WO2010043169A1 - 一种光电模块 - Google Patents
一种光电模块 Download PDFInfo
- Publication number
- WO2010043169A1 WO2010043169A1 PCT/CN2009/074405 CN2009074405W WO2010043169A1 WO 2010043169 A1 WO2010043169 A1 WO 2010043169A1 CN 2009074405 W CN2009074405 W CN 2009074405W WO 2010043169 A1 WO2010043169 A1 WO 2010043169A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- photovoltaic module
- heat insulating
- solar panel
- module according
- insulating member
- Prior art date
Links
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- 238000009413 insulation Methods 0.000 claims description 18
- 230000005693 optoelectronics Effects 0.000 claims description 18
- 239000000463 material Substances 0.000 claims description 16
- 239000004065 semiconductor Substances 0.000 claims description 14
- 239000011521 glass Substances 0.000 claims description 12
- 239000004566 building material Substances 0.000 claims description 5
- 239000010409 thin film Substances 0.000 claims description 4
- 229910001218 Gallium arsenide Inorganic materials 0.000 claims description 2
- XUIMIQQOPSSXEZ-UHFFFAOYSA-N Silicon Chemical compound [Si] XUIMIQQOPSSXEZ-UHFFFAOYSA-N 0.000 claims description 2
- KTSFMFGEAAANTF-UHFFFAOYSA-N [Cu].[Se].[Se].[In] Chemical compound [Cu].[Se].[Se].[In] KTSFMFGEAAANTF-UHFFFAOYSA-N 0.000 claims description 2
- 229910021417 amorphous silicon Inorganic materials 0.000 claims description 2
- 229910021424 microcrystalline silicon Inorganic materials 0.000 claims description 2
- 229910021421 monocrystalline silicon Inorganic materials 0.000 claims description 2
- 229910021420 polycrystalline silicon Inorganic materials 0.000 claims description 2
- 229910052710 silicon Inorganic materials 0.000 claims description 2
- 239000010703 silicon Substances 0.000 claims description 2
- JBRZTFJDHDCESZ-UHFFFAOYSA-N AsGa Chemical compound [As]#[Ga] JBRZTFJDHDCESZ-UHFFFAOYSA-N 0.000 claims 1
- 230000004888 barrier function Effects 0.000 claims 1
- 229920001940 conductive polymer Polymers 0.000 claims 1
- 239000005344 low-emissivity glass Substances 0.000 claims 1
- 229920006267 polyester film Polymers 0.000 claims 1
- 230000001235 sensitizing effect Effects 0.000 claims 1
- 238000010248 power generation Methods 0.000 abstract description 15
- 238000006243 chemical reaction Methods 0.000 description 12
- 230000003287 optical effect Effects 0.000 description 8
- 238000005516 engineering process Methods 0.000 description 7
- 230000005855 radiation Effects 0.000 description 6
- 229920002799 BoPET Polymers 0.000 description 5
- 239000011248 coating agent Substances 0.000 description 5
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- 238000002834 transmittance Methods 0.000 description 3
- PXHVJJICTQNCMI-UHFFFAOYSA-N Nickel Chemical compound [Ni] PXHVJJICTQNCMI-UHFFFAOYSA-N 0.000 description 2
- 238000010276 construction Methods 0.000 description 2
- 238000004519 manufacturing process Methods 0.000 description 2
- 229910052751 metal Inorganic materials 0.000 description 2
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- 230000004048 modification Effects 0.000 description 2
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- 235000012431 wafers Nutrition 0.000 description 2
- ZOXJGFHDIHLPTG-UHFFFAOYSA-N Boron Chemical compound [B] ZOXJGFHDIHLPTG-UHFFFAOYSA-N 0.000 description 1
- VYZAMTAEIAYCRO-UHFFFAOYSA-N Chromium Chemical compound [Cr] VYZAMTAEIAYCRO-UHFFFAOYSA-N 0.000 description 1
- BQCADISMDOOEFD-UHFFFAOYSA-N Silver Chemical compound [Ag] BQCADISMDOOEFD-UHFFFAOYSA-N 0.000 description 1
- 238000010521 absorption reaction Methods 0.000 description 1
- 229910052782 aluminium Inorganic materials 0.000 description 1
- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminium Chemical compound [Al] XAGFODPZIPBFFR-UHFFFAOYSA-N 0.000 description 1
- 230000000903 blocking effect Effects 0.000 description 1
- 229910052796 boron Inorganic materials 0.000 description 1
- 229910052804 chromium Inorganic materials 0.000 description 1
- 239000011651 chromium Substances 0.000 description 1
- HVMJUDPAXRRVQO-UHFFFAOYSA-N copper indium Chemical compound [Cu].[In] HVMJUDPAXRRVQO-UHFFFAOYSA-N 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 238000009792 diffusion process Methods 0.000 description 1
