achieve the comfort of air conditioning heating or cooling, and enhance the user experience.
  • FIG. 11 is a schematic flowchart diagram of a wind guiding control method according to a third embodiment of the present invention, the air guiding control method includes:
  • Step 1102 detecting a wind mode command
  • Step 1104 according to the three-sided air blowing command, control the first door body and the second door body to move to open the middle air outlet and the two side air outlets, and control the two wind wheels to start working.
  • the air outlet mode command is a three-sided air blowing command
  • the first door body and the second door body are controlled to move to open the middle air outlet and the two side air outlets, and control two The wind wheel starts to work, so that the wind generated by the working of the wind wheel assembly is quickly and smoothly blown out to the external environment through the middle air outlet and the two side air outlets, and the air outlet of the air conditioner is realized on three sides.
  • the flow diagram of the air guiding control method of the third embodiment of the present invention as shown in FIG. 11 further includes:
  • Step 1106 according to the three-sided air blowing command, each air guiding member of the air guiding device is controlled to rotate between one side and the middle portion of the air duct assembly, and the two air outlet regions are connected to the intermediate air outlet and the two side air outlets. through.
  • the air guiding control method provided by the present invention controls each air guiding member of the air guiding device to rotate between one side and the middle portion of the air duct assembly according to the three-sided air blowing command, and the two air outlet regions and the intermediate air outlet port and The two side air outlets are connected. Since the two air guiding members are located inside the two air outlet regions, the two air outlet portions are divided by two air guiding members to be blown out to the outside through the two side air outlets and the middle air outlet. The air volume of the environment is even and sufficient, so that the wind generated by the working of the wind wheel can be blown out through the side air outlet and the middle air outlet without any diversion, and there is a problem that the air volume of the air outlet is uneven, which effectively ensures the air volume of all the air outlets.
  • FIG. 12 is a schematic flowchart diagram of a wind guiding control method according to a fourth embodiment of the present invention, the air guiding control method includes:
  • Step 1202 detecting a wind mode command
  • Step 1204 according to the air blowing instructions on both sides, control the first door body and the second door body to move to open the middle air outlet and the two side air outlets, and control the rotation of the two air guiding members to abut the middle portion of the air duct assembly.
  • the two outlet zones are respectively connected with the two side air outlets to control the two wind wheels to start working.
  • the air outlet mode command is an air blowing command on both sides, and according to the air blowing commands on both sides, the first door body and the second door body are controlled to move to open the middle air outlet and the two side air outlets, Controlling the rotation of the two air guiding members to abut against the intermediate portion of the air duct assembly, respectively connecting the two air outlet regions with the two side air outlets, and blocking the two air outlet regions and the intermediate air outlet at the first door
  • the middle and the second door move the middle air outlet and the two side air outlets are opened, so that the winds of the two air outlets generated by the two wind turbines are all blown out to the external environment through the two side air outlets, thereby realizing
  • the air outlet on both sides of the air conditioner reduces the air volume loss of the wind generated by the working of the wind wheel assembly, improves the working efficiency of the wind wheel, and ensures sufficient air volume from the two side air outlets to the external environment.
  • the heat exchange between the sufficient wind and the external environment can quickly achieve the heating or cooling
  • FIG. 13 is a schematic flowchart diagram of a wind guiding control method according to a fifth embodiment of the present invention, the air guiding control method includes:
  • Step 1302 detecting a wind mode command
  • Step 1304 according to the stop air blowing command, control the two wind wheels to stop working, control the first door body and the second door body to move to close the middle air outlet and the two side air outlets, and control the two air guiding members to stop rotating.
  • the air blowing mode command is to stop the air blowing command, and according to the stop air blowing command, the two wind wheels are controlled to stop working to stop generating wind, and the first door body and the second door body are controlled to move to the middle of closing.
  • the air outlet and the two side air outlets prevent the air conditioner from being out of the air outlet state, and the intermediate air outlet and the two side air outlets are exposed to the outside to affect the appearance of the air conditioner, effectively ensuring the appearance of the air conditioner, and at the same time controlling
  • the two air guiding members stop rotating, avoiding the air guiding member stopping In the state of stopping the wind command, the waste energy is generated and the noise is generated, which affects the user's use and improves the satisfaction of the user.
