Claims
- 1. A thin-film solar cell module of a light transmission type comprising:
a light-transmissive substrate; a front electrode layer; a photovoltaic conversion layer; a rear electrode layer, the front electrode layer, the photovoltaic conversion layer and the rear electrode layer being sequentially laminated on the light-transmissive substrate; a heat retention member covering the rear electrode layer: and a sealing layer for sealing the rear electrode layer, wherein the heat retention member has a light absorptance of 40% or more within a near-infrared wavelength range of 1,500 to 2,000 nm.
- 2. A thin-film solar cell module according to claim 1, wherein the sealing layer is formed of a blue glass plate having a light transmissivity of 70% or more within a visible light range of 400 to 800 nm.
- 3. A thin-film solar cell module according to claim 1, wherein the sealing layer is formed of a glass plate having a zinc oxide film or a laminate film of a zinc oxide film and a silver film on a surface of the glass plate and has a light transmissivity of 70% or more within a visible light range of 400 to 800 nm.
- 4. A thin-film solar cell module according to claim 1, wherein the light-transmissive substrate has a light absorptance of 40% or more within a near-infrared wavelength range of 1,500 to 2,000 nm.
- 5. A thin-film solar cell module according to claim 1, wherein the light-transmissive substrate is formed of a blue glass plate which is provided with a transparent electroconductive film and has a light transmissivity of 70% or more within a wavelength range of 400 to 800 nm.
- 6. A thin-film solar cell module comprising:
a light-transmissive substrate; a front electrode layer; a photovoltaic conversion layer; a rear electrode layer, the front electrode layer, the photovoltaic conversion layer and the rear electrode layer being sequentially laminated on the light-transmissive substrate; and a heat retention member covering the rear electrode layer: wherein the heat retention member is formed of glass containing 1 to 50% by volume of gas therein.
- 7. A thin-film solar cell module comprising:
a light-transmissive substrate; a front electrode layer; a photovoltaic conversion layer; a rear electrode layer, the front electrode layer, the photovoltaic conversion layer and the rear electrode layer being sequentially laminated on the light-transmissive substrate; and a heat retention member covering the rear electrode layer, wherein the heat retention member has a sealing layer and a thermal insulation layer formed on the sealing layer, and the thermal insulation layer is formed of a sheet-form silica aerogel.
- 8. A thin-film solar cell module according to claim 1 further comprising a frame for supporting the module provided in a periphery of the module, wherein the frame has a light-receiving face and a non-light-receiving face and has a higher thermal emissivity on the light-receiving face than on the non-light-receiving face.
- 9. A thin-film solar cell module according to claim 8, wherein the light-receiving face of the frame is black or of a dark color of a shade similar to that of the photovoltaic conversion layer and the non-light-receiving face of the frame is silver or white.
- 10. A thin-film solar cell module according to claim 8, wherein the light-receiving face of the frame is black or of a dark color of a shade similar to that of the photovoltaic conversion layer and the non-light-receiving face of the frame has a thermal insulator.
- 11. A thin-film solar cell module according to claim 1 further comprising a light-transmissive portion running through the photovoltaic conversion layer and the rear electrode layer, wherein the heat retention member is light-transmissive.
- 12. A thin-film solar cell module comprising:
a light-transmissive substrate; a front electrode layer; a photovoltaic conversion layer; a rear electrode layer, the front electrode layer, the photovoltaic conversion layer and the rear electrode layer being sequentially laminated on the light-transmissive substrate; and a heat retention member covering the rear electrode layer, wherein the heat retention member is a vacuum thermal insulator.
- 13. A thin-film solar cell module according to claim 12, wherein the vacuum thermal insulator has an inner pressure of 1 torr or lower.
- 14. A thin-film solar cell module according to claim 12, wherein the vacuum thermal insulator is constructed of a core member and a resin film wrapping the core member and has an inner pressure of 1 torr or lower.
