Claims
- 1. A solar cell module comprising:
- a support structure having at least one planar surface adapted to support an array of solar cells;
- a plurality of solar cells each having a top and a bottom surface arrayed in linear strips on said support structure, said solar cells being selected from semicircular, square and ribbon solar cells;
- linear land areas between said linear arrayed solar cells;
- a light transparent optical medium optically coupling said solar cells and said land areas;
- a plurality of V-shaped grooves on said linear land areas with light reflective surfaces thereon, said grooves extending linearly and for the length of said linear strips of cells, whereby said module can be positioned in use with said grooves running in an east-west direction, each groove having a predetermined angular relationship with respect to the planar surface of said support and each other so that light impinging on said reflective surfaces of said groove is reflected upwards through said optical medium and forms an angle at the top surface thereof which is greater than the critical angle whereby said reflected light is internally reflected downwardly toward said solar cells.
- 2. The module of claim 1 wherein said optical medium has an index of refraction of between 1.3 and 3.0.
- 3. The module of claim 2 wherein the angle at the vertex of the upwardly extending sides of two adjacent grooves is between 110.degree. and 130.degree..
- 4. The module of claim 3 wherein said angle is 120.degree..
- 5. The module of claim 4 wherein said cells are semicircular.
- 6. The module of claim 5 wherein said semicircular cells are arranged to provide for maximum packing of said cells in linear fashion.
- 7. The module of claim 6 wherein the linear land areas are of a width sufficient so that light reflected from the facets therein will be internally reflected by the optical medium only onto the adjacent areas of the support structure wherein the semicircular solar cells are linearly arrayed.
- 8. The module of claim 7 wherein said support structure is an electrically nonconductive material and said solar cells are mounted on said support.
- 9. The module of claim 8 wherein said support structure is a rigid light transparent optical material and said cells are arrayed under said structure and wherein a second optical medium is provided which together with said transparent medium optically couples said cells and said facets.
- 10. The module of claim 9 wherein the surfaces between adjacent cells in each linearly arrayed strip of solar cells includes V-shaped grooves having reflective surfaces thereon and which grooves are perpendicular with respect to the grooves in said linear land area.
- 11. A method of enhancing the output over the course of a day of lineary arrayed solar cells mounted on a support structure and encapsulated in a light transparent medium comprising:
- providing light reflecting V-shaped grooves adjacent the linearly arrayed solar cells;
- optically coupling said grooves to said cells;
- orienting said cells to be normal to the sun at solar noon and with the grooves running in an east to west direction.
CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part of Ser. No. 15,931, filed Feb. 28, 1979, and now abandoned, which in turn is a continuation-in-part of Ser. No. 920,795, filed June 30, 1978, abandoned.
US Referenced Citations (4)
Non-Patent Literature Citations (1)
Entry |
Solarex Corporation Data Sheet 6008-2, May 1978. |
Continuation in Parts (2)
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Number |
Date |
Country |
Parent |
15931 |
Feb 1979 |
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Parent |
920795 |
Jun 1978 |
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