- ZZEMEJKDTZOXOI-UHFFFAOYSA-N digallium;selenium(2-) Chemical compound [Ga+3].[Ga+3].[Se-2].[Se-2].[Se-2] ZZEMEJKDTZOXOI-UHFFFAOYSA-N 0.000 description 1
- 230000005611 electricity Effects 0.000 description 1
- 238000004134 energy conservation Methods 0.000 description 1
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- 238000002955 isolation Methods 0.000 description 1
- 230000031700 light absorption Effects 0.000 description 1
- 229910021423 nanocrystalline silicon Inorganic materials 0.000 description 1
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- 229910052759 nickel Inorganic materials 0.000 description 1
- 229920000642 polymer Polymers 0.000 description 1
- 230000003678 scratch resistant effect Effects 0.000 description 1
- 229910052709 silver Inorganic materials 0.000 description 1
- 239000004332 silver Substances 0.000 description 1
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 1
Classifications
-
- H—ELECTRICITY
- H10—SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H10F—INORGANIC SEMICONDUCTOR DEVICES SENSITIVE TO INFRARED RADIATION, LIGHT, ELECTROMAGNETIC RADIATION OF SHORTER WAVELENGTH OR CORPUSCULAR RADIATION
- H10F77/00—Constructional details of devices covered by this subclass
- H10F77/40—Optical elements or arrangements
- H10F77/42—Optical elements or arrangements directly associated or integrated with photovoltaic cells, e.g. light-reflecting means or light-concentrating means
- H10F77/488—Reflecting light-concentrating means, e.g. parabolic mirrors or concentrators using total internal reflection
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02S—GENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
- H02S20/00—Supporting structures for PV modules
- H02S20/20—Supporting structures directly fixed to an immovable object
- H02S20/22—Supporting structures directly fixed to an immovable object specially adapted for buildings
- H02S20/26—Building materials integrated with PV modules, e.g. façade elements
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02S—GENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
- H02S40/00—Components or accessories in combination with PV modules, not provided for in groups H02S10/00 - H02S30/00
- H02S40/20—Optical components
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02S—GENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
- H02S40/00—Components or accessories in combination with PV modules, not provided for in groups H02S10/00 - H02S30/00
- H02S40/20—Optical components
- H02S40/22—Light-reflecting or light-concentrating means
-
- H—ELECTRICITY
- H10—SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H10F—INORGANIC SEMICONDUCTOR DEVICES SENSITIVE TO INFRARED RADIATION, LIGHT, ELECTROMAGNETIC RADIATION OF SHORTER WAVELENGTH OR CORPUSCULAR RADIATION
- H10F19/00—Integrated devices, or assemblies of multiple devices, comprising at least one photovoltaic cell covered by group H10F10/00, e.g. photovoltaic modules
- H10F19/80—Encapsulations or containers for integrated devices, or assemblies of multiple devices, having photovoltaic cells
-
- H—ELECTRICITY
- H10—SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H10F—INORGANIC SEMICONDUCTOR DEVICES SENSITIVE TO INFRARED RADIATION, LIGHT, ELECTROMAGNETIC RADIATION OF SHORTER WAVELENGTH OR CORPUSCULAR RADIATION
- H10F77/00—Constructional details of devices covered by this subclass
- H10F77/30—Coatings
- H10F77/306—Coatings for devices having potential barriers
- H10F77/311—Coatings for devices having potential barriers for photovoltaic cells
- H10F77/315—Coatings for devices having potential barriers for photovoltaic cells the coatings being antireflective or having enhancing optical properties
-
- 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
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B10/00—Integration of renewable energy sources in buildings
- Y02B10/10—Photovoltaic [PV]
-
- 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
- Y02E10/50—Photovoltaic [PV] energy
- Y02E10/52—PV systems with concentrators
Definitions
- the present invention relates to a modular optoelectronic technology, and more particularly to an optoelectronic module that can increase power generation efficiency while having a heat insulating function.
