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WO2018194219A1 - Structure de chauffage sous plancher du type à assemblage - Google Patents

Structure de chauffage sous plancher du type à assemblage Download PDF

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Publication number
WO2018194219A1
WO2018194219A1 PCT/KR2017/007566 KR2017007566W WO2018194219A1 WO 2018194219 A1 WO2018194219 A1 WO 2018194219A1 KR 2017007566 W KR2017007566 W KR 2017007566W WO 2018194219 A1 WO2018194219 A1 WO 2018194219A1
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WO
WIPO (PCT)
Prior art keywords
heat
center plate
heat transfer
support
plate
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/KR2017/007566
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English (en)
Korean (ko)
Inventor
안병연
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Individual
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Individual
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Filing date
Publication date
Priority claimed from KR1020170081441A external-priority patent/KR101914590B1/ko
Application filed by Individual filed Critical Individual
Publication of WO2018194219A1 publication Critical patent/WO2018194219A1/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
    • F24D19/00Details
    • F24D19/02Arrangement of mountings or supports for radiators
    • 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
    • F24D5/00Hot-air central heating systems; Exhaust gas central heating systems
    • F24D5/06Hot-air central heating systems; Exhaust gas central heating systems operating without discharge of hot air into the space or area to be heated
    • F24D5/10Hot-air central heating systems; Exhaust gas central heating systems operating without discharge of hot air into the space or area to be heated with hot air led through heat-exchange ducts in the walls, floor or ceiling

Definitions

  • the present invention relates to a prefabricated sphere structure, and more particularly, the center plate support and the heat transfer support in a plurality of grooves provided with a plurality of spaced apart spaced inside the center plate formed of a rectangular plate, the center plate support And connecting the center plates on which the heat transfer support is mounted to each other and inserting them into the goose field frame to easily and simply construct the spheres.
  • the heat transfer path is formed between the center plate to be spaced apart by the height of the center plate support to be communicated to the heat storage composition consisting of ocher and elvan are disposed on the center plate, the heat transfer path Center plate support to transfer heat to the heat storage composition inserted in the inside, and empty
  • the entire goose field frame is quickly heated by the heat transfer support that transfers heat directly from the bottom to the inside of the heat storage composition located on the center plate. It is about.
  • the heating system of a traditional house is predominantly a heating system that uses a heat and smoke generated by burning firewood to heat the field.
  • the gud can be estimated from the pure Korean baked stone, it is the representative heating facility in Korea to heat the gudangjang by letting the fire through the floor.
  • the structure of the bulbs No. 10-1177494 is a fireball to inject a fire to one side of the house, and heats the ball field with the fire energy introduced through the archery
  • the fire generated from the firewood is spread evenly along the moving passage of the fire, which is formed between a plurality of dams, and the smoke that circulates through the whale is scattered through the chimney and discharged to the outside. Is done.
  • Patent Document 1 KR 10-1177494 (Registration No.) 2012.08.21.
  • Patent Document 2 KR 10-1481086 (Registration No.) 2015.01.05.
  • Patent Document 3 KR 10-1498433 (Registration No.) 2015.02.25.
  • the center plate support and the heat transfer support are connected and mounted in a plurality of grooves provided in the inner side of the center plate formed of a predetermined size plate, and the center plate and the heat transfer support are connected to each other and inserted into the goose field frame. It is therefore an object of the present invention to provide a prefabricated sphere structure that can be quickly and simply constructed.
  • another object of the present invention is to install a firewood in front of the gooseberry frame is formed between the center plate spaced apart from the inner bottom of the gooseberry frame by the height of the center plate support from the inner bottom of the gooseberry frame
  • the center plate support for transferring heat to the heat storage composition consisting of ocher and elvan are placed on the center plate to allow communication in the heat transfer passage, which is located in the heat transfer passage and inserted into the heat storage composition.
  • to provide a prefabricated sphere structure that is quickly heated by a heat transfer support that transfers the heat directly inside the heat storage composition located on the center plate receives the heat generated from the sub-space into the empty space.
  • Another object of the present invention is to provide a prefabricated sphere structure having a center plate support is inserted into the heat storage composition and in direct contact with the heat of the archer and supports the center plate.
  • another object of the present invention is to receive the heat of the archery to the heat transfer support inside, so that the heat is constrained in the upper part of the center plate where the heat storage composition is located can be directly transferred heat to the heat storage composition disposed on the center plate.
  • another object of the present invention is to place a heat transfer support that is quickly heated by restraining the heat transmitted from the archery on the center plate where the heat storage composition is located, the gap between the heat storage composition is narrowed in the corresponding position is in contact with the user To provide a prefabricated sphere structure that the sphere is heated quickly.