  • FIG. 14 is a schematic flowchart diagram of a wind guiding control method according to a sixth embodiment of the present invention, including:
  • Step 1402 detecting a wind mode command
  • Step 1404 according to the wind mode command, control each cylindrical revolving door of the damper assembly to rotate so that the ventilation passage is located inside the housing or communicates with the inside and outside of the housing to control the working state of the wind wheel assembly.
  • the embodiment of the fourth aspect of the present invention provides an air guiding control method for an air conditioner, the air conditioner comprising a housing, a wind wheel assembly, and the air guiding device according to any one of the second aspect embodiments, the housing
  • the upper air outlet is provided with two side air outlets on both sides of the middle air outlet
  • the wind wheel assembly comprises two wind wheels which are reversely rotated during operation to realize two air outlet areas
  • the air guiding control method comprises: detecting The air outlet mode command controls the rotation of each cylindrical revolving door of the damper assembly according to the air outlet mode command so that the ventilation passage is located inside the housing or communicates inside and outside the housing, and controls the working state of the wind wheel assembly so as to be mounted on the housing
  • the three cylindrical revolving doors rotate such that the ventilation passages are located inside the housing or communicate with the inside and outside of the housing to close or open the intermediate air outlet and/or each side air outlet, so that the wind generated by the wind wheel assembly works through the open intermediate air outlet And/or each side air outlet is blown out
  • the ventilation passage provided by the cylindrical revolving door communicates with the inside and the outside of the casing to realize the wind, so that the wind generated by the operation of the wind wheel is smoothly and quickly blown out to the external environment through the ventilation passage of the cylindrical revolving door, thereby avoiding the passage through the louver assembly.
  • the air deflector limits the airflow range, effectively increases the airflow range, ensures sufficient airflow and a wide range of airflow, and allows the wind blown from the inside of the casing to the outside to quickly and fully with the external environment.
  • the air exchange in the air quickly reaches the comfort of heating or cooling of the air conditioner, satisfies the user's need for the air conditioner to quickly achieve the cooling or heating comfort, enhances the user experience and improves the satisfaction of the user; meanwhile, the cylinder
  • the revolving door is set to pass
  • the air passage can further control the direction of the wind by controlling the position of the ventilation passage when the cylindrical revolving door opens the middle air outlet and/or the side air outlet, so that the same air outlet can blow the wind in different directions, thereby improving the satisfaction of the user.
  • the rotation of the revolving door of a single door panel is changed to change the direction of the wind, and the air outlet is separated into two air outlet areas to affect the comfort of the user.
  • the air outlet direction of the air outlet is changed through the ventilation passage, and the air outlet is evenly ensured.
  • the air volume is sufficient to ensure the comfort of the user and improve the satisfaction of the user.
  • the three cylindrical revolving doors include an intermediate cylindrical revolving door corresponding to the intermediate vent and two side cylindrical revolving doors corresponding to the two side vents.
  • the three cylindrical revolving doors include an intermediate cylindrical revolving door corresponding to the intermediate air outlet and two side cylindrical revolving doors corresponding to the two side air outlets, and the two side cylindrical revolving doors are symmetrically distributed. On both sides of the middle cylindrical revolving door, the appearance of the air conditioner is ensured and the satisfaction of the user is improved.
  • FIG. 15 is a schematic flowchart diagram of a wind guiding control method according to a seventh embodiment of the present invention, including:
  • Step 1502 detecting a wind mode command
  • Step 1504 according to the middle air blowing command, controlling the rotation of the intermediate cylindrical revolving door to open the middle air outlet of the ventilation passage connecting the inside and the outside of the casing, and controlling the rotation of each side cylindrical revolving door so that the ventilation passage is located inside the casing to close each side.
  • the tuyere controls the two wind wheels to start working.
  • the air outlet mode is an intermediate air blowing command
  • the rotation of the intermediate cylindrical revolving door is controlled to open the middle air outlet of the ventilation passage connecting the inner and outer portions of the casing, and control each side cylinder
  • the rotation of the revolving door causes the ventilation passage to be located inside the casing to close each side air outlet, and the two wind wheels are controlled to start working, so that the wind generated by the two wind wheels works smoothly and quickly along the ventilation passage of the air passage assembly through the intermediate cylindrical revolving door.