- solar panels include a plurality of photovoltaic semiconductor wafers that can directly generate electricity using sunlight.
- the principle is generally to add high-purity semiconductor materials to some. Impurity, such that the aforementioned semiconductor materials exhibit different properties. For example, the addition of boron can form a P-type semiconductor, and the addition of a monument can form an N-type semiconductor.
- the P-type semiconductor When the P-type semiconductor is combined with the N-type semiconductor, when the sunlight is incident, the electrons in the N-type semiconductor are knocked out, but both jump into the P-type semiconductor and cannot be retracted, forming a unidirectional conduction, and p
- the junction surface of the type semiconductor and the N-type semiconductor has electron diffusion, and a large amount of free electrons accompany it, and the movement of the electrons generates a current, that is, a potential difference is generated at the junction surface.
- the solar battery module is provided with a double-sided solar panel, and the double-sided solar battery module is tilted and placed thereon.
- the surface of the solar panel faces upward to directly absorb the illumination light of the solar energy, and a reflector is disposed on the horizontal plane of the backlight position of the solar cell module, so that the reflector is used to reflect the sunlight to the lower solar panel, thereby achieving the purpose of double-sided illumination.
- a new type of solar photovoltaic module including a solar panel having double-sided absorption light and a backlight located at a backlight position of the solar battery module is disclosed in the Taiwan Patent Publication No. 536063.
- a side of the backlight module protrudes around the solar cell module, and collects light from a side of the backlight module to provide a light source to the solar panel of the solar photovoltaic module.
- Taiwan Patent Publication No. M325607 The solar panel device with a wing-shaped plane mirror is controlled by a single chip, and the solar ray tracing device is mainly used to adjust the solar panel to keep the solar panel and the solar light in a nearly vertical state.
- the long side of the solar panel assists in designing a plane mirror that can change the tilt angle.
- the vertical component after the light reflected outside the solar panel is reflected by the plane mirror, and the light perpendicular to the solar panel can be reused to enhance the solar energy.
- the photoelectric conversion energy of the board is controlled by a single chip, and the solar ray tracing device is mainly used to adjust the solar panel to keep the solar panel and the solar light in a nearly vertical state.
- the long side of the solar panel assists in designing a plane mirror that can change the tilt angle.
- the vertical component after the light reflected outside the solar panel is reflected by the plane mirror, and the light perpendicular to the solar panel can be reused to enhance the solar energy.
- the present invention provides a "photovoltaic module", the photovoltaic module includes a photovoltaic module, and a surface of the photovoltaic module is provided with a reflective heat insulating member; thus, when the incident light passes through the In the case of the optoelectronic component, photoelectric conversion can be performed by the optoelectronic component to generate electric energy, and after the light is irradiated to the reflective heat insulating member, part of the light can pass through the reflective heat insulating member and other light is separated by the reflection.
- the heat member is reflected such that the reflected light passes through the optoelectronic component again, and the amount of light that the optoelectronic component can perform photoelectric conversion to generate electrical energy is increased.
- the photoelectric module can perform photoelectric conversion multiple times, thereby effectively improving power generation efficiency.
- the foregoing photovoltaic module may further include a plate material disposed at the bottom of the reflective heat insulation member, wherein the building materials, or other buildings and non-buildings.
- the photovoltaic module may include a frame for accommodating the plate, the reflective heat insulating member, and the photoelectric component, and the frame may be directly installed in a general building. Windows, skylights, walls, etc., to achieve practical progress in construction, transportation and so on.
- the photoelectric module of the present invention adopts a reflective heat insulating member, and the heat energy generated when the light is irradiated, such as heat radiation, can be partially reflected by the reflective heat insulating member. Or isolation, so that the thermal energy does not pass through the photovoltaic module, so the heat insulation effect can be achieved.
- Figure 1 is a perspective view of a first embodiment of the present invention.
- Figure 2 is a side view of a first embodiment of the present invention.
- Figure 3 is a perspective view of a second embodiment of the present invention.
- Figure 4 is a perspective cross-sectional view showing a third embodiment of the present invention.
- 5 to 7 are cross-sectional views showing a modification of the present invention.
