CN203550024U - Cavity type air flue solar air heat-collection and air supply system - Google Patents

Cavity type air flue solar air heat-collection and air supply system Download PDF

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Publication number
CN203550024U
CN203550024U CN201320518956.1U CN201320518956U CN203550024U CN 203550024 U CN203550024 U CN 203550024U CN 201320518956 U CN201320518956 U CN 201320518956U CN 203550024 U CN203550024 U CN 203550024U
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air
solar
heat collector
casing
cavate
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Expired - Fee Related
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CN201320518956.1U
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张勇
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    • 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
    • Y02B10/00Integration of renewable energy sources in buildings
    • Y02B10/70Hybrid systems, e.g. uninterruptible or back-up power supplies integrating renewable energies
    • 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]
    • 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
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/40Solar thermal energy, e.g. solar towers
    • Y02E10/44Heat exchange systems

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Abstract

The utility model relates to a cavity type air flue solar air heat-collection and air supply system, belonging to the field of solar heating and air-supply devices and particularly relates to an air supply system for supplying warm air indoors by heating the air by utilizing the solar energy. The cavity type air flue solar air heat-collection and air supply system comprises a solar air heat collector and an indoor hanging machine (8) of a fan heater, wherein an air outlet (4) of a heat collector of the solar air heat collector is connected with an air inlet (25) of the fan heater. The cavity type air flue solar air heat-collection and air supply system is characterized in that a wind source conversion device is additionally arranged between the air outlet (4) of the heat collector and the air inlet (25) of the fan heater. According to the cavity type air flue solar air heat-collection and air supply system, the heat is collected by utilizing the cavity type multi-air-flue air heat collector, the air heat-collection efficiency is firstly improved, the supplying effect of the outdoor warm wind is guaranteed, and the free conversion of different wind sources can be easily realized by utilizing the wind source conversion device.

