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WO2011129637A2 - Système de panneau de sol chauffant utilisant de l'eau chaude - Google Patents

Système de panneau de sol chauffant utilisant de l'eau chaude Download PDF

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Publication number
WO2011129637A2
WO2011129637A2 PCT/KR2011/002676 KR2011002676W WO2011129637A2 WO 2011129637 A2 WO2011129637 A2 WO 2011129637A2 KR 2011002676 W KR2011002676 W KR 2011002676W WO 2011129637 A2 WO2011129637 A2 WO 2011129637A2
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WO
WIPO (PCT)
Prior art keywords
heat
hot water
heat storage
heating
space
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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/KR2011/002676
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English (en)
Korean (ko)
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WO2011129637A3 (fr
Inventor
김익수
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Individual
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Individual
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Publication of WO2011129637A2 publication Critical patent/WO2011129637A2/fr
Publication of WO2011129637A3 publication Critical patent/WO2011129637A3/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D3/00Hot-water central heating systems
    • F24D3/12Tube and panel arrangements for ceiling, wall, or underfloor heating
    • F24D3/14Tube and panel arrangements for ceiling, wall, or underfloor heating incorporated in a ceiling, wall or floor
    • F24D3/141Tube mountings specially adapted therefor
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D3/00Hot-water central heating systems
    • F24D3/12Tube and panel arrangements for ceiling, wall, or underfloor heating
    • F24D3/14Tube and panel arrangements for ceiling, wall, or underfloor heating incorporated in a ceiling, wall or floor
    • F24D3/141Tube mountings specially adapted therefor
    • F24D3/142Tube mountings specially adapted therefor integrated in prefab construction elements
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F15/00Flooring
    • E04F15/02Flooring or floor layers composed of a number of similar elements
    • E04F15/04Flooring or floor layers composed of a number of similar elements only of wood or with a top layer of wood, e.g. with wooden or metal connecting members
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F15/00Flooring
    • E04F15/02Flooring or floor layers composed of a number of similar elements
    • E04F15/08Flooring or floor layers composed of a number of similar elements only of stone or stone-like material, e.g. ceramics, concrete; of glass or with a top layer of stone or stone-like material, e.g. ceramics, concrete or glass
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B30/00Energy efficient heating, ventilation or air conditioning [HVAC]

Definitions

  • the present invention relates to an ondol panel installed on the floor of a residential space that requires heating, such as a house or apartment, to use hot water as a heat source for heating, and more specifically, to dry finish without using a wet finishing material such as mortar. It is related to a hot water ondol panel system, which is easy and fast to install due to the use of materials, saves heating energy by expansion of heat storage space, and does not cause a difference in heating temperature according to location.
  • Ondol is a traditional heating method in Korean houses, which warms the floor first from the heat source and heats the living space by the indirect radiant heat of the heated floor, so the warmth lasts for a long time even after the heat source is removed.
  • the Western fireplace heating method can heat the surroundings quickly by directly using the heat generated from the heat source, but immediately loses warmth when the heat source is removed.
  • the ondol has been able to utilize hot water as a heat source by the development of a hot water boiler that uses energy selected from various types of energy and operates with high thermal efficiency, and an ondol using hot water as a heat source is called a hot water ondol.
  • the ondol device warms the wide bottom of the living space, it is necessary to install a heat insulator on the bottom and block the leakage of heat so that the heating heat is not unnecessarily wasted through the ground or the bottom without using heat.
  • the heating heat generated by the heat source is supplied as much as possible to the upper surface of the living space without loss, and at the same time, some heating heat is stored or stored so that the heating is maintained at a constant temperature for as long as possible even when the supply of the heat source is stopped. have.
  • Utility Model Registration No. 250987 (registered on Oct. 8, 2001) of the present inventors used a heat pipe for hot water ondol to prevent unnecessary loss of heat by using an insulating material on the underside of the hot water ondol plate.
