IP Library Patent Application 12712122
Patent Application
App. No. 12/712,122

1-DIMENSIONAL CONCENTRATED PHOTOVOLTAIC SYSTEMS

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Quick Facts
Patent No.
US None
App. No.
12/712,122
Abstract

Systems, methods, and apparatus by which solar energy may be collected to provide electricity are disclosed herein.

Claims (42)

1 . A concentrating solar energy collector comprising:

an elongated solar receiver comprising one or more photovoltaic cells; and

an elongated Fresnel reflector having a long axis oriented parallel to a long axis of the receiver and arranged to reflect solar radiation to the photovoltaic cells when the Fresnel reflector and the solar receiver are oriented such that the sun lies in or approximately in a plane defined by an optical axis of the Fresnel reflector and a long axis of the receiver;

wherein the Fresnel reflector comprises a plurality of elongated reflective elements fixed with respect to each other and with respect to the receiver and having long axes oriented parallel to the long axes of the Fresnel reflector and the receiver; and

wherein the long axes of the reflective elements lie on or approximately on a parabola.

2 . The concentrating solar energy collector of claim I wherein the reflective elements have widths transverse to their long axes of about 5% to about 10% of a width of the Fresnel reflector transverse to its long axis.

3 . The concentrating solar energy collector of claim 1 further comprising a rotation mechanism allowing the receiver and Fresnel reflector to be oriented to track the sun.

4 . The concentrating solar energy collector of claim 3 , wherein the rotation mechanism allows azimuthal rotation of the receiver and the Fresnel reflector.

5 . The concentrating solar energy collector of claim 3 , wherein the rotation mechanism allows the receiver and the Fresnel reflector to be rotated about a North-South axis, or about an approximately North-South axis, to track East-West motion of the sun.

6 . The concentrating solar energy collector of claim 3 , wherein the rotation mechanism allows the receiver and the Fresnel reflector to be rotated about an East-West axis, or about an approximately East-West axis, to track North-South motion of the sun.

7 . The concentrating solar energy collector of claim 1 , wherein the receiver has a “V”-shape cross-section, or an approximately “V”-shape cross-section, in a plane transverse to its long axis.

8 . The concentrating solar energy collector of claim 3 , wherein the receiver has a “V”-shape cross-section, or an approximately “V”-shape cross-section, in a plane transverse to its long axis.

9 . The concentrating solar energy collector of claim 1 , wherein the reflective elements are arranged to stagger their ends, to stagger gaps between adjacent collinear or approximately collinear reflective elements, or both.

10 . The concentrating solar energy collector of claim 3 , wherein the reflective elements are arranged to stagger their ends, to stagger gaps between adjacent collinear or approximately collinear reflective elements, or both.

11 . The concentrating solar energy collector of claim 7 , wherein the reflective elements are arranged to stagger their ends, to stagger gaps between adjacent collinear or approximately collinear reflective elements, or both.

12 . The concentrating solar energy collector of claim 8 , wherein the reflective elements are arranged to stagger their ends, to stagger gaps between adjacent collinear or approximately collinear reflective elements, or both.

13 . The concentrating solar energy collector of claim 1 , wherein the photovoltaic cells are liquid-cooled.

14 . The concentrating solar energy collector of claim 7 , wherein the photovoltaic cells are liquid-cooled.

15 . A concentrating solar energy collector comprising:

an elongated liquid-cooled solar receiver comprising one or more photovoltaic cells; and

an elongated reflector having a long axis oriented parallel to a long axis of the receiver and arranged to reflect solar radiation to the photovoltaic cells when the reflector and the solar receiver are oriented such that the sun lies in or approximately in a plane defined by an optical axis of the reflector and a long axis of the receiver;

wherein the receiver has a “V”-shaped cross-section, or an approximately “V”-shaped cross-section, in a plane transverse to its long axis.

16 . The concentrating solar energy collector of claim 15 further comprising a rotation mechanism allowing the receiver and the reflector to be oriented to track the sun.