Description

Cavate air channel solar air heat collection supply air system
Technical field
Cavate air channel solar air heat collection supply air system, belongs to solar energy for heating wind devices field, be specifically related to a kind of by solar energy heating air to indoor supply air system of carrying out warm braw supply.
Background technology
Solar energy hot blast heating plant is to utilize solar energy to heat air, then utilizes the air after heating to realize the equipment to indoor heating.But due to, the utilization of solar energy and weather, the natural causes such as temperature have very large relation, when outdoor wind is not suitable for warm braw for seasonable, will certainly have influence on the supply of solar heating air, this just need to take other air feed channel, therefore, the supply air system of solar energy hot blast heating plant needs to utilize outdoor wind heating, can utilize again indoor wind or other wind regimes to carry out warm braw supply, but current indoor warm braw supply air system is because system structure design is reasonable not, can not realize flexibly freely changing between multiple wind regime, underaction in the selection of indoor wind and outdoor wind, convenient, in addition the Heat-collecting effect of existing solar thermal collector is unsatisfactory, makes the warm braw supply effect of existing supply air system also can not meet preferably the warm braw supply requirement of various weather.
Summary of the invention
The technical problems to be solved in the utility model is: overcome the deficiencies in the prior art, provide a kind of Heat-collecting effect significantly, wind regime conversion is flexible, convenient, warm braw is supplied effective cavate air channel solar air heat collection supply air system.
The utility model solves the technical scheme that its technical problem adopts: this cavate air channel solar air heat collection supply air system, comprise the indoor on-hook of solar energy air heat collector and warm-air drier, the heat collector air outlet of solar energy air heat collector connects warm-air drier air inlet, it is characterized in that: between described heat collector air outlet and warm-air drier air inlet, set up wind regime conversion equipment.
Described solar energy air heat collector is cavate air channel punching solar energy air heat collector, punching solar energy air heat collector in cavate air channel comprises casing, be laid on the heat-insulation layer on cabinet wall, one deck base plate of laying on heat-insulation layer, and be arranged on heat collector air inlet and the heat collector air outlet on casing, on the opening surface of casing Chaoyang, euphotic cover plate is installed, in casing, be provided with the collecting plate that cabinets cavity is divided into two-layer cavity, and every layer of cavity is divided into a plurality of independent cavities by a plurality of dividing plates, collecting plate is provided with punching, between a plurality of independent cavities, by punching, be communicated with and form continuous circulation of air cavity.
Described collecting plate is the partition panel being arranged in casing, by collecting plate, casing is separated into former and later two chambers, in former and later two chambers, be respectively equipped with and the vertically disposed dividing plate of collecting plate, by dividing plate, will in front chamber and rear chamber, be divided into a plurality of independent cavities respectively.
Described collecting plate is flat board, triangle flap or wave-shape board.
Described collecting plate is for being longitudinally arranged on the continuous triangle flap in casing, each break of triangle flap is fixedly connected with light-passing board or the base plate of its upside, and by triangle flap, box house being separated into a plurality of longitudinal sections is from top to bottom leg-of-mutton strip circulation of air cavity.
In the casing at described euphotic cover plate rear, be longitudinally provided with light-passing board, light-passing board and euphotic cover plate be arranged in parallel.
Described wind regime conversion equipment comprises and being interconnected and vertically disposed horizontal horizontal cavity shell and vertical tube, vertical tube one end is communicated with horizontal cavity shell, the other end is provided with outdoor wind headstock gear, outdoor wind headstock gear is connected with heat collector air outlet by air channel tube connector, and both ends open place, horizontal cavity shell left and right is respectively equipped with left side headstock gear and right side headstock gear.
Described vertical tube is vertically mounted on a side or the top at horizontal cavity shell middle part, and described horizontal cavity shell middle part one side has outdoor wind regime entrance, and middle part opposite side correspondence has conversion equipment air outlet, and outdoor wind regime porch connects vertical tube.
The opening shape of described outdoor wind regime entrance and opening shape and the size of size and vertical tube match, and in the warm-air drier air inlet that the shape of conversion equipment air outlet is connected with it with size and on-hook, the size of corresponding tubular wine wheel matches.
Described vertical tube is pipe, ellipse or the rectangular tube of inner hollow, and horizontal cavity shell is the body matching with warm-air drier air inlet, and the cross section of horizontal cavity shell is bell mouth shape.
Compared with prior art, the beneficial effect that the utility model has is:
