CN202031441U - Solar window - Google Patents
Solar window Download PDFInfo
- Publication number
- CN202031441U CN202031441U CN2011200969820U CN201120096982U CN202031441U CN 202031441 U CN202031441 U CN 202031441U CN 2011200969820 U CN2011200969820 U CN 2011200969820U CN 201120096982 U CN201120096982 U CN 201120096982U CN 202031441 U CN202031441 U CN 202031441U
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- CN
- China
- Prior art keywords
- pipes
- connects
- incubator
- sash
- pipe
- 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.)
- Expired - Fee Related
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Classifications
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/40—Solar thermal energy, e.g. solar towers
- Y02E10/44—Heat exchange systems
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- Wing Frames And Configurations (AREA)
Abstract
The utility model relates to a solar window, which is characterized in that a lower diaphanous insulation board and an upper diaphanous insulation board are arranged at intervals, and the peripheries of the lower diaphanous insulation board and the upper diaphanous insulation board are sealed by sealing strips, and then the whole is inlaid in a window frame to form a window sash; the lower end of a first pipe penetrates through the left upper side of the window sash and is connected with the left upper side of the window sash; the upper end of the first pipe is connected with a first switching valve in the manner of communicating; the lower end of a second pipe is connected with the first switching valve in the manner of communicating; the upper end of the second pipe penetrates through the lower part of an insulation can and is connected with the lower part of the insulation can; the lower end of a fifth pipe penetrates through the right upper side of the window sash and is connected with the right upper side of the window sash; the upper end of the fifth pipe is connected with a second switching valve, a fourth pipe, a fluid generator and a third pipe in sequence in the manner of communicating; the upper end of the third pipe penetrates through the lower part of the insulation can and is connected with the lower part of the insulation can; the fourth pipe is connected with a water outlet valve in the manner of communicating; the upper part of the insulation can is provided with a vent valve; a heater is arranged in the insulation can; the insulation can is provided with a water inlet valve; a drain valve is arranged at the lower part of the window frame; and the insulation can is located to be higher than the window sash. The solar window has very high cost performance and is easy to popularize.
Description
Technical field
The utility model relates to solar utilization technique, particularly a kind of solar energy window.
Background technology
The Thermo insulating window of existing building, or be double-deck every empty glass, or be with the heat insulation reflecting coated glass.The former can gather sunlight heating and insulation in the winter time, but can't block sunlight heat enter the room and do not utilize solar energy summer; The latter can block sunlight heat enter the room in summer, can also not utilize solar energy, and sunlight is warmed oneself and heat insulating ability is poor and can not fully gather winter, and because the coated glass printing opacity is poor, caused indoor light gloomy.
Summary of the invention
The utility model relates to a kind of solar energy window, overcomes the above-mentioned defective of existing window, can utilize the light and heat of solar energy simultaneously, and heat production water, generating, retaining heat, bright, insulation five get at one stroke.
The utility model is achieved through the following technical solutions.
As shown in Figure 1 and Figure 2.
To descend translucent insulation board 19 (from Fig. 2) and last translucent insulation board 3 (from Fig. 2) interval one distance also to use weather strip 18 sealing on every side, integral body is embedded in and forms sash 1 in the framework 2 then, and following translucent insulation board 19, last translucent insulation board 3, weather strip 18 surround a cavity; The lower end of a pipe 4 penetrates the upper left side of sash 1 and connects with it, the upper end UNICOM of a pipe 4 connects a switch valve 5, the upper end of No. two pipes 7 is passed incubator 6 bottoms and is connected with it, the upper end of No. two pipes 7 is in the top in the incubator 6, and the lower end of No. two pipes 7 connects with the upper end UNICOM of a switch valve 5; The lower end of No. five pipes 16 is passed the upper right side of sash 1 and is connected with it, the lower end of No. five pipes 16 is in the bottom in the sash 1, UNICOM connects No. two switch valves 15, No. four pipes 13, fluid generator 12, No. three pipes 11 successively No. five pipe upper ends of 16, the upper end of No. three pipes 11 penetrates incubator 6 bottoms and connects with it, connects hot water delivery valve 14 at No. four pipe 13 first line of a couplet communications and liaison; The upper plate that the lower end of outlet valve 8 penetrates incubator 6 connects with it; The heater 9 of bottom mounting strap temperature pick up in incubator 6; Water intaking valve 10 connects with the right lower quadrant UNICOM of incubator 6; The lower end of drain valve 17 (from Fig. 2) penetrates the upper right quarter of the top of framework 2 and last translucent insulation board 3 and connects with them; Incubator 6 is inlayed or is hung near on the wall of sash 1 and be in the position that is higher than sash 1.