  • the air is blown out to the external environment to achieve the middle air outlet of the air conditioner; the wind generated by the wind wheel work is blown out to the outside of the casing through the ventilation passage of the intermediate cylindrical revolving door, thereby avoiding the limitation of the air outlet range by the wind guide of the louver assembly.
  • the air is uneven, effectively ensuring that the air blown out from the middle air outlet is uniform, the air volume is sufficient, and the range is wide, thereby facilitating the heat exchange of the air in the external environment with sufficient, uniform and wide range of winds to improve the air conditioner system.
  • the efficiency of heat or cooling allows the air conditioner to quickly reach the comfort of heating or cooling. Improve user experience and increase user satisfaction.
  • FIG. 16 is a schematic flowchart diagram of a wind guiding control method according to a seventh embodiment of the present invention, including:
  • Step 1602 detecting a wind mode command
  • Step 1604 according to the air blowing command on both sides, control the rotation of the intermediate cylindrical revolving door so that the ventilation passage is located inside the casing to close the middle air outlet, and control the rotation of each side cylindrical revolving door so that the ventilation passage communicates with the inside and outside of the casing to open each side.
  • the tuyere controls the two wind wheels to start working.
  • the air outlet mode command is an air blowing command on both sides
  • the rotation of the intermediate cylindrical rotating door is controlled so that the ventilation passage is located inside the casing to close the middle air outlet, and each side cylinder is controlled.
  • Rotating the door rotates the ventilation passage to open the air outlet of each side through the inside and outside of the housing, and controls the two wind wheels to start working, so that the wind generated by the two wind wheels works smoothly along the air passage assembly through the ventilation passage of the side cylindrical revolving door.
  • the air is blown out to the external environment to realize the air outlet on both sides of the air conditioner; the wind generated by the wind wheel work is directly blown out to the outside of the casing through the ventilation passage of the side cylindrical revolving door, thereby avoiding the wind passage range through the louver assembly.
  • the restricted wind is uneven, effectively ensuring that the air blown from the middle air outlet is uniform, the air volume is sufficient, and the range is wide, thereby facilitating sufficient, uniform, wide-ranging wind to quickly exchange heat with the air of the external environment, and improve the air conditioner.
  • the efficiency of heating or cooling allows the air conditioner to quickly achieve heating or cooling comfort and enhance the user experience. High degree of user satisfaction.
  • FIG. 17 is a schematic flowchart diagram of an air guiding control method according to an eighth embodiment of the present invention, including:
  • Step 1702 detecting a wind mode command
  • Step 1704 according to the three-sided air blowing instruction, control the middle cylindrical revolving door and each side cylindrical revolving door to rotate, so that the ventilation passage communicates with the inner and outer portions of the casing to open the intermediate air outlet and each side air outlet, and control the two wind wheels to start working. .
  • the air outlet mode command is a three-sided air blowing command, and according to the three-sided air blowing command, the intermediate cylindrical revolving door and each side cylindrical revolving door are rotated to open the middle of the ventilation passage connecting the inside and outside of the casing.
  • the air outlet and each side air outlet control two wind wheels to start working, so that the wind generated by the two wind wheels works along the air passage assembly through the middle cylinder revolving door ventilation passage and the two side cylindrical revolving door ventilation passage air outlet Smooth and fast blowing out to the external environment
  • the air from the three sides of the air conditioner is blown out; the wind generated by the working of the wind wheel is blown out to the outside of the casing through the ventilation passages of the intermediate cylindrical revolving door and the side cylindrical revolving door, thereby avoiding the wind guiding range of the louver assembly to limit the wind out unevenness.
  • the air volume is sufficient and the range is wide, which is beneficial to the sufficient, uniform and wide range of winds to quickly exchange heat with the air of the external environment, and improve the air conditioner.
  • the efficiency of heating or cooling allows the air conditioner to quickly achieve heating or cooling comfort, enhance the user experience, and increase user satisfaction.
  • FIG. 18 is a schematic flowchart diagram of a wind guiding control method according to a ninth embodiment of the present invention, including:
  • Step 1802 detecting a wind mode command
  • Step 1804 according to the stop air command, control the two wind wheels to stop working, control the middle cylinder revolving door and each side cylindrical revolving door to rotate so that the ventilation passage is located inside the casing to close the middle air outlet and each side air outlet.
  • the air blowing mode command is to stop the air blowing command, and according to the stop air blowing command, the two wind wheels are controlled to stop working without generating wind, and the intermediate cylindrical rotating door and each side cylindrical rotating door are rotated.