1, adopt wind regime conversion equipment simple in structure, reasonable in design, can realize the light conversion between different wind regimes: adopt vertical tube and the vertical structural design communicating of transverse tube, and the air inlet end of horizontal cavity shell both sides and vertical tube arranges respectively corresponding headstock gear, realize the control respectively of each outlet, and the open/close states of vertical tube is contrary with the open/close states of horizontal cavity shell two ends outlet, can form cleverly two kinds of gas circuit runners that are independent of each other; Each air intake place is provided with corresponding headstock gear, control separately respectively, by control system, open or close as required, realize and utilize solar energy or electric energy to heat room air, open or close more convenient, quick, the conversion between different gas circuits is more flexible.
2, solar thermal collector reasonable in design, Heat-collecting effect are remarkable: cavate punching hole type heat collector, by a plurality of dividing plates are set, increased the independent cavity in casing, increased the distance of circulation of air, force air in casing, to do some stops more, route according to prior setting progressively circulates, final discharge, avoided selecting nearest flow route because of air and flowed out the phenomenon that causes heat loss, effectively extended the time of contact of air and collecting plate, improve collecting efficiency, reduced significantly heat loss.
Accompanying drawing explanation
Fig. 1 is cavate air channel solar air heat collection supply air system structural representation.
Fig. 2 is cavate air channel punching solar energy air heat collector side view cross-sectional schematic.
Fig. 3 is wind regime conversion equipment and the indoor on-hook annexation of warm-air drier schematic diagram.
Fig. 4 is wind regime conversion device structure front view schematic diagram.
Fig. 5 is the indoor on-hook axonometric drawing of warm-air drier schematic diagram.
Wherein: 1, heat collector air inlet 2, air filter 3, cavate air channel punching solar energy air heat collector 4, heat collector air outlet 5, overtemperature protection exhaust outlet 6, air channel tube connector 7, wind regime conversion equipment 8, the indoor on-hook 9 of warm-air drier, tubular wine wheel 10, fan heater air outlet 11, casing 12, heat-insulation layer 13, base plate 14, backboard 15, collecting plate 16, dividing plate 17, punching 18, euphotic cover plate 19, light-passing board 20, outdoor wind headstock gear 21, vertical tube 22, horizontal cavity shell 23, left side headstock gear 24, right side headstock gear 25, warm-air drier air inlet 26, conversion equipment air outlet 27, outdoor wind regime entrance.
The specific embodiment
Fig. 1 ~ 5th, most preferred embodiment of the present utility model, is described further below in conjunction with 1 ~ 5 pair of the utility model of accompanying drawing.
With reference to accompanying drawing 1 ~ 5: this cavate air channel solar air heat collection supply air system, comprise the indoor on-hook 8 of solar energy air heat collector and warm-air drier, solar energy air heat collector and wind regime conversion equipment, the heat collector air outlet 4 of solar energy air heat collector connects warm-air drier air inlet 25, between heat collector air outlet 4 and warm-air drier air inlet 25, is provided with wind regime conversion equipment.
Solar energy air heat collector is cavate air channel punching solar energy air heat collector 3, one deck base plate 13 that cavate air channel punching solar energy air heat collector 3 comprises casing 11, be laid on heat-insulation layer 12 on casing 11 inwalls, lay on heat-insulation layer 12 and be arranged on heat collector air inlet 1 and the heat collector air outlet 4 on casing 11.Casing 11 comprises frame and backboard 14, and be the housing of a lateral opening, the one side of Chaoyang is opening surface, euphotic cover plate 18 is installed on opening surface, in the casing at euphotic cover plate 18 rears, be provided with light-passing board 19, light-passing board 19 be arranged in parallel with euphotic cover plate 18, and euphotic cover plate 18 and light-passing board 19 adopt the materials such as armorplate glass, hollow plate glass, sunlight board or cellular board to make, and adopts the frame for installing of sealing joint strip sealing and casing 11.Casing 11 inwalls are equipped with heat-insulation layer 12, and heat-insulation layer 12 upper surfaces are laid layer of metal base plate 13.
In casing 11, be provided with the collecting plate 15 that casing 11 inner chambers is divided into two-layer cavity, and every layer of cavity is divided into a plurality of independent cavities by a plurality of dividing plates 8, collecting plate 15 is provided with punching 17, between a plurality of independent cavities, by punching 17, is communicated with and is formed continuous circulation of air cavity.Collecting plate 15, for to be arranged on the partition panel in casing 11, is a monoblock flat board, triangle flap or wave-shape board.Collecting plate 15 becomes two chambeies of front chamber and rear chamber by casing 11 interior separations, in inside, two chambeies, arrange respectively and the vertically disposed dividing plate 16 of collecting plate 15, dividing plate 16 is L shaped, T shape or Z-shaped setting, and seal fixing or employing welding by sealing joint strip, riveted joint is fixing, by dividing plate 16, a plurality of independent cavities will be divided into respectively in former and later two chambeies, and on collecting plate 15, be provided with punching 17, punching 17 is clear opening or oblique through hole, the cross section of punching 17 is circular, oval, rectangle or rhombus, oblique impact seam Kongzui is good, one time punching molded, between a plurality of independent cavities, by punching 17, be connected successively, form continuous snakelike circulation of air back-haul.
The heat collector air inlet 1 of casing 11 is arranged on rear chamber top; heat collector air outlet 4 is arranged on the bottom of casing 11 rear chamber; and heat collector air inlet 1 place is provided with air filter 2; heat collector air outlet 4 one sides are provided with headstock gear and overtemperature protection exhaust outlet 5, and dividing plate 16 quantity in rear chamber are more than the quantity of the dividing plate 16 in front chamber.