  • another object of the present invention is to provide a prefabricated sphere structure for manufacturing the center plate, heat transfer support, center plate support, edge plate in a mass-produced factory, and construct the spheres by assembly at the work site.
  • the present invention provides a plate-shaped center plate support groove 112 and a heat transfer support groove 113 formed of a through-hole provided with a plurality of center plate 110;
  • a center plate support connected to the lower portion of the center plate support groove 112 and having an upper portion open to allow the heat storage composition to be drawn in;
  • a heat transfer support which is connected and mounted to protrude to an upper portion of the heat transfer support groove 113, and which has a top and side closed but a bottom open and a heat pocket having a predetermined hollow interior to receive heat into the open bottom; It includes.
  • the heat transfer support of the present invention is connected and mounted to protrude from the heat transfer support groove 113 at the bottom of the heat bag, the protruding portion is formed with a front hole 131 to accept the fire.
  • center plate 110 of the present invention is provided with a plurality of protrusions 111 formed to be bent at a predetermined height upward or downwardly spaced apart from each other.
  • the second connection groove 141 which is connected and mounted at the edge of the center plate 110 of the present invention and coupled to the plurality of first connection grooves 114 formed on the center plate 110 is provided at the top, and
  • the magnetic seat plate 140 is first bent from the center plate 110 and extended downward to be bent in the opposite direction to the first bent direction at the same height as the lower end of the center plate support 120.
  • the diameter of the lower end of the heat bag protruding upward is formed to be larger than the diameter of the heat transfer support groove 113.
  • the area of the lower end of the center plate support of the present invention is formed larger than the area of the center plate support groove.
  • the edge plate 140a disposed at the front portion on which the archery 10 is mounted is provided with a subtle groove 142 through which the heat of the archery 10 enters, and an edge disposed at the rear portion of the edge plate 140a.
  • the plate 140b is provided with a plurality of smoke discharge pipe grooves 143 to which the smoke discharge pipe 190 for discharging the smoke to the outside is formed.
  • the heat transfer support of the present invention is provided with a larger volume of the heat bag protruding in the upper direction of the center plate 110 than the volume of the portion protruding in the lower direction of the center plate (110).
  • the prefabricated sphere structure 100 of the present invention is inserted and mounted in the saddle field frame 11 to accumulate heat between the upper portion of the center plate 110 and the edge portion of the edge plate 140 and the field frame 11 A heat storage unit in which the heat storage composition is formed is provided.
  • the prefabricated sphere structure of the present invention is connected to the center plate support and the heat transfer support in the center plate support groove and the heat transfer support groove is provided with a plurality inside the center plate formed of a plate, respectively, the center plate support and heat transfer support
  • the center plate support and heat transfer support By connecting the center plate is attached to each other and inserted into the saddle field frame, there is an effect of establishing a heat transfer passage through which heat passes easily and simply.
  • the prefabricated saddle structure of the present invention is installed between the center of the gouljangjang frame so that the fire (heat) generated in the arch is spaced between the center plate spaced apart from the inner bottom of the gouljang frame by the height of the center plate support
  • Transfer heat to the heat storage composition consisting of ocher and elvan are disposed on the center plate to communicate with the heat transfer passage formed in the heat transfer passage, and transfers heat to the heat storage composition inserted in the heat transfer passage.
  • the central plate support and the heat transfer support that directly transfers heat to the inside of the heat storage composition positioned on the center plate by receiving heat generated from the sub-space into the empty space has an effect of being heated quickly.
  • the prefabricated sphere structure of the present invention has an advantage that can be applied to spheres of various sizes by forming a plurality of connection grooves connecting the center plate and the center plate at the edge of the center plate.
  • the prefabricated bundle structure of the present invention is provided with a heat bag at the top of the center plate where the heat storage composition is located so that the heat is constrained so that heat can be transferred directly from the side of the heat storage composition to the heat storage composition, thereby reducing the construction thickness of the heat storage composition. There is an effect that can quickly heat the heat storage composition without.
  • the present invention is provided with a heat storage composition is inserted into the inside and directly in contact with the heat of the archery to have a solid hardened center plate support to support the center plate after construction, so that it is not necessary to provide a separate center plate support There is an advantage.
  • the present invention has the effect that the heat generated from the ingot enters into the heat bag of the heat transfer support but the heat transfer support groove is smaller than the diameter of the heat transfer support so that heat is kept out for a long time.
  • the present invention by forming a detachable portion in the outer peripheral surface of the center plate support groove and the heat transfer support groove of the center plate, so that the center plate support and the heat transfer support can be detachably coupled to the center plate can be easily and quickly manufactured prefabricated sphere structure There is an advantage.