  • the ventilation passage is located inside the casing to close the middle air outlet and each side air outlet, thereby preventing the air outlet from being in the air outlet mode and the two side air outlets being exposed on the outer peripheral wall of the casing, thereby affecting the appearance of the air conditioner.
  • the utility model effectively ensures the appearance of the air conditioner and improves the satisfaction of the user.
  • the ventilation passage of the intermediate cylindrical revolving door is a wide-mouth structure, and the wide opening of the wide-mouth structure is located inside the casing when the intermediate cylindrical revolving door is rotated to open the intermediate air outlet.
  • the ventilation passage of the intermediate cylindrical revolving door is a wide-mouth structure, which is favorable for the wind generated by the wind wheel working through the ventilation passage of the wide-mouth structure to be quickly, concentratedly and evenly blown out to the external environment by the intermediate air outlet, which can satisfy
  • the user needs to concentrate on the air outlet and the large amount of airflow, and the concentrated and sufficient air output is beneficial to quickly realize the heating or cooling of the air conditioner, thereby improving the user experience and improving the satisfaction of the user;
  • the revolving door opens the middle air outlet, the wide mouth of the wide-mouth structure is located inside the casing, which is favorable for the wind generated by the wind wheel to smoothly and quickly blow out to the shell through the wide mouth of the wide-mouth structure. Externally, the outside of the housing is further guaranteed to be blown out
  • the air volume and the good air output ensure that the air conditioner can quickly achieve the comfort of cooling or heating, improve the user experience and improve the user satisfaction.
  • the ventilation passages of the two side cylindrical revolving doors are arc-shaped structures, and when the two side cylindrical revolving doors are rotated to open the two side air outlets, the two arc-shaped structures are disposed away from each other.
  • the ventilation passages of the two side cylindrical revolving doors are arc-shaped structures, and the direction of the air outlet of the side air outlets can be further controlled by adjusting the position of the arc-shaped structure communicating with the inside and the outside of the casing, thereby expanding the side air outlets.
  • the air outlet range to both sides can meet the user's demand for the multi-dimensional air outlet mode of the air conditioner, and the large air outlet range is advantageous for the air blown from the inside of the casing to the outside to exchange heat with the air of the external environment. Expanding the range of heating or cooling of air conditioners can meet the needs of users for uniform heating or even cooling of air conditioners, improve user experience and improve user satisfaction.
  • the two arc-shaped structures are arranged facing away from each other, so as to avoid the opposite arrangement of the two arc-shaped structures, the air outlet direction of the two side air outlets is biased toward the middle air outlet to be reduced.
  • the wind range avoids the arrangement of the two curved structures so that the wind blown by the side air outlet intersects with the wind blown by the middle air outlet to affect the air volume and the air output effect, effectively increasing the air flow range and ensuring a good wind.
  • the effect of the wind is to improve the satisfaction of the user.
  • the two side cylindrical revolving doors are arranged with the two arc-shaped structures facing away when the two side air outlets are opened, so that the wind generated by the working of the wind wheel can be blown out to the side of the side air outlet, further increasing the side.
  • the air outlet area of the air outlet further exchanges heat with the outside air in a large range from the air blown inside the casing, so that the air conditioner can reach the heating or cooling comfort evenly and in a wide range. Uniform heating or even cooling, to meet the user's demand for air conditioner comfort, improve user experience and improve user satisfaction.
  • an air conditioner comprising: a housing, wherein the housing is provided with an intermediate air outlet and two side air outlets on both sides of the intermediate air outlet; the wind wheel assembly is arranged Inside the housing, the wind wheel assembly includes two wind wheels that rotate in opposite directions during operation to achieve two air outlet zones; and the air guiding device of any of the above-described embodiments.
  • An air conditioner includes a housing, a wind wheel assembly, and the air guiding device according to any one of the above aspects of the first aspect, wherein the housing is located The middle intermediate air outlet and the two side air outlets on both sides of the middle air outlet, the wind wheel assembly is disposed inside the casing, and includes two wind wheels which are reversely rotated during operation to realize two air outlet zones.
  • the air conditioner provided by the embodiment of the fifth aspect of the present invention includes all the advantageous technical effects of the air guiding device provided by the first aspect of the present invention, and is not described herein.