If heat collector air inlet 1 is arranged on front chamber top, heat collector air outlet 4 is arranged on the bottom of front chamber, and 16 quantity of the dividing plate in front chamber should be more than the quantity of the dividing plate 16 in rear chamber.
Collecting plate 15 also can be the monoblock triangle flap that continuous bending arranges, and casing 11 interior separations are become to two chambeies of front chamber and rear chamber.
Collecting plate 15 can also be the triangle flap vertically arranging, it is the continuous flap of a monoblock, each break of triangle flap is fixedly connected with light-passing board 19 or base plate 13, and by collecting plate 15, casing 11 inside being separated into a plurality of longitudinal sections is from top to bottom leg-of-mutton strip circulation of air cavity.Heat collector air outlet 4 is arranged on bottom one side of casing 11, and heat collector air outlet 4 is arranged on casing 11 top one sides.
Wind regime conversion equipment comprises and being interconnected and vertically disposed horizontal horizontal cavity shell 22 and vertical tube 21, vertical tube 21 one end are communicated with horizontal cavity shell 22, the other end is provided with outdoor wind headstock gear 20, outdoor wind headstock gear 20 is connected with heat collector air outlet 4 by air channel tube connector 6, and horizontal cavity shell 22 both ends open places, left and right are respectively equipped with left side headstock gear 23 and right side headstock gear 24.Pipe or rectangular tube that vertical tube 21 is inner hollow, horizontal cavity shell 22 is the body matching with warm-air drier air inlet 25, the cross section of horizontal cavity shell 22 is bell mouth shape.Vertical tube 21 is vertically mounted on a side or the top at horizontal cavity shell 22 middle parts, and horizontal cavity shell 22 middle part one sides have outdoor wind regime entrance 27, and middle part opposite side correspondence has conversion equipment air outlet 26, and outdoor wind regime entrance 27 places connect vertical tube 21.
Opening shape and the size of the opening shape of outdoor wind regime entrance 27 and size and vertical tube 21 match, and in the warm-air drier air inlet 25 that the shape of conversion equipment air outlet 26 is connected with it with size and on-hook, the size of corresponding tubular wine wheel 9 matches.
The course of work is as follows: during the work of this cavate air channel solar air heat collection supply air system, be divided into two kinds of source of the gas patterns of outdoor wind and indoor wind, when using the warm braw of outdoor solar energy heating, first close left side headstock gear 23 and the right side headstock gear 24 at horizontal cavity shell 22 two ends, left and right, open the outdoor wind headstock gear 20 of vertical tube 21 opening parts; Then by cavate air channel punching solar energy air heat collector 3, utilize solar energy to carry out thermal-arrest to outdoor air, outdoor air enters in first independent cavity of rear chamber by heat collector air inlet 1 and air filter 2, then by the punching 17 on collecting plate 15 enter its top opposite position front chamber in first independent cavity, by that analogy, air is according to the continuous flow route that detours of setting, be snakelike each independent cavity of walking around rear chamber and front chamber, finally from heat collector heat collector air outlet 4, discharge casing 11.Warm braw after solar energy heating enters vertical tube 21 opening parts on wind regime conversion equipment top by air channel tube connector 6, outdoor warm braw passes through outdoor wind regime entrance 27, conversion equipment air outlet 26 and tubular wine wheel 9 successively, enter the indoor on-hook 8 of warm-air drier, finally by fan heater air outlet 10, drain into indoor.Also can room air be connected with solar thermal collector air inlet 1 by pipeline, realize room air through the circulating-heating of solar thermal collector, to improve heating effect.
When the outdoor sun bad and need to use in electrical heating heating clamber wind time, close chamber's exogenous wind headstock gear 20, open left side headstock gear 23 and right side headstock gear 24 simultaneously, indoor wind enters the inner chamber of the indoor on-hook 8 of warm-air drier by the opening part at horizontal cavity shell 22 two ends, left and right, the tubular wine wheel 9 of flowing through, after electric heater unit heating, finally by fan heater air outlet 10, drain into indoor.
The indoor on-hook 8 of warm-air drier of the present utility model can be to have two functions processed, the i.e. indoor on-hook of the air-conditioner of refrigeration and heat-production functions, all designs at other are constant, according to jockey of the present utility model, shell is transformed a little, just can with air-conditioning combination, top the design of the air inlet of wall-hung indoor unit of air conditioner at its housing, this solar energy hot blast heating supply air system connection transfer device is arranged on to the air inlet place, top of air-conditioning indoor hanging unit, conversion as the wind regime of different heating mode, is applied in solar energy heating function in air-conditioning.
The above, it is only preferred embodiment of the present utility model, be not the utility model to be done to the restriction of other form, any those skilled in the art may utilize the technology contents of above-mentioned announcement to be changed or be modified as the equivalent embodiment of equivalent variations.But every technical solutions of the utility model content that do not depart from, any simple modification, equivalent variations and the remodeling above embodiment done according to technical spirit of the present utility model, still belong to the protection domain of technical solutions of the utility model.