Open switch valve 5, No. two switch valves 15, water intaking valve 10, cold water is injected incubator 6 and sash 1 from water intaking valve 10, and make in the incubator 6 top leave suitable space.
In spring, summer, autumn, open switch valve 5 No. one, No. two switch valves 15, sunlight sees through sash 1 and adds hot water towards the translucent insulation board of sunny side (promptly descend translucent insulation board 19 or on translucent insulation board 3), heated water reduces to rise because of density, successively from a pipe 4, a switch valve 5, No. two pipes 7, enter the top in the incubator 6, and cool water manages 11 through No. three successively in the incubator 6 under action of gravity, fluid generator 12, No. four pipes 13, No. two switch valves 15, the bottom of No. five pipe 16 inflow sash 1 then is heated rising, enter pipe 4 again No. one, this process constantly circulates.In dirty also impact fluid generator 12 generatings of water of said process.When no solar radiation or described solar energy window environment of living in turned cold, because of the water density in the sash 1 becomes greater than the density of hot water in the incubator 6, described circulation stopped.Because water is poor conductor of heat, at this moment cold water in the sash 1 and the hot water in the incubator 6 is by natural isolation, hot water insulation in incubator 6.When sunlight was arranged, because following translucent insulation board 19 or go up the heat insulating ability of translucent insulation board 3, the heat of the water that is heated by sunlight in the sash 1 had only seldom that a part is delivered to indoor.
When the pressure of the gas of pressurized surpassed limit value in the incubator 6, gas was discharged from outlet valve 8.
In the time of will using hot water, open hot water delivery valve 14 and draw.
In the winter time, close switch valve 5, No. two switch valves 15 earlier, open drain valve 17 again and bleed off water in the sash 1, allow sunlight directly see through down translucent insulation board 19 or to go up translucent insulation board 3 warm indoor.In the winter time, if want to use hot water, just enable heater 9.
The effect that the utility model is useful:
1, described solar energy window, utilize solar energy heat production water, generating in spring, summer, autumn, and the heat back that absorbed most of sunlight of the water in the sash 1 sees through glass and illuminates indoor again, the effect of both having served as retaining hot dip film, do not influence indoor bright again, heat production water, generating, retaining heat, bright, insulation five get at one stroke.Described solar energy window in the winter time, can promptly be adopted thermal recovery light as existing bilayer every empty glass window, again insulation.
2, the house from not window, house life from not geyser, always to spend to pacify window and geyser, take the utility model to count out money (be about existing window and geyser gross investment 10%) more slightly, just can illuminate under the situation and make full use of solar energy not influencing daylighting window and geyser organic assembling.
3, because described solar energy window, need not be expensive solar cell and vacuum tube collector, technology easy, firm and the life-span is long, cost is low; Although the thermal efficiency ratio vacuum tube collector of described solar energy window is more lower slightly, its cost performance is far above the cost performance of existing vacuum tube collector formula solar water heater and solar photocell.
4, present, the solar energy utilization mainly is subjected to solar photocell and heat collector cost height, generating efficiency is low and the restriction of solar photocell life-span weak point.Described solar energy window is not only when window but also can power generating and heating, also insulation, and described solar energy window is made the door or the wall usefulness of different size present dynasty sunny sides, and described solar energy window is played a great role in energy saving building, easily promote, and dissemination is big.
Description of drawings
Fig. 1 is a structural representation of the present utility model;
Fig. 2 analyses and observe view for the A-A of Fig. 1.
