CN1637218A - Solar energy system house - Google Patents

Solar energy system house Download PDF

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Publication number
CN1637218A
CN1637218A CNA2004100310733A CN200410031073A CN1637218A CN 1637218 A CN1637218 A CN 1637218A CN A2004100310733 A CNA2004100310733 A CN A2004100310733A CN 200410031073 A CN200410031073 A CN 200410031073A CN 1637218 A CN1637218 A CN 1637218A
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CN
China
Prior art keywords
solar energy
roof
air
operation panel
house
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Granted
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CNA2004100310733A
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Chinese (zh)
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CN1637218B (en
Inventor
铃木真弘
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Om Solar Association Co ltd
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Om Solar Association Co ltd
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Publication of CN1637218A publication Critical patent/CN1637218A/en
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Publication of CN1637218B publication Critical patent/CN1637218B/en
Anticipated expiration legal-status Critical
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S20/00Solar heat collectors specially adapted for particular uses or environments
    • F24S20/60Solar heat collectors integrated in fixed constructions, e.g. in buildings
    • F24S20/67Solar heat collectors integrated in fixed constructions, e.g. in buildings in the form of roof constructions
    • 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
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A30/00Adapting or protecting infrastructure or their operation
    • Y02A30/60Planning or developing urban green infrastructure
    • 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
    • Y02B10/20Solar thermal
    • 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

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Sustainable Energy (AREA)
  • Thermal Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Building Environments (AREA)

Abstract

To eliminate factors of temperature rise in a room, secure confortable environment in a house, improve workability in the case of placing a handling box outdoor and improve water-proof property as a roof. A solar system house consists of a solar heat collection part, and a structure for feeding hot air heat-collected by the solar heat collection part into a room. The solar heat collection part has an air passage 2 having the same slope as a roof just below a roof panel 1. As to the structure for feeding the hot air into the room, a wing duct 4 for heat collection is provided on the roof and a flow passage switch damper 8 for switching communication to a downward duct 10 for feeding the air into the room and a exhaustion port 24 for exhausting the air outside and the handling box 5 with a heat collection fan 7 provided inside are installed on the roof next to the wing duct 4. In addition, the downward duct 10 is connected to the handling box 5.