- Figure 8 is a schematic view of the use of the present invention.
- Figure 9 is a schematic view of another use of the present invention.
- Figure 10 is a schematic view of still another use of the present invention.
- the photovoltaic module 1 of the present embodiment includes a reflective insulating element 10 and a photoelectric Component 11.
- the reflective heat insulating member 10 may be a heat reflecting film, a heat reflecting sheet or other equivalent component that can reflect light passing through the photovoltaic module 11, that is, as long as heat radiation such as sunlight can be irradiated
- the function of reflecting light and achieving heat insulation is suitable for the present invention.
- the reflective heat insulating member 10 can be disposed to be light-transmissive, semi-transparent, or different in light transmittance according to the requirements at the time of use; for example, when it is disposed on a roof of a building, a wall, or the like, the surface of the building material is
- the reflective heat insulating member 10 may be an opaque component. If disposed in a glass, a skylight or the like or other non-building, the reflective heat insulating member 10 may be an opaque or semi-transparent component.
- the reflective heat insulating member 10 is exemplified by a heat insulating film. More specifically, the reflective heat insulating member 10 may be a heat insulating film for blocking a sunlight heat source, a multilayer heat insulating film patch, A polyester (PET) film of suitable thickness, or other equivalent film layer.
- a multi-layer heat-insulating film patch a multi-layer base film may be used in combination with a multi-layer anti-light layer and a scratch-resistant layer to achieve a good heat insulation effect under the premise of achieving visible light transmittance. Need to selectively increase multi-layer insulation
- the film patch is resistant to infrared rays, ultraviolet rays or scratches.
- the surface of the PET film may be covered with a metal layer containing a metal such as nickel, silver, aluminum, or chromium, or an organic dye may be added. Dyed layer.
- the reflective heat insulating member 10 in this embodiment is a separate member, the reflective heat insulating member 10 can be glued to the photovoltaic module 11 through an adhesive, an optical glue, an optical tape, or the like. surface.
- the reflective heat insulating member 10 may also be integrally disposed on the film layer of the photovoltaic module 11. For example, a coating having a medium reflectance, a coating having a high reflectivity, and a coating having a low reflectivity may be sequentially coated on a surface of the photovoltaic module 11 to constitute the reflective heat insulation. Item 10.
- the reflective heat insulating member 10 is not limited to the foregoing heat insulating film, the multilayer heat insulating film patch, and the PET film, and may also be a nano structure optical heat insulating film or other reflective and heat insulating functions. Equivalent component.
- the optoelectronic component 11 can be an amorphous silicon solar panel, a monocrystalline silicon solar panel, a polycrystalline silicon solar panel, or a solar panel produced by using a silicon wafer in combination with a semiconductor; or the photovoltaic component 11 can be a thin film.
- Solar panels such as materials including, for example, nanocrystalline silicon (NC-Si, also known as Microcrystalline Silicon, mc-Si), copper indium diselenide (CIS, or Copper Indium Gallium Diselenide, CIGS) , Multi-joint GaAs Multijuction, Dye - Sensitized Solar Cell, Organic/polymer solar cells, etc.
- the photovoltaic module 11 may be a solar panel or other solar panel as described in the embodiment, and since the types and structures of the plurality of solar panels are both existing, they will not be described one by one.
- the photovoltaic module 11 is exemplified by a characteristic having high light transmittance and low reflectance.
- the optoelectronic component 11 performs photoelectric conversion to generate electrical energy, which can be externally transmitted by the wire 110 to which the optoelectronic component 11 is connected. Since the photovoltaic module 11 such as a solar panel is existing, it will not be described in detail herein.
- the reflective heat insulating member 10 can reflect a part of the incident light 2, and the reflected reflected light 2 can contact and pass through the optoelectronic component 11.
- the reflected light 2 reflected by the reflective thermal insulator 10 can further increase the source of optical energy, except that the incident light 2 can be used as a source of photoelectric energy for photoelectric conversion. , to achieve increased power generation efficiency of photoelectric conversion.
- the reflective heat insulating member 10 reflects or isolates the incident light 2 while reflecting or isolating the heat radiation, thereby effectively transferring the heat energy. Isolated, it achieves the function of heat insulation.
- the photovoltaic module 1 of the present embodiment further includes a plate 12 disposed at the bottom of the reflective heat insulating member 10.