  • the present invention is provided with a heat bag that restrains the heat of the archery, the height of the heat storage composition from the position where the heat bag is formed up to the saddle field is small, there is an effect of heating the dog field quickly.
  • FIG. 1 is a perspective view of a state in which a prefabricated ballast structure according to a first embodiment of the present invention is mounted on a goose field frame,
  • Figure 2 is a perspective view of the assembled prefabricated sphere structure according to the first embodiment of the present invention
  • FIG. 3 is a perspective view of a state in which the prefabricated sphere structure according to the first embodiment of the present invention is separated
  • FIG. 4 is a cross-sectional view of a state in which a prefabricated ballast structure according to a first embodiment of the present invention is mounted on a ballast frame;
  • FIG. 5 is a perspective view showing another form of the first heat transfer support according to the first embodiment of the present invention.
  • FIG. 6 is a perspective view of a state in which a third connecting means is formed at the edge of the center plate according to the first embodiment of the present invention.
  • Figure 6 ⁇ b> is a perspective view of a state in which the center plate according to the first embodiment of the present invention is connected by a third connecting means.
  • FIG. 7 and 8 are perspective views of the prefabricated structure for the structure of the saddle according to the second embodiment of the present invention mounted on the goose field frame,
  • FIG. 9 is a plan view of a prefabricated ballast structure according to a second embodiment of the present invention mounted on a goose field frame,
  • FIG. 10 is a perspective view of the assembled assembled structure according to the second embodiment of the present invention.
  • FIG. 11 is a perspective view of a state in which the prefabricated sphere structure according to the second embodiment of the present invention is separated
  • FIG. 12 is a perspective view of a state in which a second center plate support and a second heat transfer support are separated from a center plate according to a second embodiment of the present invention
  • FIG. 13 is a partially enlarged view of a state in which the center plate is cut in half according to the second embodiment of the present invention.
  • FIG. 14 is a perspective view of the center plate and the coupling for supporting the transmission in accordance with an embodiment of the present invention.
  • Prefabricated ballast structure 100 as shown in Figs. 1 to 6 is provided with a submersible 10 in the front, a chimney 20 is provided in the rear, between the Firearms generated from the subfamily (10) passes through and is inserted into the goose field frame (11) for heating by transferring heat to the top,
  • a center plate 110 formed of a plurality of plates and formed with a plurality of center plate support grooves 112 and heat transfer support grooves 113 formed of a through hole spaced apart from each other;
  • a first center plate support 120 connected and mounted to protrude from a lower portion of the center plate support groove 112, and having an open top;
  • the upper and lower parts of the heat transfer support groove 113 are connected and mounted, and the protruding portion of the upper portion of the center plate 110 is hermetically closed except the lower part (closed at the top and sides), but the inside is hollow and has a constant volume.
  • the first heat transfer support 130 having a portion protruding downward from the center plate 110 has the same length as the center plate support 120 and the front hole 131 is formed in the direction of the arch 10. Wow;
  • Edge plate 140 Connected and mounted at the edge of the center plate 110 and its cross section Edge plate 140 is to be;
  • It comprises a connecting plate 150 for coupling the two connecting center plate 110 with each other.
  • the prefabricated sphere structure 100 according to the second embodiment of the present invention is provided with a submersible 10 on the front, the smoke discharge pipe 190 is provided on the back, the Fire is generated from the archery (10) in between to be inserted and mounted in the goose field frame (11) for heating by transferring heat to the top,
  • a center plate 110 formed of a plurality of plates and having a plurality of center plate support grooves 112 and heat transfer support grooves 113 formed therethrough;
  • the first center plate coupling portion 171 is connected to the lower portion of the center plate support groove 112 and protruded to be mounted on the first detachable portion 115 formed on the lower surface of the center plate 110.
  • a second center plate support 170 formed at an upper portion thereof;
  • the second center plate coupling portion 181 is provided on the outer circumferential surface of the heat transfer support groove 113 so as to protrude and be mounted to the second detachable portion 116 formed on the upper surface of the center plate 110.
  • the "connecting mounting" includes the one-piece unit, and in the case of different embodiments of the component having the same function, a first and a second are added before the name of the component, without the first and the second. Reference is made to both.
  • the first heat transfer supporter and the second heat transfer supporter are collectively referred to as heat cutting supporters, and the first and second heat pockets are collectively referred to as heat packs, and the first and second center supporters Collectively, the center plate is supported.
  • the fire extinguisher 10 in the present invention is made of a stove type (10a) using a pellet as a heat source as shown in FIG. 7 or a torch type that can receive heat from a torch connected with butane gas as shown in FIG. 10b) may be provided, or may be provided in a firewood stove (not shown). All forms are pushed into the inlet formed by the sub-groove 142 by sliding, combined with the sub-gun, and in the case of pellets or firewood is provided with a ash tray to hold the ash, if there is no ash from the gas, the sub-gap shear is small There is an advantage to this.