Description

The solar energy system house
Technical field
The present invention relates to a kind of solar energy system house, it utilizes solar energy, utilizes the air that warms because of the sun to realize purposes such as heating.
Background technology
One of mankind's activity result's CO 2Increase jeopardized earth environment itself now, and the situation of technological development before the 1980s after half section oil crisis the thing followed just stay cool after the prosperous phase always.
At present, what developed country should do is to find out when not reducing living standard, seeking to improve the quality of living the method for reduction carrying capacity of environment.At this, what seek is to build not only to tackle wind and other meteorological condition flexibly, and can tackle the dwelling house and the building of external environment condition flexibly, the most reasonably utilizes solar energy, to be used for indoor heating, refrigeration, ventilation, dehumidifying and hot water supply.
Refer to residential environment, with regard to the type of utilizing solar energy, the ability of swimming solar energy system of popularizing can't be tackled antifreeze, anti-problem of leaking, prolonging service life etc. and need badly improvement.
With regard to the method for measurement of solar energy utilization, have: establish a big opening in the dwelling house south, obtain the sunshine in winter in a large number, then open its part summer, ventilates.For utilizing the energy of cleaning fully, further develop out the air type solar energy system that is disclosed in the following patent documentation on this basis.
Patent documentation 1: TOHKEMY 2002-235955 communique;
Patent documentation 2: the U.S. 5,849, No. 107 patent gazettes.
In above-mentioned air type solar energy system, the solar energy system house has the roof of inclination, and it is by using roofing slab surface aggregation solar energy, is used to heat the floor, supplies with application such as hot water.
As shown in Figure 6, the roof under the roofing slab 1 that can be heated by the parts of metal systems such as colored iron plate, watt system or other material, forms the air flow circuit 2 with roof slope for assembling the part of solar energy.The downside of this air flow circuit 2 covers for thermal insulation, and an end of this air flow circuit 2, and opening is arranged at the inferior place of eaves, as air intlet 3.
In addition, the other end of air flow circuit 2 is positioned at the eminence on roof, forms air outflow port 31, has conduit 32 to be connected with it, and is communicated with the crossbeam pipe 4 that is used as heat collecting pipeline.
Above-mentioned crossbeam pipe 4 is the crossbeam pipe 4 that is formed by thermal insulation material, and it is located at indoor, for example is located in the little loft 29 as the house overhead.The shape of crossbeam pipe 4 also can be semicircular pipe except illustrated round tube, or rectangular tube, triangular pipe.
As shown in the figure, realize the accumulation of heat of the solar energy assembled, the part of heat release by the roof of thermal-arrest part with aforesaid solar energy, with accumulation of heat concrete slab 11 as heat storage under the floor.For this reason, between accumulation of heat concrete slab 11 and floor 12, be provided with circulation of air space 13, and be provided with from this circulation of air space 13 to indoor floor ventilation mouth 14.
In addition, as the member of part of connect assembling solar energy and the part of accumulating, discharge solar energy, realize that operation panel 5 that air-supply is controlled is located in the little loft 29 as the house overhead.
In the middle of this operation panel 5 makes thermal-arrest built-in with the fan case of fan 7 and is positioned at, about be provided with and be built-in with the air that will gather heat in the wind downside and switch the damper box that stream to indoor or outdoors switches the damper box of air door 8 and is built-in with the anti counter-flowing air door 6 that is used for anti counter-flowing at the wind upside.
And, the end of outflow side that the stream of operation panel 5 switches air door 8 by stack 9 at the outdoor opening that forms.
In addition, the opening 5a with the inflow side of the anti counter-flowing air door 6 of operation panel 5 is communicated with above-mentioned crossbeam pipe 4 through conduit 32, and the other end that stream is switched the outflow side of air door 8 links to each other with the upper end of down drop riser 10.
The lower ending opening of down drop riser 10 is in accumulation of heat concrete slab 11 that is used as heat storage under the floor and the circulation of air space 13 between the floor 12.
Inside at operation panel 5, for example be built-in with the inside of thermal-arrest with the fan case of fan 7, hot-water coil pipe 15 is set, this hot-water coil pipe 15 is connected with circulation pump 19 with boiler 17 by circulation coil pipe 16, in the way that flows to this boiler 17, be provided with concurrent heating with hot water supply boiler 18, link to each other with the hot water upper hose 21 that is being connected bathroom, lavatory, kitchen.
Utilize sunshine and 1 pair of extraneous gas that flows into air flow circuit 2 of the roofing slab of heated metal board heats, this heated air rises along roof slope.
Then, behind crossbeam pipe 4, enter operation panel 5 with fan 7, set out, in down drop riser 10, flow down, enter the circulation of air space 13 between accumulation of heat concrete slab 11 and the floor 12 by operation panel 5 through thermal-arrest at this heating air accumulation.
In circulation of air space 13, add hot air play through the floor 12 directly to the floor below heat, in accumulation of heat concrete slab 11 accumulation of heat and from floor ventilation mouth 14 directly to indoor 3 kinds of heating effects that blow warm braw.
On the other hand, utilize 15 pairs of hot-water coil pipes to utilize circulation pump 19 inputs heat transfer medium so far to heat by boiler 17 through circulation coil pipe 16, put aside in boiler 17 as hot water, and then thus as required, heat again with hot water supply boiler 18 by concurrent heating, supply with hot water to each position from hot water upper hose 21.
Summary of the invention
As mentioned above, operation panel 5 is located in the little loft 29 as the house overhead, is that hot gas row that media will be by operation panel 5 is to outdoor with the stack 9 that passes little loft 29.
The frequent like this behavior of the carrying out exhaust many seasons that need not heat in summer etc., and when summer, the heat-collecting temperature height, when the high temperature air of having assembled heat by the time, then be positioned at 5 heating of indoor operation panel, finally cause interior temperature to rise.
In addition, when when increasing newly, rebuilding etc., solar energy system being set, because that operation panel 5 is located at is indoor, so morely need to handle improvement such as settings, pipeline construction and construct.
In addition, as described in the prior art, when operation panel 5 is positioned at when indoor, when producing hot water leakage etc., can cause indoor house breakage because of the breakage of hot-water coil pipe 15 grades.