  • the method further includes: a detecting device disposed on the casing for detecting the wind mode command; a controller disposed on the casing, the wind wheel assembly, the door body assembly, The two air guiding members of the air guiding device are connected, and the two wind wheels of the wind wheel assembly, the first door body and the second door body of the door body assembly, and the two air guiding members are controlled according to the air blowing mode command;
  • the air outlet mode command includes an intermediate air blowing command, two side air blowing commands, three side air blowing commands, and a stop air blowing command.
  • the air conditioner further includes a detecting device and a controller.
  • the detecting device is disposed on the casing to detect the wind mode command
  • the controller is disposed on the casing, and the wind wheel assembly, the door assembly, and the wind guide
  • the two air guiding members of the device are connected, and according to the intermediate air blowing command detected by the detecting device, the air blowing command on both sides, the three-side air blowing command, and the stop air blowing command, the first door of the two wind wheels and the door body assembly
  • the body and the second door body are controlled such that the intermediate air outlet, or the intermediate air outlet and the two side air outlets are opened by moving the first door body and the second door body to different positions, and each air guiding member of the air guiding assembly Rotating with one side of the air duct assembly, abutting the middle portion of the air duct assembly or between one side and the middle portion of the air duct assembly to connect the two air outlet areas with different air outlets to operate the wind wheel assembly
  • the generated wind is blown out to the
  • the air outlet in the middle of the air conditioner, the air outlet on both sides and the three-sided air outlet structure are complicated and costly, which effectively reduces the cost of the air conditioner and improves the market competitiveness of the product, and passes through the first door and the second body.
  • the door body closes the middle air outlet and the two side air outlets, so that the three air outlets can be closed by closing the two door bodies, thereby avoiding the three air outlets respectively closing the three air outlets to make the appearance of the air conditioner housing appear.
  • a plurality of slits affect the appearance of the appearance of the air conditioner, effectively ensuring the consistency of the appearance of the air conditioner housing, and improving the satisfaction of the user.
  • the air outlet mode command of the air conditioner may be other air outlets that meet the requirements. instruction.
  • it may be a one-side air blowing command, and further, it may be a right single air blowing command or a left single air blowing command.
  • the first door body and the second door body of the door body assembly of the air conditioner When the first door body and the second door body of the door body assembly of the air conditioner are mounted on the casing through a slide rail provided on the outer peripheral wall of the casing, the first door body and the second door body may be along the casing
  • the outer peripheral wall moves to any position to close the middle air outlet and each side air outlet, so that the detecting device controls the first door body and the second door body when detecting the one-side air blowing command, specifically, the right single air blowing command
  • the side air outlet of the left side of the middle air outlet and the middle air outlet is closed, and the air outlet of the right side of the middle air outlet communicates with the inside and the outside of the casing, and the air guiding member of the right side of the air guiding assembly is controlled to rotate with the wind.
  • the middle part of the track assembly abuts, and the air outlet area generated by the right side wind wheel is blocked from the middle air outlet, so that the wind generated by the right side wind wheel blows out to the external environment through the right side air outlet to realize the air conditioner.
  • the wind on the right side is single, and the wind generated by the wind turbine on the right side is blown out to the external environment through the right side air outlet, ensuring sufficient air volume and good air output effect, and improving user satisfaction. Enter one Users seeking to meet the multi-dimensional air conditioner out of the way of the wind, a wide range.
  • an air conditioner comprising: a housing, wherein the housing is provided with an intermediate air outlet at the middle and two side air outlets at two sides of the intermediate air outlet; the wind wheel The assembly, the wind wheel assembly includes two wind wheels that rotate in opposite directions during operation to achieve two air outlet zones; and the air guiding device of any of the above embodiments of the second aspect.
  • An air conditioner according to an embodiment of the sixth aspect of the present invention includes a housing, a wind wheel assembly, and the air guiding device according to any one of the embodiments of the second aspect, wherein the housing is disposed in the middle of the middle The tuyere and the two side air outlets on both sides of the middle air outlet, the wind wheel assembly includes two wind wheels that are reversely rotated during operation to realize two air outlet zones.
  • the air conditioner provided by the embodiment of the sixth aspect of the present invention includes the air guiding device provided by the embodiment of the second aspect, and thus has all the beneficial technical effects of the air guiding device provided by the embodiment of the second aspect, and details are not described herein again.