  • the saddle field frame 11 of the present invention is made of a frame in the form of a square frame, the bottom surface is provided at the bottom and the sub-curve 10 is installed in the sub-curve groove 142 on the front, and firearms generated from the sub-curve 10
  • the center plate 110 is installed to be spaced apart from the bottom surface to store the heat received by the smoke, the center plate 110 and the center plate 110 are positioned in succession to each other and made of a plurality of rows and rows
  • an edge plate 140 is installed at a side of the center plate 110 positioned at an edge to form a heat movement path 11a of a closed path in which heat moves between the bottom surface and the center plate 110.
  • a discharge port for discharging the smoke generated in the archery 10 to the outside through the heat transfer passage 11a is formed at the rear of the goose field frame 11, and the chimney 20 is mounted at the discharge port.
  • the chimney is connected to a pipe extending from the end of the heat transfer passage (11a), or as shown in Figure 9 smoke exhaust pipe 190 is provided separately on the back of the saddle field frame 11 is mounted 2 ⁇ in the heat transfer passage (11a)
  • Three smoke discharge pipe grooves 143 are formed and connected to the pipe, and the smoke generated in the archery 10 is discharged to the outside through the smoke discharge pipe 190 through the heat transfer passage 11a.
  • the heat movement passage (11a) of the goose field frame 11 is a passage between the bottom surface and the center plate 110, the closed passage closed up, down, left and right from the subfamily (10) to the outlet or smoke discharge pipe (190)
  • the heat and smoke generated from the front arch 10 will be in contact with the center plate 10 and the bottom surface and move to the rear in between.
  • the saddle field frame 11 is a rectangular groove formed between the upper portion of the center plate 110 and the edge of the saddle field frame 11 and the downward bending of the edge plate 140, as shown in FIG.
  • the heat accumulating part 11b in which the heat accumulating composition which accumulates heat is formed at a predetermined height is accumulated and received from the center plate 110 and the edge plate 140, and is accumulated on the heat accumulating part 11b. It will provide warmth to the floor for a long time. However, a pipe through which the fire is passed is formed between the heat transfer path (11a) in the firewood.
  • the heat storage composition is surrounded by the entire frame of the saddle field frame 11, the firearms received from the subfamily from outside the edge plate 140 are not easily disappeared and stored for a long time, and the hot fire of the heat transfer passage 11a does not directly touch the user. This reduces the risk of burns.
  • the heat storage portion 11b is made of one or each of the heat storage composition such as ganban stone powder, sand, ocher, gravel, or combined with each other, the ganban stone plate, marble, octane, Hanji or deodorizing plate or far infrared rays are emitted to the top of the heat storage unit It is finished with a finish made of functional slabs.
  • the heat storage composition such as ganban stone powder, sand, ocher, gravel, or combined with each other, the ganban stone plate, marble, octane, Hanji or deodorizing plate or far infrared rays are emitted to the top of the heat storage unit It is finished with a finish made of functional slabs.
  • the prefabricated sphere structure 100 is made of metal such as iron or aluminum with good thermal conductivity to increase the heating efficiency by using fire and smoke received from the archery 10.
  • the prefabricated sphere structure 100 may be made of a material that is excellent in heat storage function such as ocher and hardened by heat.
  • the sum of the length of the center plate support positioned below the center plate and the heat transfer support positioned above the center plate should be lower than the height of the goose field frame. That is, the sum of the heights of the heat transfer supports positioned between the center plate support, which is the height from the bottom surface to the center plate, and the heat storage portion must be lower than the height of the saddle field frame 11, so that a heat bag formed as a thermo battery zone is located between the heat storage portions.
  • the center plate 110 is made of a polygonal plate of a predetermined size (shown as a rectangular plate in the drawing) is formed a plurality of protrusions 111 formed to be bent at a certain height bent to the top or bottom spaced apart from each other and disposed on the top Withstanding the weight of the heat storage material and the finishing material made of the heat storage composition, the center plate 110 is formed to be strong and robust. Since the protruding portion 111 is also drawn in or drawn out between the heat accumulating portions 11b, there is also an effect of widening the surface area of the heat accumulating portion 11b which receives the heat provided from the arching 10.
  • the protruding portion 111 is formed to be lower than the first row bag 133 and the second row bag 182 which will be described below mainly to increase the rigidity of the center plate 110.
  • the protrusion 111 is provided between the center plate support groove 112 and the heat transfer support groove 113.