The object of the present invention is to provide a kind of solar energy system house, this solar energy system house can solve the rough sledding among the existing embodiment, the factor that elimination causes interior temperature to rise can be guaranteed a home from home in the dwelling house, and, can improve operation panel and be located at application property when outdoor, improve the water proofing property on roof, and construct and also can on the roof, finish, therefore, simple, the breakage of hot-water coil pipe etc. can not impact indoor yet.
The described invention in the present invention the 1st aspect for achieving the above object, the 1st main points are: the structure that has solar energy heating portion and assembled the warm air of heat to indoor conveying by described solar energy heating portion; Solar energy heating portion forms the air flow circuit part that has with the identical gradient in roof under roofing slab; As structure to indoor conveying warm air, the thermal-arrest pipeline is set on the roof, switch air door with switching to the down drop riser of indoor conveying and the stream of the connection between the exhaust opening of outdoor discharging, and built-in thermal-arrest is connected with pipeline with above-mentioned thermal-arrest with the operation panel of fan, and be arranged on the roof, and above-mentioned down drop riser links to each other with operation panel.
According to the described invention in above-mentioned the 1st aspect,, therefore,, do not cause that interior temperature rises even when this operation panel partly is heated because operation panel is located on the outdoor roof yet.And, because operation panel links to each other with pipeline with thermal-arrest on being located at the roof, do not need to be used to connect the pipeline of thermal-arrest with pipeline yet, can simplify construction, raising aesthetic appearance.And, form one by so making thermal-arrest with pipeline and operation panel, with regard to defeasible existing anti counter-flowing air door.
The present invention at first has the feature by the roof thermal-arrest.Solar energy is characterised in that " rare, wide, even " as energy., not towards large-scale centralized power generation as the heat of high temperature of the heat that obtains by oil for concentrating.That is, what the utilization of solar energy was the most real is that each building utilizes its " roof " separately, and this conforms to energy institute tool feature.At this, solar energy system of the present invention house is to utilize " roof " that receive solar radiation the most widely to assemble solar energy, and it is got access to invention in the building.
The height of the building of region has strict restriction, even so, under the indoor situation that can't obtain sunshine, still has abundant solar energy to trickle down on most of " roof ".That is, above-mentioned utilization has been added new " adopting heat " function again on the function of original " refuge " of hiding wind and rain in roof.
Secondly, the present invention is also by the air transfer of heat.When heat gets access to when indoor, what extensively adopt is to utilize water to realize shifting the method for exchange.Solar energy system of the present invention house is water not, but " air " heated and it is obtained.Its reason is that the water thermal-arrest has a lot of difficulties.The water thermal-arrest has the reason of a lot of difficulties, can enumerate: must be connect that a water can not leak, solar energy usually makes the water boiling, must can tolerate this boiling vapour pressure, produce freeze phenomenon and pipeline and produce the contraction etc. of expanding.Otherwise, with regard to air,, what is not worried yet even there is small leakage can not cause what trouble to whom.In addition, because air is a gas, boiling can not be arranged.For this reason, using air is to make us very much relieved.
The main points of the present invention's described invention in the 2nd aspect are that thermal-arrest forms outdoor crossbeam pipe with pipeline.
The described invention in the 2nd aspect according to the present invention, because the pipeline as heat-collecting box is the pipeline of being located on the outdoor roof, so can be in the roof construction stage, carry out the piping erection construction from the outside, even the building for the structure of the big beam space that can not fully obtain the house top layer still can be provided with pipeline.And, owing to form outdoor crossbeam pipe, thus can the pipeline that be used as this heat-collecting box be set in the highest thermal-arrest position, can be with very high efficient thermal-arrest, in addition, can pipeline be set not taking under the situation that the place is set.
When the crossbeam pipe is located in the operation panel,, can reduce the resistance of ducting with regard to not carrying out the necessity of air inlet pipe construction.
The main points of the present invention's described invention in the 3rd aspect are, directly to the outside atmosphere opening, constitute exhaust opening by the exhaust chamber that is formed at operation panel.
The described invention in the 3rd aspect according to the present invention, because of exhaust chamber is arranged in the operation panel, thus do not carry out the necessity of stack construction, in addition, because exhaust chamber and exhaust opening are set in operation panel, so can reduce resistance to outdoor emission gases.
The main points of the present invention's described invention in the 4th aspect are, are provided with hot-water coil pipe in the operation panel, and this hot-water coil pipe is linked to each other with boiler or heating water boiler by the circulation coil pipe.
The described invention in the 4th aspect according to the present invention, because of hot-water coil pipe is located in the operation panel, so hot-water coil pipe also can be located on the roof, the waste heat of hot-water coil pipe can not cause interior temperature to rise yet.
As mentioned above, the factor that causes interior temperature to rise can be eliminated in solar energy system of the present invention house, guarantees a home from home of dwelling house, and, can improve operation panel and be located at application property when outdoor, can improve the water proofing property on roof.
Description of drawings
Fig. 1 is the vertical section elevation of a kind of embodiment in solar energy system of the present invention house;
Fig. 2 is the vertical section elevation of major part of a kind of embodiment in solar energy system of the present invention house;
Fig. 3 is the stereogram of major part of a kind of embodiment in solar energy system of the present invention house;
Fig. 4 is the vertical view on roof of a kind of embodiment in solar energy system of the present invention house;
Fig. 5 is each routine schematic diagram of down drop riser lower end;
Fig. 6 is the vertical section lateral view of the prior art example in solar energy system house.
Symbol description:
1 roofing slab; 2 air flow circuits; 3 air intlets; 4 crossbeam pipes; 5 operation panels; The 5a opening; 6 anti counter-flowing air doors; 7 thermal-arrest fans; 8 streams switch air door; 9 stacks; 10 down drop risers; 11 accumulation of heat concrete slabs; 12 floors; 13 circulation of air spaces; 14 floor ventilation mouths; 15 hot-water coil pipes; 16 circulation coil pipes; 17 boilers; 18 hot water supply boilers; 19 circulation pumps; 21 hot water upper hoses; 22 glass; 23 solar cells; 24 exhaust openings; 25 crossbeam bobbin carriages; 26 fan cases; 27 damper boxes; 28 exhaust chambers; 29 little lofts; 31 air outflow ports; 32 pipelines; 42 ventilation openings.