  • the method further includes: detecting means disposed on the casing for detecting the wind mode command; the controller being disposed on the casing, and the wind wheel assembly and the air guiding device The damper components are connected, and the two wind wheels of the wind wheel assembly, one middle cylindrical revolving door of the damper assembly and two side cylindrical revolving doors are controlled according to the air outlet mode command; wherein the air outlet mode command includes an intermediate air blowing command , two sides of the air command, three sides of the air command, stop the air command.
  • the air conditioner further includes a detecting device and a controller.
  • the detecting device is disposed on the casing to detect the wind mode command
  • the controller is disposed on the casing and connected to the wind wheel assembly and the damper assembly, and Controlling two wind wheels, one intermediate cylindrical revolving door of the damper assembly and two side cylindrical revolving doors according to the intermediate air blowing command detected by the detecting device, the two side air blowing commands, the three side air blowing commands, and the stop air blowing command
  • the cylindrical venting door and the two side cylindrical revolving doors through the damper assembly respectively close and open the intermediate air outlet and/or the two side air outlets, and the wind generated by the two wind turbines can be passed through the open intermediate air outlet and/or Or each side air outlet is blown out to the external environment, thereby implementing various air outlet modes of the air conditioner to meet the user's demand for the multi-dimensional air outlet of the air conditioner, and to improve the satisfaction of the user.
  • controlling the rotation of the intermediate cylindrical revolving door causes the ventilation passage to communicate with the inner and outer portions of the casing to open the intermediate air outlet, and controls the rotation of each side cylindrical revolving door so that the ventilation passage is located
  • the inside of the casing closes each side air outlet, and controls the two wind wheels to start working, so that the wind generated by the two wind wheel works is smoothly, quickly and concentratedly blown out to the external environment along the air passage assembly through the ventilation passage of the intermediate cylindrical revolving door.
  • the middle air outlet of the air conditioner is realized; and the wind generated by the working of the wind wheel is blown out to the outside of the casing through the ventilation passage of the intermediate cylindrical revolving door, thereby avoiding the wind out of the louver assembly to limit the air outlet range, and effectively It ensures that the air blown out from the middle air outlet is uniform, the air volume is sufficient and the range is wide, which is beneficial to the heat exchange of the air in the external environment with sufficient, uniform and wide range of winds to improve the efficiency of heating or cooling of the air conditioner.
  • the air conditioner can quickly achieve the heating or cooling comfort, improve the user experience, and improve user satisfaction.
  • the ventilation passage of the middle cylindrical revolving door is a wide-mouth structure, which is favorable for the wind generated by the wind wheel working through the ventilation passage of the wide-mouth structure to be quickly, concentratedly and evenly blown out to the external environment by the intermediate air outlet, and can satisfy the user to the middle
  • the air outlet is concentrated and the demand for large air volume is large, and the concentrated and sufficient air output is beneficial to quickly realize the heating or cooling of the air conditioner, thereby improving the user experience and improving the satisfaction of the user; the middle cylindrical revolving door is opened.
  • the wide mouth of the wide mouth structure is located inside the casing, which is favorable for the wind generated by the wind wheel to be smoothly and quickly blown out to the outside of the casing through the wide mouth of the wide mouth structure.
  • the air volume that is blown out to the outside of the casing is sufficient to ensure the air volume and the good air blowing effect, and the air conditioner can quickly achieve the comfort of cooling or heating, improve the user experience and improve the user satisfaction.
  • the rotation of the intermediate cylinder revolving door is controlled so that the ventilation passage is located inside the housing to close the middle air outlet, and the rotation of each side cylindrical rotating door is controlled to open the ventilation passage to the inside and outside of the housing.
  • the side air outlets control the two wind wheels to start working, so that the wind generated by the two wind wheel works smoothly and quickly blows out to the external environment along the air passage components of the air duct components through the side cylindrical revolving door, thereby realizing the two sides of the air conditioner Wind; the wind generated by the working of the wind wheel is directly blown out to the outside of the casing through the ventilation passage of the side cylindrical revolving door, which avoids the wind distribution through the louver assembly to limit the wind out of the wind, and effectively ensures the air outlet from the middle.