  • the center plate 110 has a center plate support groove 112 and a heat transfer support groove 113 formed of a through hole are spaced apart from each other, the center plate support groove 112, the first and second protruding downward Center plate support (120, 170) is mounted, the heat transfer support groove 113 is provided with a first, second heat transfer support (130, 170) protruding upward.
  • the heat transfer support groove 113 may be additionally formed in a downward direction.
  • the center plate support (120, 170) is located between the bottom surface and the center plate 110 to determine the height of the center plate 110, the top connected to the center plate support groove 112 open ,
  • the heat storage composition of the heat storage portion (11b) positioned on the center plate 110 is filled with the open center plate support groove 112 at the time of construction, the heat storage composition is characterized in that the heat is gradually hardened by the heat Since the center plate 110 is a fixed support that can stand apart from the bottom surface.
  • the heat storage composition filled in the open center plate support groove 112 is located in the heat transfer passage (11a) in which the heat moves, so that the heat is directly received from the archery, and the heat is quickly received.
  • the lower end of the center plate support has an extension (not shown) outwardly parallel to the center plate.
  • the extension portion is enough about 1 ⁇ 2cm radially from the outer surface of the center plate support, and serves to stably fix the center plate support.
  • the present invention is a separate form of the spheres forming the saddle field frame 11, the center plate 110 is a plurality of glad multi-column (Fig. 1, Fig. 2, Fig. 3, Fig. 5 is shown only in one row and three columns for convenience) Are continuously coupled to form a saddle field, and the center plate 110 is provided with a first connection groove 114 formed of a plurality of through holes at an edge thereof, and the other first plate provided at the edge of the other center plate 110 to be connected. Overlap with the connecting groove 114, and is coupled to the through hole by tightening with a screw.
  • the center plate 110 located at the edge of the saddle field frame 11 is coupled to the edge plate 140 is provided with a heat storage portion (11b) in which the heat storage composition is placed on the side of the edge plate 140, wherein the edge plate
  • the second connecting groove 141 formed on the 140 and the first connecting groove 114 of the center plate overlap and then tighten by tightening with a screw.
  • the size of the center plate 110 may be varied to suit the size of the room.
  • the first connection grooves 114 are arranged in a plurality of rows to connect all the plurality of rows or the first connection grooves. Only a few rows can be connected to complete the goose field frame 11 suitable for the size of the construction.
  • first connection groove 114 and the second connection groove 141 may be non-combined after overlapping each other without a medium, but as shown in FIGS. 2 and 5 to more stably combine, the first connection groove (
  • the connecting plate 150 may be provided on the upper or lower portion (or upper and lower portions) of the 114 and the first connection groove 114, the first connection groove 114, and the second connection groove 141, and may be non-combined.
  • the center plate 110 is provided with a ring-shaped third connecting means 160 protruding to the edge of the center plate 110, as shown in Figure 6, the third connecting means 160
  • the third connecting groove 161 which is a corresponding groove, is provided on the inner side to insert the third connecting means 160 into the third connecting groove 161 of the other center plate, thereby forming the edge plate 140 and the other center plate 110. It may be provided to be connected to.
  • edge plate 140 is also provided with connecting means of the same type as the third connecting means 160 and the third connecting groove 161.
  • the center plate 110 is coupled to the other center plate 110, the center plate 110 and the edge plate 140 by the combination of the part protrudes above the center plate, but is provided on the center plate 110 of the present invention
  • the heat accumulating part 11b is formed by constructing the heat storage composition to a certain height, and when the heat storage composition is hardened or tightly formed by the heat of the archery 10, the heat transfer passage 11a forms a closed path.
  • the center plate support and the heat transfer support mounted on the center plate 110 are formed in a polygonal shape such as a cross section or a circle, and the center plate supports 120 and 170 protrude downward from the center plate 110. And serves as a pillar to support the center plate 110 from the bottom, and the first heat transfer support 130 protrudes in the upper and lower directions of the center plate 110 and protrudes to the top of the center plate.
  • a first heat bag 133 is formed to store heat in the hollow.
  • the center plate support is open at the top, and the heat storage composition is inserted in the open top to support the center plate 110 from the bottom and at the same time serves to transfer heat to the heat storage unit (11b).
  • the first heat transfer support 130 is protruded into the upper and lower portions of the heat transfer support groove 113 of the center plate 110, the upper portion is closed and the inside is formed in a hollow, the lower portion of the center plate 110
  • the protruding portion is formed with a front hole 131 in the direction of the archery 10. At this time, the height protruding to the lower portion of the first heat transfer support 130 is the same as the height of the first central plate support (120).
  • the upper portion of the first heat transfer support 130 which protrudes above the center plate 110 and is inserted into the heat storage unit 11b, that is, the first heat bag 133 is formed at the front hole 131 below the center plate 110. Receive heat from and constrain heat.
