Claims
- 1. A nonimaging light concentrator system, comprising:
a primary collector of light having a focal zone; an optical mixer disposed near the focal zone for collecting light from the primary collector, the optical mixer having a broken symmetry shape and further including a transparent entrance aperture, a reflective housing having reflective surface components with the broken symmetry shape and a transparent exit aperture, and the reflective housing with broken symmetry shape providing reflection of the light input to the optical mixer; and an array of photovoltaic cells disposed near the transparent exit aperture.
- 2. The nonimaging light concentrator as defined in claim 1 wherein the broken symmetry shape comprises a plurality of reflective walls coupled at discontinuities in slope.
- 3. The nonimaging light concentrator system as defined in claim 1 wherein the primary collector of light is selected from the group consisting of a reflector dish and a lens.
- 4. The nonimaging light concentrator system as defined in claim 3 wherein the dish is constructed to provide a light concentration of about 100 to 1000 times ambient solar intensity.
- 5. The nonimaging light concentrator system as defined in claim 1 wherein the optical mixer comprises a solid material.
- 6. The nonimaging light concentrator system as defined in claim 4 wherein the solid material comprises silica.
- 7. The nonimaging light concentrator system as defined in claim 1 wherein the optical mixer comprises a hollow container.
- 8. The nonimaging light concentrator as defined in claim 2 wherein the broken symmetry comprises a structure having a transverse cross section selected from the group consisting of a polygon and arc shaped surfaces.
- 9. The nonimaging light concentrator as defined in claim 1 wherein the reflective housing comprises a tailored optical design.
- 10. The nonimaging light concentrator system as defined in claim 1 wherein the optical mixer comprises a container enclosing a liquid of index of refraction nl.
- 11. The nonimaging light concentrator system as defined in claim 10 wherein the container includes an opaque outer wall and a liner having an index of refraction n2 wherein (n12−n22){fraction (1/2)}≧sin φ and φ is substantially the maximum angle of light incidence with a longitudinal axis of the optical mixer.
- 12. The nonimaging light concentrator as defined in claim 11 wherein the liner comprises Teflon or similar fluorocarbon plastic.
- 13. The nonimaging light concentrator system as defined in claim 1 wherein the optical mixer reflective housing comprises at least one of a surface causing total internal reflection and specular reflection.
- 14. The nonimaging light concentrator system as defined in claim 13 wherein the reflective housing is selected from the group consisting of a metallic mirror and a multilayer reflective mirror.
- 15. An optical light concentrator assembly, comprising:
a primary light concentrator having a focal zone; an optical mixer for collecting concentrated light, the optical mixer having a transparent entrance aperture, a reflective internal housing surface, a transparent exit aperture and at least one compound curved surface concentrator disposed adjacent to the exit aperture, the reflective internal housing surface providing total internal reflection of the light input to the optical mixer; and an array of photovoltaic cells dispersed near the transparent exit aperture.
- 16. The optical light concentrator assembly as defined in claim 15 wherein the compound curved surface concentrator comprises a compound parabolic concentrator.
- 17. The optical light concentrator assembly as defined in claim 15 wherein the optical mixer is selected from the group consisting of a solid material, a container holding a liquid and a hollow reflective housing.
- 18. The optical light concentrator as defined in claim 17 wherein the solid material comprises silica.
- 19. The optical light concentrator as defined in claim 17 wherein the liquid has an index of refraction n1 and the optical mixer comprises an inner liner wall having an index n2 wherein (n1 12−n22)1/2>sin φ and φ is substantially the maximum angle of incidence with a longitudinal axis of the optical mixer.
- 20. The optical light concentrator as defined in claim 15 wherein the optical mixer comprises a shape having broken reflective symmetry.
- 21. The optical light concentrator as defined in claim 15 wherein the optical mixer comprises a truncated pyramidal shape.
- 22. The optical light concentrator as defined in claim 15 wherein the compound curved surface concentrator comprises a tailored nonimaging optical surface.
- 23. An optical light concentrator, comprising:
a primary collector of light having a focal zone and further comprising a surface which deviates from a parabolic shape in order to achieve uniformity of light irradiance in the focal zone; and an array of photovoltaic cells to receive the light from the primary collector.
- 24. The optical light concentrator as defined in claim 23 including an optical mixer disposed near the focal zone for collecting light from the primary collector and an array of photovoltaic cells disposed near the transparent exit aperture.
- 25. The optical light concentrator as defined in claim 23 wherein the primary collector includes subdivided cells weighted in area to control light intensity at the focal zone.
- 26. An optical light concentrator assembly, comprising:
a primary light concentrator have a focal zone; a beam down reflector disposed between the primary light concentrator and the focal zone; and an optical mixer for collecting concentrated light, the optical mixer having a transparent entrance aperture, a reflective internal portion, a transparent exit aperture, the reflective portion providing substantially total internal reflection of the light input to the optical mixer.
- 27. The optical light concentrator as defined in claim 26 wherein the primary light concentrator comprises at least one of a reflector dish and a refractive lens.
- 28. The optical light concentrator as defined in claim 26 wherein the beam down reflector is constructed to reflect selected portions of a solar spectrum.
- 29. The optical light concentrator as defined in claim 26 wherein the beam down reflector comprises a hyperbolic reflector.
- 30. The optical light concentrator as defined in claim 26 further including an angle transforming concentrator disposed near an entrance to the optical mixer.
Government Interests
[0001] Certain rights in this invention are retained by the U.S. Government pursuant to Contract No. ADC-0-30444-01 of the National Renewable Energy Laboratory of the U.S. Department of Energy.