  • the finishing mortar was cast to a thickness of 120 to 130 millimeters (mm), which averages about 230 kilograms (kg / m) per unit cubic meter. * 2)
  • finishing mortar is wet using water, it is difficult to install in the cold winter due to seasons, and requires skilled technicians, and it takes a lot of time for pouring and drying, resulting in overall construction period and cost. There are problems such as getting bigger.
  • the present invention is to provide a hot water ondol panel system to increase the mechanical strength of the hot water ondol panel to absorb external shocks and vibrations and to accumulate using the air layer to reduce the noise between the floors and save energy for heating.
  • an object of the present invention is to provide a hot water ondol panel system to reduce the construction time and cost of a residential space by using a dry material such as a carpet after finishing the construction of the hot water ondol panel fast and simple.
  • the present invention is to provide a hot water ondol panel system for heating the living space with a hot water ondol panel, evenly heating at a uniform temperature without a difference in the heating temperature according to the position of the floor.
  • the present invention devised to achieve the above object is installed on the floor of the residential space to block the movement of heating heat, the heating pipe to supply the heating heat to the residential space, the heating pipe is wired and fixed to the surface contact state
  • the upper part of the wiring part and the heat storage part receiving heat from the heating pipe and radiating it to a flat top surface and storing a part in an enclosed interior space, while covering the open upper side of the wiring part while keeping a gap with the heating pipe.
  • the present invention provides a hot water ondol panel system comprising a shielding film, wherein the wiring portion and the shielding film are configured as a space without using mortar.
  • the top surface of the heat storage portion and the top surface of the shielding film are flat and made of a configuration in which a dry finish material is attached by any one selected from carpet, stone, wood, and floorboard.
  • a shielding film consists of two layers, and consists of a structure which raises mechanical strength.
  • the heat storage part includes a partition wall separating the wiring part and the space in a sealed state, and the partition wall is formed of any one selected from an inclined shape and a vertical shape, and one or more reinforcement grooves for reinforcing the mechanical strength to prevent the partition wall from bending. It is included.
  • the partition wall is formed by forming a hole through which the wiring portion and the air flows to make the temperature of the heat of heating accumulated.
  • the partition wall is formed of a plurality of pillars is made of a configuration that minimizes the temperature difference by position of the heat storage heating heat.
  • the heat storage unit includes a locking step at which the shielding film covering the wiring part in a sealed state is fixed at the upper end of the partition wall.
  • the wiring part includes a guide part for fixing one outer peripheral surface of the heating pipe in a surface contact state, and is configured to seal the upper side opened by the shielding film and form a heat storage space.
  • the present invention of the configuration as described above has a convenient effect on the construction by increasing the heat storage space by the configuration of the hot water ondol panel and the shielding membrane to simplify the construction, shorten the air, easy maintenance and reconstruction.
  • the present invention of the configuration as described above uses dry finishing materials such as carpet, stone, wood, floorboards without using a wet mortar in the completion of the construction of hot water ondol panel, reducing the construction time and cost and overall construction There is an industrial effect of reducing the load.
  • the present invention of the configuration as described above is because the air in each heat storage space that accumulates heating heat is smoothly flowed through each other to maintain a uniform temperature as a whole, the temperature difference of the floor surface of the living space depending on the location There is a convenient effect in use that generates heat at a uniform temperature without generating.
  • the present invention of the configuration as described above has an industrial use effect of reducing the consumption of heating energy for residential space by expanding the heat storage space to accumulate heating heat.
  • FIG. 1 is a cross-sectional view showing a state in which a hot water ondol panel system is constructed in a residential space according to an embodiment of the present invention
  • FIG. 2 is a plan view illustrating a state in which a plurality of hot water ondol panels of a unit are continuously constructed on the floor of a living space according to an embodiment of the present invention
  • FIG. 3 is an assembled state diagram of the hot water ondol panel system according to an embodiment of the present invention.