  • the front hole 131 is formed in the direction of the front arch (10) to receive the heat generated from the arch 10, the heat entering the front hole 131 is raised up in the first heat bag 133 is completely sealed You will stay for a long time.
  • the first heat transfer support 130 does not protrude downward, but protrudes only in the upper direction, heat is directly received from the heat transfer support groove 113, in this case than the diameter of the heat transfer support groove 113
  • the diameter of the lower end of the heat bag 133 is formed large to constrain the transferred heat (fire).
  • the heat bag protrudes into the heat storage unit 11b, heat is directly supplied between the heat storage compositions to quickly heat the whole field.
  • heat can be transferred to the top and side surfaces of the heat accumulating part 11b.
  • the height of the heat sacs decreases the height of the heat accumulating part close to the bottom of the gusset field due to the height of the heat sachets, thereby rapidly heating the gusset field.
  • the heat pocket near the arch is less than the other portion can be formed. This is because the heat provided by the firewood can transfer heat directly to the floor, so that the floor heats up quickly, even with less heat pockets.
  • the height, the width, and the number of the first heat bag 133 are important for rapidly heating the ball field.
  • the heat transfer support of the present invention preferably has a larger volume than a portion protruding in the upper direction of the center plate 110 and protrudes in the lower direction.
  • the protruding portions are made of the same shape 130a, or the heat transfer support 130b having a spherical shape, or the conical column-shaped heat transfer support 130c having a larger cross-sectional area (diameter) toward the top.
  • the cross-sectional area (diameter) of the heat bag is larger than the cross-sectional area (diameter) of the heat transfer support groove 113.
  • the shape of the heat bag varies, but the top surface is a plate and parallel to the center plate. That is, in order to quickly transfer heat to the upper end of the heat storage portion, the surface of the top surface of the heat bag should be widened. For this purpose, the top face of the heat bag becomes a plate.
  • the heat transferred from the heat bag to the heat storage unit 11b is much larger than the amount of heat transferred from the center plate support, so that if the number of heat transfer supports is greater than the number of center plate supports, the heat storage unit 11b is rapidly heated. When the number of cardboard zones is large, the heating time of the heat storage unit 11b takes longer than the center plate 110 is stably supported.
  • the center plate with the same number of center plate supports and heat transfer supports as possible to provide stable support of the center plate and rapid heating to the heat storage portion 11b at the same time.
  • the lower portion of the first heat transfer support 130 is formed in addition to the front hole 131, the lower hole 132 consisting of a through hole which is opened at a predetermined interval from the bottom surface is formed inside the heat received from the arching 10 You can save it to.
  • the lower hole 132 is removed in a certain area in the direction of the arch of the front, provided with an inclined stand (not shown) on the portion that is not removed while reinforcing the bearing force of the center plate 110 while the upward direction of the heat upwards It can be converted so that it can take in more heat from the fungus.
  • the edge plate 140 is formed of a plate that is bent at the edge of the center plate 110 connected in succession to connect with the center plate 110 using a second connecting groove 141 at the top of the center plate 110. It is provided so as to be bent toward the bottom, it is bent horizontally formed on the bottom surface, it is double bent and the top and bottom are bent in the opposite direction to each other. That is, the first bent at the height combined with the center plate 110 extends downward and the second bend in the opposite direction to the first bent direction at the same height as the lower end of the center plate support.
  • the edge plate 140 is made of a height corresponding to the height of the center plate support protruding to the lower portion of the center plate 110 to close the edge surface opened to the lower portion of the center plate 110 by the saddle field frame 11 It is provided to form the side of the heat transfer path (11a) when inserted in the.
  • the prefabricated sphere structure 100 of the present invention is inserted into the inside of the saddle field frame 11, between the outer surface of the edge plate 140 and the inner surface of the frame of the bead field frame 11, the inner side of the center plate support and The upper portion of the center plate 110 is filled with a heat storage composition.
  • the edge plate 140 serves to seal the smoke moving in the heat transfer passage 11a so as not to be discharged to the outside, and at the same time, forms an external support for the heat storage unit in which the heat storage composition is filled. It is maintained, and the temperature outside the edge, which is the exposed portion of the goose field frame, is excessively raised to prevent the user from being unexpectedly burned.
  • the edge plate 140 has a length corresponding to a state in which the plurality of center plates 110 are connected to connect the plurality of center plates 110, or has a length corresponding to one center plate 110. Can be done.
  • Prefabricated sphere structure 100 is that the second center plate support 170 and the second heat transfer support 180 is detachably coupled to the lower and upper portions of the center plate 110, respectively.