17 . The concentrating solar energy collector of claim 16 , wherein the rotation mechanism allows azimuthal rotation of the receiver and the reflector.

18 . The concentrating solar energy collector of claim 16 , wherein the rotation mechanism allows the receiver and the reflector to be rotated about a North-South axis, or about an approximately North-South axis, to track East-West motion of the sun.

19 . The concentrating solar energy collector of claim 16 , wherein the rotation mechanism allows the receiver and the reflector to be rotated about an East-West axis, or about an approximately East-West axis, to track North-South motion of the sun.

20 . The concentrating solar energy collector of claim 15 , wherein the reflector has a parabolic or approximately parabolic cross-section transverse to its long axis.

21 . The concentrating solar energy collector of claim 16 , wherein the reflector has a parabolic or approximately parabolic cross-section transverse to its long axis.

22 . The concentrating solar energy collector of claim 15 , wherein the reflector comprises a plurality of elongated reflective elements fixed with respect to each other and with respect to the receiver and having long axes oriented parallel to the long axes of the reflector and the receiver.

23 . The concentrating solar energy collector of claim 16 , wherein the reflector comprises a plurality of elongated reflective elements fixed with respect to each other and with respect to the receiver and having long axes oriented parallel to the long axes of the reflector and the receiver.

24 . The concentrating solar energy collector of claim 22 , wherein the reflective elements are arranged to stagger their ends, to stagger gaps between adjacent collinear or approximately collinear reflective elements, or both.

25 . The concentrating solar energy collector of claim 23 , wherein the reflective elements are arranged to stagger their ends, to stagger gaps between adjacent collinear or approximately collinear reflective elements, or both.

26 . A concentrating solar energy collector comprising:

an elongated solar receiver comprising one or more photovoltaic cells; and

an elongated Fresnel reflector having a long axis oriented parallel to a long axis of the receiver and arranged to reflect solar radiation to the photovoltaic cells when the Fresnel reflector and the solar receiver are oriented such that the sun lies in or approximately in a plane defined by an optical axis of the Fresnel reflector and a long axis of the receiver;

wherein the Fresnel reflector comprises a plurality of elongated reflective elements fixed with respect to each other and with respect to the receiver and having long axes oriented parallel to the long axes of the Fresnel reflector and the receiver; and

wherein the reflective elements are arranged to stagger their ends, to stagger gaps between adjacent collinear or approximately collinear reflective elements, or both.

27 . The solar energy concentrating collector of claim 26 , wherein the receiver is liquid-cooled.

28 . The concentrating solar energy collector of claim 26 further comprising a rotation mechanism allowing the receiver and Fresnel reflector to be oriented to track the sun.

29 . The concentrating solar energy collector of claim 28 , wherein the rotation mechanism allows azimuthal rotation of the receiver and the Fresnel reflector.

30 . The concentrating solar energy collector of claim 28 , wherein the rotation mechanism allows the receiver and the Fresnel reflector to be rotated about a North-South axis, or about an approximately North-South axis, to track East-West motion of the sun.

31 . The concentrating solar energy collector of claim 28 , wherein the rotation mechanism allows the receiver and the Fresnel reflector to be rotated about an East-West axis, or about an approximately East-West axis, to track North-South motion of the sun.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 6, 2016
From: COGENRA SOLAR, INC.
To: SUNPOWER CORPORATION
Reel/Frame 038630/0862 →
SECURITY AGREEMENT Recorded Dec 29, 2010
From: COGENRA SOLAR, INC.
To: TRIPLEPOINT CAPITAL LLC
Reel/Frame 025570/0457 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 17, 2010
From: ARBORE, MARK A.; KLEIN, DAVID; CONWAY, GEORGE E.
To: GENER8, INC.
Reel/Frame 024554/0436 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 17, 2010
From: GENER8, INC.
To: SKYWATCH ENERGY, INC.
Reel/Frame 024554/0554 →
CHANGE OF NAME Recorded Jun 17, 2010
From: SKYWATCH ENERGY, INC.
To: COGENRA SOLAR, INC.
Reel/Frame 024554/0701 →