  • FIG. 4 is a cross-sectional view of a state in which a hot water ondol panel system is constructed in a residential space according to another embodiment of the present invention
  • FIG. 5 is a cross-sectional view of a state in which a hot water ondol panel is constructed in a residential space according to another embodiment of the present invention.
  • FIG. 6 is a cross-sectional view showing a state in which a hot water ondol panel system is constructed in a residential space according to another embodiment of the present invention.
  • Horn shape is the same shape as the base is formed to extend upwards and the size is getting smaller and meet at one vertex.
  • the horns may exist in a polygonal shape including a circle, and if the base is a circle, it is a cone, a rectangle is a square pyramid, and a rectangle is called a rectangular pyramid.
  • the truncated horn is cut in the middle and has no vertex portion.
  • the rectangle has a shape similar to a rectangle as a whole and may be partially circular or polygonal.
  • Finishing in architecture also known as plastering, can be roughly divided into dry finish and wet finish.
  • wet finish materials are cement, ocher, etc. as the main raw materials, and mixed with water and poured to finish them, and they feel a sense of unity and solidity after finishing, but work is relatively difficult, requires skilled workers, and the time to remove moisture is relatively long. It takes a lot.
  • Dry finish material is a material that finishes using construction materials such as wood, carpet, paper, vinyl flooring, and the like, the construction time is very short and can be used immediately after the completion of the finish.
  • the roll forming method is a method of forming a desired shape by continuously processing an iron plate into a plurality of roll molds by cold roll forming method, and is called cold roll forming, band-profilwalzung, or the like.
  • Forming by roll forming is a plastic processing or bending processing method for forming a desired cross-sectional shape by forming a strip-shaped metal plate sequentially using pressure or heat by a plurality of forming rolls in a row. It is suitable for mass production of long products of complex and identical shape that are difficult to be molded by processing or the like.
  • FIG. 1 is a cross-sectional view showing a state in which a hot water ondol panel system is constructed in a residential space according to an embodiment of the present invention.
  • the heat insulating material 110 is installed and installed to block the temperature is transferred to the upper portion of the floor layer 100 of the living space to be transmitted.
  • the floor layer 100 of the living space is any one selected from among concrete slabs, loess, wood, etc.
  • the heat insulating material 110 is to delay or block the transfer of heat foam polystyrene, urethane foam, rock wool, glass wool, etc. It is made of any one selected from including.
  • the hot water ondol panel 200 is constructed on the upper portion of the heat insulating material 110, and the hot water ondol panel 200 includes a wiring part 130 and a heat storage part 140.
  • the upper portion of the wiring portion 130 is opened, and the guide portion 132 is formed at the bottom.
  • the heating pipe 120 is piped to the guide part 132 to fix the surface in a state of contact.
  • the heating pipe 120 supplies heating heat while any one selected from various heat sources including hot water and hot steam flows.
  • the heating pipe 120 is made of any one selected from a hose made of plastics and a pipe made of metals.
  • the shielding film 150 Since the open upper side of the wiring unit 130 is covered by the shielding film 150, it becomes a sealed state.
  • the partition wall 144 forming the side wall of the heat storage unit 140 is provided with a locking jaw 142 at the top to insert and fix the shielding film 150.
  • the shielding film 150 and the latching jaw 142 maintain a sealed state, and the wiring unit 130 forms a sealed space to use as a heat storage space.
  • a space is formed between the shielding film 150 and the heating pipe 120 so that the heating heat emitted by the heating pipe 120 is transferred to the heat storage space.
  • the heating heat for the living space supplied through the heating pipe 120 is transferred to the heat storage unit 140 constituting the hot water ondol panel 200 through the guide portion 132 in some surface contact.
  • the heat storage unit 140 discharges the transferred heating heat to the top surface 215 and heats the air in the space enclosed by the heat storage unit 140.