  • the first detachable part 115 is formed on the lower surface of the center plate 110
  • the second detachable part 116 is formed on the upper surface of the center plate 110.
  • the second center plate support 170 is detachably coupled to the second center plate support 170
  • the second heat transfer support 180 is detachably coupled to the second detachable part 116.
  • a protruding surface is formed on the outer circumferential surface of the second center plate support 170 so as to be mounted on the first detachable part 115, and a first center plate coupling part 171 is formed on the protruding surface to form the first It is coupled to the first detachable portion 115 through the center plate coupling portion 171, a protruding surface is formed on the outer peripheral surface of the second heat transfer support 180 to be mounted to the second detachable portion 116, the protrusion
  • the second center plate coupling portion 181 is formed on the surface to be coupled to the second detachable portion 115 through the second center plate coupling portion 181.
  • the detachable parts 115 and 116 and the center plate coupling parts 171 and 181 are respectively fitted into the grooves and the grooves, or the second center plate support 170 by the rotation or pressing operation in the shape of the protrusions and the protrusions. ) And the second heat transfer support 180 and the center plate are sufficient to mutually couple.
  • the center plate ( The second center plate support 170 and the second heat transfer support 180 can be detachably coupled to 110 to easily and quickly fabricate a prefabricated sphere structure.
  • the area of the bottom of the center plate support is the area of the center plate support groove. It is formed larger than the area.
  • the second heat transfer support 180 is to form a second heat bag 182 in the interior protruding upward as shown in Figure 13, the diameter of the second heat bag 182 is the heat transfer support Heat larger than the diameter of the groove 113, the heat generated from the arching 10 enters into the second heat pocket 182, but blocked by the heat transfer support groove 113 to prevent heat from escaping, the heat is transferred to the second heat transfer support 180 ) Can be kept long inside.
  • the heat transfer support may be coupled to the center plate and the interference fit as shown in FIG.
  • the interference fit is achieved by having a protruding surface slightly projecting to the top of the heat transfer support groove coupled with the center plate and the heat transfer support and making the diameter slightly smaller than the heat transfer support.
  • the protrusion may be provided on the protruding surface protruding from the heat transfer support groove, and the 'a' groove may be provided on the heat transfer support to allow the protrusion to pass through to combine the heat transfer support and the center plate.
  • This coupling method is the same as the center plate and the center plate support. At this time, the protruding surface is provided under the center plate.
  • the prefabricated sphere structure 100 of the present invention is spaced apart at regular intervals inside the center plate 110 formed of a square plate of a predetermined size, the center plate support groove 112 and the heat transfer support groove 113 is provided with a plurality.
  • the first center plate support 120 or the second center plate support 170 and the first heat transfer support 130 or the second heat transfer support 180, respectively, and the first center support 120 are easily and simply installed. There is an effect to form a sphere structure.
  • the prefabricated structure of the saddle structure 100 of the present invention is equipped with a fire arch (10) in front of the goose field frame 11, the fire (opening) generated in the fire arch 10 is the bottom surface of the goose field frame 11
  • the heat is transferred from the heat transfer path (11a) formed between the center plate 110 is spaced apart by the height of the first center plate support 120 or the second center plate support 170 from the It is delivered to the heat storage unit consisting of loess and ganban rock disposed on the center plate 110, the first center plate support 120 or the second center plate support 170 and the empty space to transmit heat to the heat storage portion inserted therein
  • the entire heat field frame 11 is uniformly transferred by the first heat transfer support 130 or the second heat transfer support 180 which transfers the heat introduced into the heat accumulator between the heat accumulators, and heat is transferred between the heat accumulators.
  • Can pass directly Becomes quick heating control is performed, not only can be stored for a long time to open and not the entire gudeuljang uniformly heating has the effect that improve
  • center plate and the edge plate of the prefabricated sphere assembly of the present invention can be manufactured by a mold can be easily manufactured a plurality, and in the workplace, the spheres are completed simply by assembling and constructing the heat storage composition. To provide.
  • the prefabricated bundle structure 100 of the present invention is formed by forming a plurality of protrusions 111 formed to be bent to a predetermined height to the upper portion of the center plate 110 at regular intervals, thereby making the center plate 110 strong and robust. It is supported so that, by forming the first connection groove 114 in a row in the edge of the center plate 110 has the advantage that the length can be adjusted when combining the plurality of center plates (110).
  • the prefabricated sphere structure 100 of the present invention forms a front hole 131 and a lower hole 132 to receive the heat of the subfamily 10 in the first heat transfer support 130, the center
  • the heat is rotated inside and heat is constrained, but the area where the heat stays is widened, and the center plate 110 is placed on the center plate 110.