  • the air blown out is uniform, the air volume is sufficient and the range is wide, which is beneficial to the heat exchange of the air in the external environment with sufficient, uniform and wide range of winds to improve the efficiency of heating or cooling of the air conditioner, so that the air conditioner can quickly achieve the system.
  • the comfort of heat or cooling enhances the user experience and increases user satisfaction.
  • the ventilation passages of the two side cylindrical revolving doors are arc-shaped structures, and when the two side cylindrical revolving doors open the two side air outlets, the two arc-shaped structures are arranged facing away from each other, thereby avoiding the relative arrangement of the two curved structures.
  • the air outlet direction of the two side air outlets is biased toward the middle air outlet to reduce the air outlet range, and the two arc-shaped structures are oppositely arranged so that the wind blown by the side air outlets intersects with the wind blown by the middle air outlet to affect the air volume and The effect of the wind is effective to increase the range of the wind and ensure a good wind effect, and improve the satisfaction of the user.
  • the two side cylindrical revolving doors are arranged with the two arc-shaped structures facing away when the two side air outlets are opened, so that the wind generated by the working of the wind wheel can be blown out to the side of the side air outlet, further increasing the side.
  • the air outlet area of the air outlet further exchanges heat with the outside air in a large range from the air blown inside the casing, so that the air conditioner can reach the heating or cooling comfort evenly and in a wide range. Uniform heating or even cooling, to meet the user's demand for air conditioner comfort, improve user experience and improve user satisfaction.
  • the intermediate cylindrical revolving door and each side cylindrical revolving door are rotated to connect the ventilation passage to the inner and outer portions of the casing to open the intermediate air outlet and each side air outlet, and control two wind wheels Starting work, the wind generated by the two wind turbines is smoothly and quickly blown out to the external environment along the air passage assembly through the ventilation passage of the intermediate cylindrical revolving door and the ventilation passages of the two side cylindrical revolving doors, thereby realizing the air conditioner.
  • the wind is generated on three sides; the wind generated by the working of the wind wheel is blown out to the outside of the casing through the ventilation passages of the intermediate cylindrical revolving door and the side cylindrical revolving door, avoiding the
  • the louver assembly guides the wind to limit the wind out of the wind, and effectively ensures that the air blown from the middle air outlet and the two side air outlets is uniform, the air volume is sufficient and the range is wide, which is beneficial to the sufficient, uniform and wide range.
  • the ground wind quickly exchanges heat with the air of the external environment to improve the efficiency of heating or cooling of the air conditioner, so that the air conditioner can quickly achieve the heating or cooling comfort, improve the user experience and improve the user satisfaction.
  • controlling the two wind wheels to stop working does not generate wind, controlling the intermediate cylindrical rotating door and rotating the side cylindrical rotating door so that the ventilation passage is located inside the casing to close the middle air outlet and each The side air outlet avoids the middle air outlet and the two side air outlets exposed to the outer peripheral wall of the air conditioner in the air outlet mode, thereby affecting the appearance of the air conditioner, effectively ensuring the appearance of the air conditioner and improving the user's use. Satisfaction.
  • the air outlet mode command of the air conditioner may be other air blowing commands that meet the requirements.
  • it may be a one-side air blowing command, and further, it may be a right side air blowing command or a left side air blowing command.
  • the controller controls the middle cylinder rotating door and one side cylindrical rotating door (the left side cylindrical rotating door) to rotate to close the middle air outlet and one side out
  • the tuyere side air outlet on the left side
  • the other side cylindrical revolving door rotates to open the other of the two side air outlets (the side air outlet on the right side)
  • controls the air outlet The side air outlet on the right side
  • the side air outlet on the right side is adjacent to the wind wheel (the right side wind wheel), so that the wind generated by the wind wheel work is blown out to the external environment through the open side air outlet (the right side air outlet), realizing the single The side (right side) air outlet satisfies the user's pursuit of the multi-dimensional air outlet mode of the air conditioner and improves the satisfaction of the user.
  • a computer device 200 including a memory 202, a processor 204, and a computer program stored on the memory 202 and executable on the processor 204.
  • the processor 204 is configured to perform the steps of any one of the air conduction control methods of the third aspect embodiment or the fourth aspect embodiment.
  • the computer device 200 provided by the embodiment of the seventh aspect of the present invention includes a memory 202, a processor 204, and a computer program stored on the memory 202 and operable on the processor 204.