  • the heating pipe 120 discharges the heating heat to the portion that is not in surface contact with the guide portion 132 to heat the sealed air in the heat storage space formed between the wiring portion 130 and the shielding film 150 to accumulate.
  • the heating pipe 120 and the guide part 132 are relatively large in area which is not in surface contact so that a large amount of heating heat is emitted and heat is accumulated in the heat storage space.
  • the partition wall 144 forming the side surface of the heat storage unit 140 is provided with a plurality of reinforcement grooves so as not to bend or crush even when an external force is applied by increasing mechanical strength.
  • the reinforcement groove 220 is shown in detail in Figures 2 and 3 described below, and is made of any one or more pillars selected from polygonal pillars including a circular shape.
  • the shielding film 150 may be formed in one layer, but in order to increase mechanical strength and block external shock, it is very preferable to configure the two layers.
  • the top surface 215 of the heat storage unit 140 and the top surface 155 of the shielding film 150 are in a flat state and form a bottom surface of the living space.
  • each of the top surfaces of which the flat state is matched by the heat storage unit 140 and the shielding film 150 is dry by any one or more selected from the group including floorboard made of carpet, stone or wood, paper or vinyl, or the like. Finishing material 30 is attached to complete the floor finish of the living space.
  • the present invention of such a configuration has the advantage that the construction of the floor surface of the living space is very simple, fast and easy.
  • the heat storage space 148 by the heat storage unit 140 and the heat storage space by the wiring unit 130 is a space for storing the heating heat, respectively, there may be a difference in the temperature of the heat storage.
  • a difference in heating temperature may occur depending on a location on the floor of the completed living space.
  • a hole 146 in the partition wall 144 which is a side wall of the heat storage unit 140 so that air for accumulating heating heat is distributed, so that a temperature difference does not occur depending on a position on the floor surface of the living space.
  • partition wall 144 of the heat storage unit 140 is configured by replacing a plurality of pillars, temperature difference may be minimized.
  • the heat storage space 148 by the heat storage unit 140 and the heat storage space by the wiring unit 130 may be filled with air or a separate heat storage material having excellent heat storage performance.
  • Such heat storage spaces have an advantage of saving energy for heating because the heat storage heat is released to the living space for a predetermined time when the temperature of the heating heat supplied through the heating pipe 120 is lowered.
  • the temperature difference does not occur according to the location of the living space, maintenance and reconstruction, etc. are very easy and simple advantages.
  • FIG. 2 is a plan view illustrating a state in which a plurality of hot water ondol panels of a unit are continuously installed on the floor of a living space according to an embodiment of the present invention.
  • each of the hot water ondol panel 200 forming a unit is arranged continuously up, down, left and right.
  • the locking jaw 142 is formed on the top of the partition wall of the heat storage unit 140 to be fixed by being fixed, and a plurality of reinforcing grooves 220 are formed on the partition wall to increase the mechanical strength.
  • the heating pipe for supplying heating heat is continuously connected to the guide part 132 in a zigzag state along the guide part 132, the heating heat is uniformly radiated from the bottom of the living space.
  • the four hot water ondol panels 200 are shown in a state in which they are regularly arranged on top, bottom, left and right, and the number of the installed and installed facilities may vary according to the shape of the floor of the living space. It may be deployed and installed.
  • each hot water ondol panel 200 is not shown in the figure, but it is preferable to be fastened and fixed by a structure such as a general fixing screw, a fastening groove.
  • Figure 3 is an assembled state of the hot water ondol panel system according to an embodiment of the present invention.
  • the hot water ondol panel 200 is molded using a roll-forming mold, and the guide part 132 and the heat storage part 140 are sequentially repeated. .
  • the heat storage unit 140 is shown as a rectangular truncated cone having a circular or rectangular shape, but the partition wall 144 has a predetermined slope, but the partition wall 144 may have a vertical shape.