- the reflective heat insulation member 10 is disposed between the plate material 12 and the photovoltaic module 11 .
- the sheet material 12 is determined according to the place of use or the demand at the time of use.
- the sheet material 12 in this embodiment may be, for example, glass, such as glass used for windows, skylights, window displays, etc.; of course, in other embodiments the sheet material 12 Or it can be used for building walls, roofs, eaves, building materials.
- the plate member 12 may be a fixing member for fixing the reflective heat insulating member 10 and the photovoltaic module 11. Further, the reflective heat insulating member 10 and the photovoltaic module 11 are as shown in Figs. 1 and 2, and therefore will not be described again.
- the reflective heat insulating member 10, the optoelectronic component 11 and the plate material 12 may be glued to each other as the photovoltaic module 1 by using an adhesive, an optical glue, an optical tape, or the like, or
- the reflective heat insulating member 10 is directly disposed on the surface of the plate 12 or integrally disposed on the surface of the photovoltaic module 11.
- the reflective heat insulating member 10 may be applied with a heat insulating film, a multilayer heat insulating film patch, and a PET film as in the foregoing first embodiment; or, in the photovoltaic module 11 or the
- the sheet 12 is coated with a coating of different reflectance as, for example, a window glass, a lens or the like; or, a coated glass such as Low-E Glass, wherein the low-emission (Low-E) glass has a high Transparent, low glare, and better radiant heat resistance, and can be divided into on-line coating low-emission (Hard Low-E) glass, off-line rhodium-plated low-emission (Soft Low-E) glass, and thin-film rhodium-plated low-emission (PET Low - E) glass, etc.
- Soft Low-E off-line rhodium-plated low-emission
- PET Low - E thin-film rhodium-plated low-emission
- the high-reflectivity thermal insulation film not only increases the power generation efficiency and thermal insulation, but also improves the perspective clarity of the front-surface light-transmissive module, and changes the original perspective blur state to a clear-cut state.
- the principle of refraction and scattering of light is also improved.
- the photovoltaic module 1 of the present embodiment can be combined with building materials, glass, or other plates for general construction, and can improve the power generation efficiency of the photoelectric conversion of the photovoltaic module 11 and the heat insulation when irradiated with sunlight or the like.
- the photovoltaic module 1 of the present invention has the above-mentioned reflective heat insulating member 10, the photoelectric module 11 and the plate member 12, Furthermore, the frame 3 is included, which may be a window frame for a window, a window frame for a sunroof for a vehicle, or a frame for a building, etc., and the reflective heat insulating member 10, the photovoltaic module 11 and the plate 12 After being bonded to the photovoltaic module 1 by an adhesive, an optical glue, an optical tape or the like, the inside of the frame 3 can be assembled, so that the photovoltaic module 1 can be directly installed in a general building or a non-building. On the wall of the object, it has practical advancement such as quick installation and convenient transportation.
- a gap may be formed between some of the members.
- the structure of FIG. 4 can be changed to have a gap between the reflective heat insulating member 10 and the plate member 12 to form a hollow layer 120.
- the sheet 12, the reflective heat insulating member 10, and the photovoltaic module 11 have a gap therebetween, that is, between the reflective heat insulating member 10, the photoelectric module 11, and the plate member 12,
- the two hollow layers 120 are formed; or, as shown in FIG. 7, a gap is formed between the reflective heat insulating member 10 and the photovoltaic module 11, and a hollow layer 120 is formed.
- the reflective heat insulating member 10 is further removed by the hollow layer 120, in addition to reflecting/separating heat radiation or the like by the reflective heat insulating member 10.
- the photoelectric assembly 11 is isolated from the heat conduction between the sheets 12, thereby improving the heat insulating effect.
- FIG. 8 is a schematic view showing the use state of the present invention.
- the frame body 3 is disposed on a wall surface of the building 4 , and the inside of the frame body 3 is implemented as a third embodiment.
- the example has the foregoing reflective heat insulating member 10, the photoelectric module 11 and the plate member 12 (only the photoelectric group is shown in FIG. 8). Item 11).
- FIG. 8 has the foregoing reflective heat insulating member 10, the photoelectric module 11 and the plate member 12 (only the photoelectric group is shown in FIG. 8). Item 11).
- FIG. 10 it is a schematic diagram of still another use state of the present invention.