  • the processor 204 is configured to perform the implementation of the third aspect. The steps of any one of the air guiding control methods of the embodiment or the fourth aspect.
  • the processor 204 of the computer device 200 provided by the embodiment of the seventh aspect of the present invention is capable of performing the air guiding control of the third aspect embodiment or the fourth aspect embodiment The method of any one of the methods, and therefore, has all the beneficial technical effects of the air guiding control method described in the third embodiment or the fourth aspect, and details are not described herein again.
  • a computer readable storage medium having stored thereon a computer program, wherein the third aspect embodiment or the fourth aspect embodiment is implemented when the computer program is executed by the processor The steps of any of the methods of controlling the wind.
  • the computer readable storage medium provided by the embodiment of the eighth aspect of the present invention has a computer program stored thereon, and when the computer program is executed by the processor, the air guiding control method of the third aspect embodiment or the fourth aspect embodiment is implemented. The steps of any method.
  • the computer program of the computer readable storage medium provided by the embodiment of the eighth aspect of the present invention is executed by the processor to perform the steps of any of the methods of the air guiding control method of the third aspect embodiment or the fourth aspect embodiment, All the beneficial technical effects of the air guiding control method described in the third embodiment or the fourth embodiment are not described herein.
  • the term “plurality” means two or more, unless specifically defined otherwise.
  • the terms “installation”, “connected”, “connected”, “fixed” and the like should be understood broadly.
  • “connecting” may be a fixed connection, a detachable connection, or an integral connection; “connected” may They are directly connected or indirectly connected through an intermediary.
  • connection may be a fixed connection, a detachable connection, or an integral connection; “connected” may They are directly connected or indirectly connected through an intermediary.
  • the specific meanings of the above terms in the present invention can be understood on a case-by-case basis.
  • the description of the terms “one embodiment”, “some embodiments”, “specific embodiments” and the like means that the specific features, structures, materials, or characteristics described in connection with the embodiments or examples are included in the present invention. At least one embodiment or example.
  • the schematic representation of the above terms does not necessarily refer to the same embodiment or example.
  • the particular features, structures, materials, or characteristics described may be combined in a suitable manner in any one or more embodiments or examples.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Air-Flow Control Members (AREA)

Abstract

L'invention concerne un appareil de type guide d'air (10), un procédé de commande de guide d'air, un climatiseur (100), un dispositif informatique (200) et un support de stockage lisible par ordinateur. L'appareil de type guide d'air (10) comprend : un ensemble conduit d'air (12), qui est disposé à l'intérieur d'une coque (20) au niveau de deux zones de sortie d'air et qui est relié à un ensemble roue éolienne (30); et un ensemble corps de porte (14) qui est monté sur la coque (20). L'ensemble corps de porte (14) comprend un premier corps de porte (1402) et un second corps de porte (1404) qui sont adaptés l'un à l'autre, ou comprend trois portes rotatives cylindriques (142) au niveau d'une sortie d'air intermédiaire (202) et de deux sorties d'air latérales (204).
PCT/CN2017/086401 2017-03-30 2017-05-27 Appareil de type guide d'air, procédé de commande de guide d'air, climatiseur et dispositif informatique Ceased WO2018176626A1 (fr)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
CN201710200676.9A CN106839127A (zh) 2017-03-30 2017-03-30 导风装置、导风控制方法和空调器
CN201710200676.9 2017-03-30
CN201710200678.8 2017-03-30
CN201710200678.8A CN106907774A (zh) 2017-03-30 2017-03-30 导风装置、导风控制方法和空调器

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WO2018176626A1 true WO2018176626A1 (fr) 2018-10-04

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3974755A (en) * 1972-05-08 1976-08-17 Ltg Lufttechnische Gmbh Air outlet
CN104764100A (zh) * 2014-12-31 2015-07-08 Lg电子株式会社 空气调节器
CN106123120A (zh) * 2016-07-01 2016-11-16 芜湖美智空调设备有限公司 一种空调器室内机控制方法

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3974755A (en) * 1972-05-08 1976-08-17 Ltg Lufttechnische Gmbh Air outlet
CN104764100A (zh) * 2014-12-31 2015-07-08 Lg电子株式会社 空气调节器
CN106123120A (zh) * 2016-07-01 2016-11-16 芜湖美智空调设备有限公司 一种空调器室内机控制方法

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