Claims (10)

1. cavate air channel solar air heat collection supply air system, comprise the indoor on-hook of solar energy air heat collector and warm-air drier (8), the heat collector air outlet (4) of solar energy air heat collector connects warm-air drier air inlet (25), it is characterized in that: between described heat collector air outlet (4) and warm-air drier air inlet (25), set up wind regime conversion equipment.
2. cavate according to claim 1 air channel solar air heat collection supply air system, it is characterized in that: described solar energy air heat collector is cavate air channel punching solar energy air heat collector (3), cavate air channel punching solar energy air heat collector (3) comprises casing (11), be laid on the heat-insulation layer (12) on casing (11) inwall, the upper one deck base plate (13) laid of heat-insulation layer (12), and be arranged on heat collector air inlet (1) and the heat collector air outlet (4) on casing (11), on the opening surface of casing (11) Chaoyang, euphotic cover plate (18) is installed, in casing (11), be provided with the collecting plate (15) that casing (11) inner chamber is divided into two-layer cavity, and every layer of cavity is divided into a plurality of independent cavities by a plurality of dividing plates (8), collecting plate (15) is provided with punching (17), between a plurality of independent cavities, by punching (17), be communicated with and form continuous circulation of air cavity.
3. cavate according to claim 2 air channel solar air heat collection supply air system, it is characterized in that: described collecting plate (15) is for being arranged on the partition panel in casing (11), by collecting plate (15), casing (11) is separated into former and later two chambers, in former and later two chambers, be respectively equipped with and the vertically disposed dividing plate of collecting plate (15) (16), by dividing plate (16), will in front chamber and rear chamber, be divided into a plurality of independent cavities respectively.
4. cavate according to claim 3 air channel solar air heat collection supply air system, is characterized in that: described collecting plate (15) is flat board, triangle flap or wave-shape board.
5. cavate according to claim 2 air channel solar air heat collection supply air system, it is characterized in that: described collecting plate (15) is for being longitudinally arranged on the continuous triangle flap in casing (11), each break of triangle flap is fixedly connected with light-passing board (19) or the base plate (13) of its upside, and by triangle flap, casing (11) inside being separated into a plurality of longitudinal sections is from top to bottom leg-of-mutton strip circulation of air cavity.
6. cavate according to claim 2 air channel solar air heat collection supply air system, it is characterized in that: in the casing (11) at described euphotic cover plate (18) rear, be longitudinally provided with light-passing board (19), light-passing board (19) be arranged in parallel with euphotic cover plate (18).
7. cavate according to claim 1 air channel solar air heat collection supply air system, it is characterized in that: described wind regime conversion equipment comprises and being interconnected and vertically disposed horizontal horizontal cavity shell (22) and vertical tube (21), vertical tube (21) one end is communicated with horizontal cavity shell (22), the other end is provided with outdoor wind headstock gear (20), outdoor wind headstock gear (20) is connected with heat collector air outlet (4) by air channel tube connector (6), and both ends open place, horizontal cavity shell (22) left and right is respectively equipped with left side headstock gear (23) and right side headstock gear (24).
8. cavate according to claim 7 air channel solar air heat collection supply air system, it is characterized in that: described vertical tube (21) is vertically mounted on a side or the top at horizontal cavity shell (22) middle part, described horizontal cavity shell (22) middle part one side has outdoor wind regime entrance (27), middle part opposite side correspondence has conversion equipment air outlet (26), and outdoor wind regime entrance (27) locates to connect vertical tube (21).
9. cavate according to claim 8 air channel solar air heat collection supply air system, it is characterized in that: opening shape and the size of the opening shape of described outdoor wind regime entrance (27) and size and vertical tube (21) match, in the warm-air drier air inlet (25) that the shape of conversion equipment air outlet (26) is connected with it with size and on-hook, the size of corresponding tubular wine wheel (9) matches.
10. according to the cavate air channel solar air heat collection supply air system described in claim 7 or 8, it is characterized in that: described vertical tube (21) is the pipe of inner hollow, elliptical tube or rectangular tube, horizontal cavity shell (22) is the empty capsid matching with warm-air drier air inlet (25), and the cross section of horizontal cavity shell (22) is bell mouth shape.
CN201320518956.1U 2013-08-24 2013-08-24 Cavity type air flue solar air heat-collection and air supply system Expired - Fee Related CN203550024U (en)

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Application Number Priority Date Filing Date Title
CN201320518956.1U CN203550024U (en) 2013-08-24 2013-08-24 Cavity type air flue solar air heat-collection and air supply system

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Application Number Priority Date Filing Date Title
CN201320518956.1U CN203550024U (en) 2013-08-24 2013-08-24 Cavity type air flue solar air heat-collection and air supply system

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103398416A (en) * 2013-08-24 2013-11-20 张勇 Cavity type air flue solar air heat-collection and air supply system
CN109899948A (en) * 2019-04-17 2019-06-18 河南日昇源集成科技有限公司 Inner-outer circulation converts connector and solar energy sky warm wind air-conditioning system

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103398416A (en) * 2013-08-24 2013-11-20 张勇 Cavity type air flue solar air heat-collection and air supply system
CN109899948A (en) * 2019-04-17 2019-06-18 河南日昇源集成科技有限公司 Inner-outer circulation converts connector and solar energy sky warm wind air-conditioning system
CN109899948B (en) * 2019-04-17 2024-04-05 山东日昇源科技有限公司 Internal and external circulation conversion connecting piece and solar air heating air conditioning system

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140416

Termination date: 20180824

CF01 Termination of patent right due to non-payment of annual fee