The specific embodiment
Below with reference to the accompanying drawings, describe embodiments of the present invention in detail.Fig. 1 is the vertical section elevation of a kind of embodiment in solar energy system of the present invention house, Fig. 2 is the vertical section elevation of the major part of above-mentioned embodiment, Fig. 3 is the vertical section elevation of the major part of above-mentioned embodiment, Fig. 4 is the vertical view on roof, the identical structure member of Fig. 6 with the above-mentioned prior art example of expression adopts same schematic symbols.
Also the same with the prior art roof with inclination, solar energy system of the present invention house by using roofing slab surface aggregation solar energy, is used for application such as floor heating, hot water supply.
As the roof of the thermal-arrest portion of solar energy, under the roofing slab 1 that can heat, form air flow circuit 2 with roof slope by the parts of metal systems such as colored iron plate, watt system or other material.These air flow circuit 2 downsides cover for thermal insulation, and an end of this air flow circuit 2, and opening is arranged at the inferior place of eaves, as air intlet 3.
Part on the roofing slab 1 is covered by glass 22, and this part is as the heat collection glass unit, guarantees that it is the zone that rings of wind-engaging rain shadow not.
In addition, the other end of air flow circuit 2 is positioned at the eminence on roof, forms air outflow port 31, is communicated with the crossbeam pipe 4 that is used as heat collecting pipeline on being located at the roof through this air outflow port 31.
This crossbeam pipe 4 is the pipeline that is formed by thermal insulation material, and it is provided with along the crossbeam portion on roof, is located at and forms on the face of the relative side of deck (for example, southern side face) of above-mentioned air flow circuit 2.
In addition, the roof is provided with solar cell 23.
On the other hand, as shown in the figure, realize the accumulation of heat of the solar energy assembled, the part of heat release by the roof of thermal-arrest part with aforesaid solar energy, with accumulation of heat concrete slab 11 as heat storage under the floor.For this reason, between accumulation of heat concrete slab 11 and floor 12, be provided with circulation of air space 13, and be provided with from this circulation of air space 13 to indoor floor ventilation mouth 14.
Also have,, discharge the member of the part of solar energy, realize that the operation panel 5 of air-supply control links to each other with above-mentioned crossbeam pipe 4, be located on the roof as connecting the part of assembling solar energy and accumulating.
Pass between this crossbeam pipe 4 and the operation panel 5 is: in operation panel 5, form crossbeam bobbin carriage 25, this crossbeam bobbin carriage 25 constitutes the part of crossbeam pipe 4.
This operation panel 5 is on above-mentioned crossbeam bobbin carriage 25, then formed thermal-arrest built-in with the fan case 26 of fan 7, the wind downside is built-in with the air switching that will gather heat and switches the damper box 27 of air door 8 and the exhaust chamber 28 that the side is provided with exhaust opening 24 to the stream of indoor or outdoors.This exhaust opening 24 is that operation panel 5 is at outdoor direct opening.
And the end that stream switches the outflow side of air door 8 links to each other with the upper end of down drop riser 10.
The lower ending opening of down drop riser 10 is in accumulation of heat concrete slab 11 that is used as heat storage under the floor and the circulation of air space 13 between the floor 12.
Inside at operation panel 5, for example be built-in with the inside of thermal-arrest with the fan case 26 of fan 7, be provided with hot-water coil pipe 15, this hot-water coil pipe 15 is connected with circulation pump 19 with boiler 17 by circulation coil pipe 16, in the way that flows to this boiler 17, as required, be provided with concurrent heating, link to each other with the hot water upper hose 21 that is being connected bathroom, lavatory, kitchen with hot water supply boiler (not shown).
Utilize sunshine and 1 pair of extraneous gas that flows into air flow circuit 2 of the roofing slab of heated metal board heats, this heated air rises along roof slope.
Then, behind crossbeam pipe 4, enter operation panel 5 with fan 7, in down drop riser 10, flow down, enter the circulation of air space 13 between accumulation of heat concrete slab 11 and the floor 12 by operation panel 5 through thermal-arrest at this heating air accumulation.
In this circulation of air space 13, add hot air play through the floor 12 directly to the floor below heat, in accumulation of heat concrete slab 11 accumulation of heat and from floor ventilation mouth 14 directly to indoor 3 kinds of heating effects that blow warm braw.
On the other hand, in hot-water coil pipe 15, to heating by the heat transfer medium that boiler 17 utilizes circulation pump 19 to send into through circulation coil pipe 16, put aside in boiler 17 as hot water, and then thus as required, heat again with the hot water supply boiler by concurrent heating, supply with hot water to each position from hot water upper hose 21.
In addition, in the season that when high temperature such as summer, need not heat,, and discard by the adding hot air and need all be discharged in the outside atmosphere of roofing slab 1 heating.
At this moment, close down drop riser 10 1 sides as outflow side one side when utilizing stream to switch air door 8, when opening outflow side the opposing party's exhaust chamber 28 1 sides, then add hot air by operation panel 5 through exhaust opening 24 rows of exhaust chamber 28 to outdoor.In addition, hot-water coil pipe 15 is heated by coming from operation panel 5, therefore,, still can guarantee by utilizing solar energy to obtain hot water even when high temperature such as summer owing to add the hot air utilization.
In addition, can also be at night in summer, thermal-arrest is turned round with fan 7, with the cold air at night get access to metal system roofing slab 1 under air flow circuit 2 in, and the radiation cooling from deck is also played a role, this air is sent into the circulation of air space between the heat storage and floor 12 under the floor through down drop riser 10, make accumulation of heat concrete slab 11 cold-storages as heat storage under the floor.
Also can shown in another embodiment of Fig. 5 (c), near the lower end of down drop riser 10, be provided with towards indoor direct ventilation opening 41.In addition, also can in this ventilation opening 41 the switching valve be set, realize freely openable, this situation is omitted diagram.
Shown in also can the another embodiment shown in Fig. 5 (b), down drop riser 10 is 12 lower opening on the floor not, and only be provided with near the above-mentioned lower end towards indoor direct ventilation opening 41.Since in the embodiment of this Fig. 5 (b), not by the below, floor, but directly to the indoor warm braw that blows, so be fit within a short period of time a specific room be carried out heat supply.