  • the partition wall 144 is provided with a plurality of reinforcement grooves 220 to prevent bending or crushing, and to block external shock and vibration since the mechanical strength is increased.
  • the reinforcement groove 220 reduces floor noise in dense residential spaces such as apartments and multi-family houses.
  • the interior of the heat storage unit 140 is sealed to store the air layer, to store or store the ambient temperature by the stored air layer, and when the ambient temperature is lowered, the heat of the heated heat is discharged to the living space through the top surface 215.
  • the heating heat of the heat storage space formed by the shielding film 150 is discharged to the living space through the top surface 155.
  • the ambient temperature includes a temperature of a heat source for supplying heating heat flowing along the pipe heating pipe 120.
  • the reinforcement groove 220 is formed in a columnar shape by any one selected from polygons including a circle.
  • the reinforcement grooves 220 are provided at equal intervals to increase the mechanical strength of the partition wall 144 to absorb or block the predetermined shock and vibration applied to the upper end surface 215 of the heat storage unit 140 from the outside.
  • the locking jaw 142 is formed at the same height near the top surface 215 of the heat storage unit 140, and the guide unit 132 in which the heating pipe 120 is piped is formed next to the heat storage unit 140.
  • the heat storage unit 140 and the guide unit 132 are molded in a roll forming method.
  • the pipe pipe 120 Since the curved surface formed on the guide part 132 is the same as the outer diameter of the heating pipe 120, the pipe pipe 120 maintains surface contact with the guide part 132, and part of the heating pipe 120 is in surface contact with hot water or hot water. Heating heat supplied from a heat source such as steam is very quickly transmitted to the whole of the warm water ondol panel 200.
  • the hot water ondol panel 200 uses a metal material having a relatively high heat transfer coefficient.
  • a shielding film 150 is secured between the locking projections 142 formed between adjacent heat storage units 140, and the heating pipe 120, which is in surface contact with the guide unit 132, is protected from external physical and chemical shocks. Form a heat storage space.
  • the top surface 215 of the heat storage unit 140 and the top surface of the shielding film 150 are formed through the hot water ondol panel 200 made of a metal material having a high heat transfer coefficient. 155) is quickly delivered to, and heat through the dry finish material 300 so as to quickly heat the living space.
  • a material having excellent heat storage performance may be used instead of the air layer.
  • the configuration according to the present invention is heat-generated by the air layer of the heat storage space and the heat source is removed or discharged heat stored in a temperature lowered state, so that the heating efficiency is maintained for a predetermined time or the heating temperature is kept constant to utilize the efficiency of heating energy. Height has an advantage.
  • the reinforcement groove 220 has the advantage of increasing the mechanical strength of the heat storage unit 140 and absorb or block the shock and vibration applied from the outside.
  • the dry finish material 300 such as a carpet (carpet) on the top surface flattened while being fixed and covered over immediately It has the advantage of being used as a residential space and heating at the same time.
  • the dry finish material 300 is not shown in the drawings but can be confirmed with reference to FIG.
  • FIG. 4 is a cross-sectional view showing a state in which a hot water ondol panel system is constructed in a residential space according to another embodiment of the present invention.
  • the bottom layer 100, a heat insulating material 110, a heating pipe 230, a hot water heating panel 400, a shielding film 410, a dry finish material 300 is a configuration including. .
  • the hot water ondol panel 400 uses a roll-forming mold to form a first fence 401, a second fence 402, a guide part 403, a heat storage bottom surface 404, and a partition wall part 405. ).
  • the heating pipe 230 is inserted into the guide portion 403 formed between the first fence 401 and the second fence 402 to be wired in a state of being partially in surface contact, thereby heating heating heat of the heat source flowing along the heating pipe 230.
  • the hot water ondol panel 400 is quickly delivered to the whole.
  • the heat storage bottom surface 404 is formed between the second fence 402 and the partition wall portion 405 to form the heat storage portion 420.
