1. Technical Field
The present disclosure relates to a light concentrator assembly and a related solar cell apparatus.
2. Description of Related Art
Many solar cell apparatuses use reflectors to reflect light to the solar cell, or use convex lenses to converge light onto the solar cell. However, the reflectors and convex lenses do not prove great light concentration uniformity and great light concentration efficiency, and so the solar cell cannot be fully excited to work at its full potential.
What is needed, therefore, is a light concentrator assembly and a solar cell apparatus with same, which can overcome the above shortcomings.
Many aspects of the light concentrator assembly and solar cell apparatus can be better understood with reference to the following drawings. The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present light concentrator assembly and solar cell apparatus. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views.
Embodiments of the present light concentrator assembly and solar cell apparatus will now be described in detail below and with reference to the drawings.
Referring to
The light concentrator assembly 20 includes a Fresnel lens 22, a plano-concave lens 24, and a compound parabolic concentrator (CPC) 26. The light concentrator assembly 20 is a substantially axial symmetric structure.
The Fresnel lens 22 includes a light incident surface 220 and an opposite Fresnel lens surface 222. The light incident surface 220 is a flat surface, and the first Fresnel lens surface 220 includes a set of concentric annular sections known as “Fresnel zones”. The Fresnel lens surface 222 faces the inside of the light concentrator assembly 10 to help prevent getting dusty. Incident light beams L on the light incident surface 220 is converged after transmitting through the Fresnel lens surface 222.
The plano-concave lens 24 is aligned with the Fresnel lens 22. A distance between the the plano-concave lens 24 and the Fresnel lens 22 is less than a focal length of the Fresnel lens 22. The plano-concave lens 24 has a concave surface 240 facing the Fresnel lens surface 222 and an opposite plane surface 242. The plano-concave lens 24 is positioned in the path of the light from the Fresnel lens 22 to further converge the light beams before the light converged to the Fresnel lens 22's focal point (not shown).
The CPC 26 is aligned with the plano-concave lens 24. The CPC 26 includes a light incident opening 260, an opposite light output opening 262, and a parabolic reflecting surface 261 located between the light incident opening 260 and the light output opening 262. The light incident opening 260 opposes the plane surface 242. The light from the plano-concave lens 24 may first be converged before entering the CPC 26. The light from the plano-concave lens 24 then is reflected and guided to the solar cell device 30 by the parabolic reflecting surfaces 261.
The solar cell device 30 is aligned with the light output opening 262 to receive the light output from the light concentrator assembly 10. The solar cell device 30 may have one or more solar cells to convert the light energy to electrical energy. The solar cells device 30 may be attached to the light output opening 262, or under the light output opening 262. The solar cell device 30 may be the same size as the light output opening 262.
A radius of the Fresnel lens is in a range of 50 mm-65 mm. A focal length of the Fresnel lens is in a range of 100 mm-120 mm. A center thickness of the plano-concave lens is in a range of 1 mm-3 mm. A radius of the plano-concave lens is in a range of 10 mm-20 mm. A radius of the light incident opening of the compound parabolic concentrator is in a range of 2 mm-5 mm. A height of the compound parabolic concentrator is in a range of 5 mm-10 mm. A radius of the solar cell device is in a range of 0.5 mm-2.5 mm. In the present embodiment, the radius of the Fresnel lens is about 60 mm, and the focal length of the Fresnel lens is about 118 mm. The center thickness of the plano-concave lens 24 is about 2 mm, and the radius of the plano-concave lens is about 15 mm. The radius of the light incident opening 260 of the CPC 26 is about 3.63 mm. The height of the CPC 26 is about 9 mm, and the radius of the solar cell device 30 is about 1.3 mm.
Referring to
As seen from
While certain embodiments have been described and exemplified above, various other embodiments from the foregoing disclosure will be apparent to those skilled in the art. The present invention is not limited to the particular embodiments described and exemplified but is capable of considerable variation and modification without departure from the scope of the appended claims.
Number | Date | Country | Kind |
---|---|---|---|
099134650 | Oct 2010 | TW | national |