The specific embodiment
Embodiment:
As shown in Figure 1 and Figure 2.
To descend translucent insulation board 19 (from Fig. 2) and last translucent insulation board 3 (from Fig. 2) interval one distance also to use weather strip 18 sealing on every side, integral body is embedded in and forms sash 1 in the framework 2 then, and following translucent insulation board 19, last translucent insulation board 3, weather strip 18 surround a cavity; The lower end of a pipe 4 penetrates the upper left side of sash 1 and connects with it, the upper end UNICOM of a pipe 4 connects a switch valve 5, the upper end of No. two pipes 7 is passed incubator 6 bottoms and is connected with it, the upper end of No. two pipes 7 is in the top in the incubator 6, and the lower end of No. two pipes 7 connects with the upper end UNICOM of a switch valve 5; The lower end of No. five pipes 16 is passed the upper right side of sash 1 and is connected with it, the lower end of No. five pipes 16 is in the bottom in the sash 1, UNICOM connects No. two switch valves 15, No. four pipes 13, fluid generator 12, No. three pipes 11 successively No. five pipe upper ends of 16, the upper end of No. three pipes 11 penetrates incubator 6 bottoms and connects with it, connects hot water delivery valve 14 at No. four pipe 13 first line of a couplet communications and liaison; The upper plate that the lower end of outlet valve 8 penetrates incubator 6 connects with it; The heater 9 of bottom mounting strap temperature pick up in incubator 6; Water intaking valve 10 connects with the right lower quadrant UNICOM of incubator 6; The lower end of drain valve 17 (from Fig. 2) penetrates the upper right quarter of the top of framework 2 and last translucent insulation board 3 and connects with them; Incubator 6 is inlayed or is hung near on the wall of sash 1 and be in the position that is higher than sash 1.
Claims (1)
1. solar energy window, it is characterized in that: will descend translucent insulation board (19) and last translucent insulation board (3) interval one distance also to use weather strip (18) sealing on every side, integral body is embedded in and forms sash (1) in the framework (2) then, and following translucent insulation board (19), last translucent insulation board (3), weather strip (18) surround a cavity; The lower end of a pipe (4) penetrates the upper left side of sash (1) and connects with it, the upper end UNICOM of a pipe (4) connects a switch valve (5), the upper end of No. two pipes (7) is passed incubator (6) bottom and is connected with it, the upper end of No. two pipes (7) is in the top in the incubator (6), and the lower end of No. two pipes (7) connects with the upper end UNICOM of a switch valve (5); The lower end of No. five pipes (16) is passed the upper right side of sash (1) and is connected with it, the lower end of No. five pipes (16) is in the bottom in the sash (1), UNICOM connects No. two switch valves (15), No. four pipes (13), fluid generators (12), No. three pipes (11) successively in the upper end of No. five pipes (16), the upper end of No. three pipes (11) penetrates incubator (6) bottom and connects with it, connects hot water delivery valve (14) at No. four pipe (13) first line of a couplet communications and liaison; The upper plate that the lower end of outlet valve (8) penetrates incubator (6) connects with it; The heater (9) of bottom mounting strap temperature pick up in incubator (6); Water intaking valve (10) connects with the right lower quadrant UNICOM of incubator (6); The lower end of drain valve (17) penetrates the upper right quarter of the top of framework (2) and last translucent insulation board (3) and connects with them; Incubator (6) is inlayed or is hung near on the wall of sash (1) and be in the position that is higher than sash (1).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2011200969820U CN202031441U (en) | 2011-04-06 | 2011-04-06 | Solar window |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2011200969820U CN202031441U (en) | 2011-04-06 | 2011-04-06 | Solar window |
Publications (1)
Publication Number | Publication Date |
---|---|
CN202031441U true CN202031441U (en) | 2011-11-09 |
Family
ID=44893743
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN2011200969820U Expired - Fee Related CN202031441U (en) | 2011-04-06 | 2011-04-06 | Solar window |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN202031441U (en) |
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2011
- 2011-04-06 CN CN2011200969820U patent/CN202031441U/en not_active Expired - Fee Related
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20111109 Termination date: 20120406 |