  • the heat storage composition can be directly transferred to the heat storage composition to be disposed there is an effect that can heat the heat storage composition quickly.
  • the heat generated from the subfamily enters into the second heat pocket 182 of the second heat transfer support 180, but the diameter of the heat transfer support groove 113 is smaller than the diameter of the second heat transfer support 180, and thus heats out. It is effective to keep the heat for a long time by blocking it from coming out.
  • second center plate support 171 first center plate coupling portion

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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)

Abstract

La présente invention concerne une structure de chauffage sous plancher du type à assemblage et, plus particulièrement, une structure de chauffage sous plancher du type à assemblage permettant une construction facile, la structure comprenant : des supports de plaque centrale et des supports de transfert de chaleur reliés à, et montés sur, une pluralité de rainures agencées pour être espacées les unes des autres à intervalles prédéfinis à l'intérieur des plaques centrales formées de plaques rectangulaires, les plaques centrales, sur lesquelles sont montés les supports de plaque centrale et les supports de transfert de chaleur, étant reliées entre elles et insérées dans un cadre de pierres de plancher afin de construire, de manière facile et simple, un système de chauffage sous plancher. Le feu (chaleur) produit dans le four installé devant le cadre de pierres de plancher peut se déplacer à travers le circuit de déplacement de la chaleur formée entre la partie inférieure interne du cadre de pierres de plancher et les plaques centrales agencées pour être espacées de la partie inférieure interne du cadre de pierres de plancher d'une distance égale à la hauteur des supports de plaque centrale, afin de transférer la chaleur à la composition de stockage de la chaleur constituée de loess, d'elvan et analogues et agencée sur les plaques centrales. Le cadre de pierres de plancher peut être rapidement chauffé en sa totalité par les supports de plaque centrale placés dans le circuit de déplacement de la chaleur et transférant la chaleur à la composition de stockage de la chaleur, et les supports de transfert de chaleur, comportant des espaces vides à l'intérieur et permettant l'introduction de la chaleur produite par le four, transfèrent la chaleur directement à l'intérieur de la composition de stockage de la chaleur placée sur les plaques centrales.
PCT/KR2017/007566 2017-04-20 2017-07-14 Structure de chauffage sous plancher du type à assemblage Ceased WO2018194219A1 (fr)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
KR10-2017-0050940 2017-04-20
KR20170050940 2017-04-20
KR1020170081441A KR101914590B1 (ko) 2017-04-20 2017-06-27 조립식 구들 구조체
KR10-2017-0081441 2017-06-27

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WO2018194219A1 true WO2018194219A1 (fr) 2018-10-25

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Cited By (1)

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KR20210142326A (ko) * 2020-05-18 2021-11-25 주식회사 안병연구들명가 공기나 열기의 이동을 가이드하는 통로 구조체

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JP2006308118A (ja) * 2005-04-26 2006-11-09 San Kogyo Kk 暖房用板材とそれを使用した建物の床暖房装置
KR101481086B1 (ko) * 2014-07-01 2015-01-21 신창화 난방효율을 개선한 구들
KR20160134420A (ko) * 2015-05-15 2016-11-23 다오케이황토구들 주식회사 조립 및 이동식 가옥을 구비한 온돌식 난방구조
KR101689232B1 (ko) * 2016-04-20 2017-01-02 이창민 구들장을 이용한 이동식 온돌 시스템
KR101696802B1 (ko) * 2016-10-26 2017-01-16 주식회사 삼한 에이텍 온돌 난방용 구들

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2006308118A (ja) * 2005-04-26 2006-11-09 San Kogyo Kk 暖房用板材とそれを使用した建物の床暖房装置
KR101481086B1 (ko) * 2014-07-01 2015-01-21 신창화 난방효율을 개선한 구들
KR20160134420A (ko) * 2015-05-15 2016-11-23 다오케이황토구들 주식회사 조립 및 이동식 가옥을 구비한 온돌식 난방구조
KR101689232B1 (ko) * 2016-04-20 2017-01-02 이창민 구들장을 이용한 이동식 온돌 시스템
KR101696802B1 (ko) * 2016-10-26 2017-01-16 주식회사 삼한 에이텍 온돌 난방용 구들

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20210142326A (ko) * 2020-05-18 2021-11-25 주식회사 안병연구들명가 공기나 열기의 이동을 가이드하는 통로 구조체
WO2021235770A1 (fr) * 2020-05-18 2021-11-25 주식회사 안병연구들명가 Structure de passage pour guider le déplacement d'air ou de gaz chaud
KR102393115B1 (ko) * 2020-05-18 2022-05-02 주식회사 안병연구들명가 공기나 열기의 이동을 가이드하는 통로 구조체

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