  • the partition wall part 405 is inserted into and fixed to a gap formed below the first fence 401 of the adjacent hot water ondol panel 400, and thus functions to continuously connect a plurality of hot water ondol panels.
  • both ends of the shielding film 410 are respectively inserted into the guide portion 403 because the first fence 401 of the hot water ondol panel 400 and the first fence 401 of the adjacent hot water ondol panel 400 span each other.
  • the heat storage unit 420 is kept sealed while protecting the heating pipe 230.
  • the width of the shielding film 410 is preferably configured to be the same as the width of the hot water ondol panel 400.
  • the dry finish material 300 made of a carpet or the like is constructed on the top surface of the shielding film 410 continuously constructed, it can be used immediately as a living space while reducing the completion time.
  • FIG. 5 is a cross-sectional view showing a state in which a hot water ondol panel is constructed in a residential space according to another embodiment of the present invention.
  • the bottom layer 100, the heat insulating material 110, the heating pipe 230, hot water ondol panel 500, a shielding film 510, a dry finish material 300 is a configuration including. .
  • the hot water ondol panel 500 uses a roll forming mold to connect the connection part 501, the first groove 502, the second groove 503, the guide part 504, the third groove 505, and the fourth groove ( 506, a first heat storage unit 520, and a second heat storage unit 525.
  • the shielding film 510 is inserted into the guide part 504 while the heating pipe 230 is piped to protect the heating pipe 230.
  • the width of the shielding film 510 is equal to the width of the guide part 504.
  • Each of the hot water ondol panels 500 arranged in a row is connected to the fourth groove 506 adjacent to the connecting portion 501, and the connecting portion 501 forms a step of a predetermined height to smooth the fourth groove 506. At the same time it is inserted into the housing to maintain a close contact with the flat floor of the living space.
  • the top surface of the first heat storage unit 520 and the top surface of the second heat storage unit 525 and the top surface of the shielding film 510 form a flat coplanar surface, and thus use a dry finish material 300 to immediately use it as a living space. Can be.
  • the heating pipe 230 quickly transfers the heat of the hot water to the hot water ondol panel 500 through the surface contact, the transferred heat is the upper surface of the first heat storage portion 520 and the second heat storage portion 525 Some heat is released through the top surface and the top surface of the shielding film 510 and is stored through the first heat storage unit 520 and the second heat storage unit 525.
  • the temperature of heat storage may be uniform. Therefore, it is possible to prevent the temperature difference according to the location of the floor of the living space.
  • FIG. 6 is a cross-sectional view showing a state in which a hot water ondol panel system is constructed in a residential space according to another embodiment of the present invention.
  • the bottom layer 100, the heat insulating material 110, the heating pipe 230, the hot water heating panel 600, the shielding film 610, a dry finish material 300 is a configuration including. .
  • the hot water ondol panel 600 forms a first fence 601, a second fence 602, a guide part 603, a first heat storage bottom surface 604, and a partition wall part 605 by a roll forming mold.
  • the heating heat of the heat source flowing along the heating pipe 230 receives hot water ondol panel ( Fast forward to the whole of 600).
  • the first heat storage bottom surface 604 is formed between the second fence 602 and the partition wall portion 605 to form a space of the first heat storage portion 620.
  • the shielding film 610 is interposed between the first fence 601 of the hot water ondol panel 600 and the first fence 601 of the adjacent hot water ondol panel 600, the heating pipe inserted and piped into the guide part 603 ( While protecting the 230, the space between the first heat storage unit 620 and the second heat storage unit 625 is kept in a sealed state.
  • the width of the shielding film 610 is larger than the width of the hot water ondol panel 600, it is relatively preferable to increase the ratio to twice.
  • the space of the second heat accumulator 625 is simply added by the shielding membrane 610 in a state in which there is no separate means between the partition wall part 605 and the first fence 601 of the adjacent hot water ondol panel 600. Is formed.