- the vehicle 5 such as a car has a sunroof, and the photovoltaic module 1 of the second embodiment may be disposed on the sunroof; or, the sunroof may be selected.
- the photovoltaic module of the third embodiment also directly or directly sets the photovoltaic module of the different embodiments described above on the roof of the vehicle, and is not limited thereto.
- the optoelectronic component 11 of the photovoltaic module 1 is provided with a reflective thermal insulation member 10, and the reflective thermal insulation member 10 has both There is a function of reflecting light and performing heat insulation. Therefore, when the photoelectric module 11 performs photoelectric conversion to generate electric energy, the light source receives the light reflected by the reflective heat insulating member 10 in addition to direct illumination from sunlight or the like.
- the present invention can directly improve the area of the photovoltaic module 11 without directly changing the area of the photovoltaic module 11 Improve the practical progress of power generation efficiency.
- the reflective heat insulating member 10 of the photovoltaic module 1 can mainly reflect or isolate light, such as heat radiation, light, etc. generated by sunlight, so that the photoelectric module 1 can be installed in a window when in use.
- the light-transmissive sheet material 12 such as glass, compared with the conventional solar panel, the temperature rise in the building or the vehicle is likely to be lost, and the present invention can simultaneously have practical progress in heat insulation function when used.
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- Engineering & Computer Science (AREA)
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- Structural Engineering (AREA)
- Photovoltaic Devices (AREA)
Description
Claims
Priority Applications (5)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US13/124,071 US20110265854A1 (en) | 2008-10-13 | 2009-10-12 | Photovoltaic module |
PL09820245T PL2346092T3 (pl) | 2008-10-13 | 2009-10-12 | Moduł fotoelektryczny |
EP09820245.0A EP2346092B1 (en) | 2008-10-13 | 2009-10-12 | Photoelectric module |
ES09820245T ES2774573T3 (es) | 2008-10-13 | 2009-10-12 | Módulo fotovoltaico |
AU2009304453A AU2009304453A1 (en) | 2008-10-13 | 2009-10-12 | Photovoltaic module |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CNU2008201348958U CN201285767Y (zh) | 2008-10-13 | 2008-10-13 | 一种光电模块 |
CN200820134895.8 | 2008-10-13 |
Publications (1)
Publication Number | Publication Date |
---|---|
WO2010043169A1 true WO2010043169A1 (zh) | 2010-04-22 |
Family
ID=40950748
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/CN2009/074405 WO2010043169A1 (zh) | 2008-10-13 | 2009-10-12 | 一种光电模块 |
Country Status (8)
Country | Link |
---|---|
US (1) | US20110265854A1 (zh) |
EP (1) | EP2346092B1 (zh) |
CN (1) | CN201285767Y (zh) |
AU (1) | AU2009304453A1 (zh) |
ES (1) | ES2774573T3 (zh) |
MY (1) | MY176051A (zh) |
PL (1) | PL2346092T3 (zh) |
WO (1) | WO2010043169A1 (zh) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102478885A (zh) * | 2010-11-24 | 2012-05-30 | 吉富新能源科技(上海)有限公司 | 具有薄膜太阳能板的笔记本电脑 |
Families Citing this family (14)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN201285767Y (zh) * | 2008-10-13 | 2009-08-05 | 杨锦怀 | 一种光电模块 |
KR101320024B1 (ko) * | 2011-05-17 | 2013-10-22 | 율촌화학 주식회사 | 태양전지 모듈용 백 시트 및 이를 포함하는 태양전지 모듈 |
US9028081B2 (en) | 2011-12-01 | 2015-05-12 | Flatiron Research Group, LLC | Removable window insulator |
US10665741B2 (en) | 2015-06-04 | 2020-05-26 | Total Shade Inc. | Window insulating and power generation system |
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Also Published As
Publication number | Publication date |
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EP2346092B1 (en) | 2019-12-11 |
CN201285767Y (zh) | 2009-08-05 |
EP2346092A4 (en) | 2013-05-29 |
PL2346092T3 (pl) | 2020-05-18 |
EP2346092A1 (en) | 2011-07-20 |
AU2009304453A1 (en) | 2010-04-22 |
US20110265854A1 (en) | 2011-11-03 |
ES2774573T3 (es) | 2020-07-21 |
MY176051A (en) | 2020-07-23 |
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