Claims (4)

1. a solar energy system house is characterized in that,
The structure that has solar energy heating portion and assembled the warm air of heat by described solar energy heating portion to indoor conveying,
Described solar energy heating portion is positioned under the roofing slab, form and have and the air flow circuit part of the identical gradient in roof,
As structure to indoor conveying warm air, the thermal-arrest pipeline is set on the roof, switch air door with switching to the down drop riser of indoor conveying and the stream of the connection between the exhaust opening of outdoor discharging, and built-in thermal-arrest is connected with pipeline with above-mentioned thermal-arrest with the operation panel of fan, and be arranged on the roof
And described down drop riser links to each other with operation panel.
2. solar energy system as claimed in claim 1 house is characterized in that, thermal-arrest forms outdoor crossbeam pipe with pipeline.
3. solar energy system as claimed in claim 1 or 2 house is characterized in that, directly to the outside atmosphere opening, constitutes exhaust opening by the exhaust chamber that is formed at operation panel.
4. as each described solar energy system house in the claim 1~3, it is characterized in that be provided with hot-water coil pipe in the operation panel, this hot-water coil pipe is linked to each other with boiler or heating water boiler by the circulation coil pipe.
CN2004100310733A 2003-12-26 2004-04-20 Solar energy system house Expired - Fee Related CN1637218B (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
JP2003432803A JP3848652B2 (en) 2003-12-26 2003-12-26 Solar system house
JP2003-432803 2003-12-26
JP2003432803 2003-12-26