- 15. A thin-film solar cell module according to claim 12 further comprising a sealing layer between the rear electrode layer and the vacuum thermal insulator, wherein the sealing layer is formed by vacuum-sealing the resin film to the rear electrode layer and the vacuum thermal insulator is vacuum-sealed to the rear electrode layer with use of the resin film simultaneously with the sealing layer.
- 16. A thin-film solar cell module according to claim 15, wherein the resin film is a film of a PET resin with aluminum deposited thereon and is in the form of a bag.
- 17. A thin-film solar cell module according to claim 14, wherein the resin film is bonded to the non-light-receiving face of the module with a transparent resin.
- 18. A thin-film solar cell module according to claim 12, wherein the vacuum thermal insulator contains a chemical adsorbent which has a large adsorptivity to cyclopentane and carbon dioxide gas at 25 to 70° C. and is capable of maintaining a degree of vacuum at 1 torr or lower.
- 19. A thin-film solar cell module according to claim 12, wherein the light-transmissive substrate is composed of a multi-layered glass with gaps and the gaps form the vacuum thermal insulator.
- 20. A thin-film solar cell module comprising:
a light-transmissive substrate on a light-receiving face of the module; a front electrode layer; a photovoltaic conversion layer; a rear electrode layer, the front electrode layer, the photovoltaic conversion layer and the rear electrode layer being sequentially laminated on a face opposite to a light-receiving face of the light-transmissive substrate; and a heat retention member covering the rear electrode layer, wherein the heat retention member is formed of a resin film, and the resin film has a light-receiving face and a non-light-receiving face and has a higher thermal emissivity on the light-receiving face than on the non-light-receiving face.
- 21. A thin-film solar cell module according to claim 20, wherein the light-receiving face of the resin film is black or of a dark color of a shade similar to that of the photovoltaic conversion layer and the non-light-receiving face of the resin film is silver or white.
- 22. A thin-film solar cell module according to claim 20, wherein the resin film is a laminate film of a resin film black or of a dark color of a shade similar to that of the photovoltaic conversion layer, a silver or white resin film and an aluminum film sandwiched between the black or dark resin film and the silver or white resin film.
- 23. A thin-film solar cell module comprising:
a light-transmissive substrate; a front electrode layer; a photovoltaic conversion layer; a rear electrode layer, the front electrode layer, the photovoltaic conversion layer and the rear electrode layer being sequentially laminated on the light-transmissive substrate; and a heat retention member covering the rear electrode layer, wherein the heat retention member has a frame for supporting the substrate, the front electrode layer, the photovoltaic conversion layer and the rear electrode layer, and the frame has a light-receiving face and a non-light-receiving face and has a higher thermal emissivity on the light-receiving face than on the non-light-receiving face.
- 24. A thin-film solar cell module according to claim 23, wherein the light-receiving face of the frame is black or of a dark color of a shade similar to that of the photovoltaic conversion layer and the non-light-receiving face of the frame is silver or white.
- 25. A thin-film solar cell module according to claim 23, wherein the light-receiving face of the frame is black or of a dark color of a shade similar to that of the photovoltaic conversion layer and the non-light-receiving face of the frame has a thermal insulator.
- 26. A thin-film solar cell module according to claim 1, wherein the photovoltaic conversion layer is formed of amorphous silicon.
- 27. A thin-film solar cell module of a light transmission type comprising:
a light-transmissive substrate; a transparent front electrode layer; a photovoltaic conversion layer; a rear electrode layer, the front electrode layer, the photovoltaic conversion layer and the rear electrode layer being sequentially laminated on the light-transmissive substrate to form a solar cell; a light-transmissive portion running from the front electrode layer through the photovoltaic conversion layer and the rear electrode layer; and a light-transmissive sealing layer covering the rear electrode layer; wherein the sealing layer has a light absorptance of 40% or more within a near-infrared wavelength range of 1,500 to 2,000 nm.
- 28. A thin-film solar cell module of the light transmission type according to claim 27, wherein the sealing layer is formed of a blue glass plate having a light transmissivity of 70% or more within a visible light range of 400 to 800 nm.