  • the space of the second heat storage unit 625 may be further formed by making the width of the shielding film 610 larger than the width of the hot water ondol panel 600, and more heating heat is added by the added heat storage space.
  • the heat storage has the advantage of saving the heating energy of the living space.
  • the air warmed by the heating heat emitted by the heating pipe 230 and the first heat storage part 620 since a plurality of holes are formed in the first fence 601, the second fence 602, and the partition wall part 605, the air warmed by the heating heat emitted by the heating pipe 230 and the first heat storage part 620.
  • the regenerated air and the regenerated air of the second heat storage unit 625 may be smoothly flowed.
  • the heat storage heat is accumulated more by the expansion of the heat storage space, and the air in each heat storage space is smoothly circulated by the holes, so there is no difference in the heat storage temperature of each heat storage space and there is a uniform advantage.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Floor Finish (AREA)
  • Central Heating Systems (AREA)

Abstract

La présente invention porte sur un système de panneau de sol chauffant utilisant de l'eau chaude, dans lequel système des matériaux de finition secs sont utilisés à la place de matériaux de finition humides tels que du mortier, afin de permettre ainsi à la construction d'être effectuée d'une façon pratique et rapide et en toute saison, et dans lequel un espace d'accumulation de chaleur est agrandi afin d'économiser de l'énergie de chauffage et d'empêcher la température du sol chauffant de différer en chaque point du sol de l'espace résidentiel qui est chauffé. Plus particulièrement, le système de panneau de chauffage de sol utilisant de l'eau chaude comprend : un élément d'isolation thermique disposé sur une couche inférieure d'un espace résidentiel afin d'empêcher l'échappement de chaleur ; un tuyau de chauffage pour fournir à l'espace résidentiel de la chaleur ; une unité de câblage, dans laquelle le tuyau de chauffage est disposé et fixé de telle sorte que la surface du tuyau de chauffage est amenée en contact avec l'unité de câblage, la surface supérieure de l'unité de câblage étant ouverte ; une unité d'accumulation de chaleur qui reçoit de la chaleur à partir du tuyau de chauffage, qui dissipe la chaleur à travers la surface supérieure plate de celle-ci, et qui stocke une partie de la chaleur dans un espace interne fermé de celle-ci ; et un blindage qui recouvre et qui scelle hermétiquement le dessus ouvert de l'unité de câblage tout en maintenant un espace entre le blindage et le tuyau de chauffage. Le panneau de sol chauffant selon la présente invention utilise des matériaux de finition secs pour raccourcir le temps de construction, réduire les coûts de construction, et réduire le poids total d'un bâtiment. De plus, l'espace d'accumulation de chaleur du panneau de sol chauffant selon la présente invention est agrandi, tout en permettant à la construction d'être effectuée de façon pratique, en raccourcissant le temps de construction, et en permettant une réparation, une maintenance, et une reconstruction faciles. Le système de panneau de sol chauffant selon la présente invention empêche la température du sol chauffant de différer en chaque point du sol de l'espace résidentiel, de façon à maintenir une température de chauffage uniforme, et réduit la consommation d'énergie de chauffage.
PCT/KR2011/002676 2010-04-14 2011-04-14 Système de panneau de sol chauffant utilisant de l'eau chaude Ceased WO2011129637A2 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
KR1020100034340A KR101251985B1 (ko) 2010-04-14 2010-04-14 온수 온돌 패널 시스템
KR10-2010-0034340 2010-04-14

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US10358778B2 (en) 2015-02-06 2019-07-23 Michael Gregory Theodore, Jr. Temperature controlled structure assembly
US10570574B2 (en) 2015-02-06 2020-02-25 Michael Gregory Theodore, Jr. Temperature controlled structure assembly
CN106988415A (zh) * 2017-05-27 2017-07-28 吉林建筑大学 发热蓄热结构及设有发热蓄热结构的建筑构件

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