Publications (2)

Publication Number Publication Date
CN1637218A true CN1637218A (en) 2005-07-13
CN1637218B CN1637218B (en) 2010-05-05

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CN2004100310733A Expired - Fee Related CN1637218B (en) 2003-12-26 2004-04-20 Solar energy system house

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CN (1) CN1637218B (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101315206B (en) * 2007-06-01 2010-05-19 韩绍良 Solar heating system
CN104236139A (en) * 2013-06-07 2014-12-24 矢崎能源***公司 Processing unit easily maintained
CN107490199A (en) * 2015-12-16 2017-12-19 青岛智享专利技术开发有限公司 Solar energy heating is from warming oneself factory building
CN115874763A (en) * 2022-12-16 2023-03-31 江苏中森建筑设计有限公司 Heat insulation roof with hot-pressing ventilation structure

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4933748B2 (en) * 2005-06-10 2012-05-16 伸平 友 Solar system
JP4913780B2 (en) * 2008-06-27 2012-04-11 菱重エステート株式会社 Ventilation device and ventilation system
CN101922209B (en) * 2010-06-29 2012-05-23 深圳大学 Building roof with air space

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4967729A (en) * 1989-06-28 1990-11-06 Kabushiki Kaisha Ohem Kenkyujyo Solar-system house
CN1141476C (en) * 2002-04-30 2004-03-10 刘策 Photoelectric and photothermal solar equipment for building

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101315206B (en) * 2007-06-01 2010-05-19 韩绍良 Solar heating system
CN104236139A (en) * 2013-06-07 2014-12-24 矢崎能源***公司 Processing unit easily maintained
CN107490199A (en) * 2015-12-16 2017-12-19 青岛智享专利技术开发有限公司 Solar energy heating is from warming oneself factory building
CN107490199B (en) * 2015-12-16 2019-03-15 青岛智享专利技术开发有限公司 Solar energy heating is from warming oneself workshop
CN115874763A (en) * 2022-12-16 2023-03-31 江苏中森建筑设计有限公司 Heat insulation roof with hot-pressing ventilation structure
CN115874763B (en) * 2022-12-16 2024-06-07 江苏中森建筑设计有限公司 Heat insulation roof with hot-pressing ventilation structure

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Publication number Publication date
CN1637218B (en) 2010-05-05
JP2005188873A (en) 2005-07-14
JP3848652B2 (en) 2006-11-22

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