- 29. A thin-film solar cell module of the light transmission type according to claim 27, wherein the sealing layer is formed of a glass plate having a zinc oxide film or a laminate film of a zinc oxide film and a silver film on a surface of the glass plate and has a light transmissivity of 70% or more within a visible light range of 400 to 800 nm.
- 30. A thin-film solar cell module of a light transmission type comprising:
a light-transmissive substrate; a transparent front electrode layer; a photovoltaic conversion layer; a rear electrode layer, the front electrode layer, the photovoltaic conversion layer and the rear electrode layer being sequentially laminated on the light-transmissive substrate to form a solar cell; a light-transmissive portion running from the front electrode layer through the photovoltaic conversion layer and the rear electrode layer; and a light-transmissive sealing layer covering the rear electrode layer, wherein the sealing layer is formed of glass containing 1 to 50% by volume of gas therein.
- 31. A thin-film solar cell module of a light transmission type comprising:
a light-transmissive substrate; a transparent front electrode layer; a photovoltaic conversion layer; a rear electrode layer, the front electrode layer, the photovoltaic conversion layer and the rear electrode layer being sequentially laminated on the light-transmissive substrate to form a solar cell; a light-transmissive portion running from the front electrode layer through the photovoltaic conversion layer and the rear electrode layer; a light-transmissive sealing layer covering the rear electrode layer; and a light-transmissive thermal insulator covering the light-transmissive substrate or the sealing layer.
- 32. A thin-film solar cell module of the light transmission type according to claim 31, wherein the thermal insulator is formed of a sheet-form silica aerogel.
- 33. A thin-film solar cell module of the light transmission type according to claim 31, wherein the light-transmissive substrate has a light absorptance of 40% or more within a near-infrared wavelength range of 1,500 to 2,000 nm.
- 34. A thin-film solar cell module of the light transmission type according to claim 31, wherein the light-transmissive substrate is formed of a blue glass plate which is provided with a transparent electroconductive film and has a light transmissivity of 70% or more within a wavelength range of 400 to 800 nm.
- 35. A thin-film solar cell module of the light transmission type according to claim 31 further comprising a frame for surrounding a periphery of the module, wherein the frame has a higher thermal emissivity on a substrate side of the frame than on a sealing layer side of the frame.
- 36. A thin-film solar cell module of the light transmission type according to claim 31, wherein the substrate side of the frame is black or of a dark color of a shade similar to that of the photovoltaic conversion layer and the sealing layer side of the frame is silver or white.
- 37. A thin-film solar cell module of the light transmission type according to claim 31, wherein the substrate side of the frame is black or of a dark color of a shade similar to that of the photovoltaic conversion layer and the frame has a thermal insulator on the sealing layer side thereof.
- 38. A thin-film solar cell module comprising a solar cell element having a semiconductor layer of amorphous silicon, wherein a vacuum layer is formed on ether or both of a light-receiving face and a non-light-receiving face of the solar cell element.
- 39. A thin-film solar cell module comprising a solar cell element having a semiconductor layer of amorphous silicon and a thermal insulation means on a non-light-receiving face of the solar cell element, wherein a rear face of the solar cell element is sealed with a resin film, and the resin film has a higher thermal emissivity on a light-receiving face of the resin film than on a non-light-receiving face of the resin film.
- 40. A thin-film solar cell module comprising a solar cell element having a semiconductor layer of amorphous silicon and a thermal insulation means on a non-light-receiving face of the solar cell element, wherein a frame is attached to the module, and the frame has a higher thermal emissivity on a light-receiving face of the frame than on a non-light-receiving face of the frame.
Priority Claims (3)
| Number |
Date |
Country |
Kind |
| 2000-221029 |
Jul 2000 |
JP |
|
| 2000-299525 |
Sep 2000 |
JP |
|
| 2000-299526 |
Sep 2000 |
JP |
|
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] This application is related to Japanese Patent Applications Nos. 2000-221029 filed on Jul. 21, 2000, 2000-299525 filed on Sep. 29, 2000 and 2000-299526 filed on Sep. 29, 2000 whose priorities are claimed under 35 USC §119, the disclosures of which are incorporated by reference in their entirety.