1. Technical Field
The present disclosure relates to a device which gathers solar energy.
2. Description of Related Art
In typical solar energy gathering devices, a solar cell panel or a heat gathering pipe is used. No matter which component is used, a total of gathered solar energy is determined by a surface area of the component exposed to light, which can increase the cost of the solar cell panel or the heat gathering pipe.
What is needed, therefore, is a solar energy gathering device, which can overcome the above shortcomings.
Many aspects of the present solar energy gathering device 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 solar energy gathering device. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views.
Embodiments of the present solar energy gathering device will now be described in detail below and with reference to the drawings.
Referring to
Each of the heat gathering units 20 includes a glass block 24 and a heat pipe 22. Each of the glass blocks 24 has a vacuum receiving space 248 receiving the heat pipe 22 therein. In the present embodiment, a shape and a size of the vacuum receiving space 248 are substantially adapted for those of the heat pipe 22. In other embodiments, the vacuum receiving space 248 can be a little greater than the heat pipe 22. The vacuum receiving space 248 helps heat preservation for the heat pipe 22. The glass block 24 is transparent to light. In the present embodiment, a top surface 249 of the glass block 24 is flat. In other embodiments, the top surface 249 of the glass block 24 can be in other shapes, for example, the glass block 24 is a in an elongated pipe shape, and the top surface 249 can be a cylindrical outer surface.
Each of the heat pipes 22 includes a main body 228 and a plurality of spherical knobs 226 extending from the main body 228 and in communication with the main body 228. The main body 228 is divided into a plurality of sections by the spherical knobs 226. An inner diameter of each of the spherical knobs 226 is greater than that of the main body 228. The heat pipe 22 is made of a thermal conductive metallic material, such as stainless steel, aluminium (Al), copper (Cu) and alloy of aluminium and copper. The heat pipe 22 can contain a fluid 28 therein. A distal end 222 of the heat pipe 22 is in contact with the heat storage unit 10 for transferring heat to the heat storage unit 10. In order to be better thermal contact, a heat conductive glue 26 is applied to an interface between the distal end 222 of the heat pipe 22 and the heat storage unit 10.
Each of the Fresnel lenses 30 includes a flat bottom surface 32 attached to the top surface 249 of one of the glass blocks 24, and a light incident surface 34 facing upwards. The light incident surface 34 has a plurality of concentric annular protrusions, and heights of the concentric annular protrusions are gradually increased in direction away from a center of the light incident surface 34. A focal point of each of the Fresnel lenses 30 is located at one of the respective spherical knobs 226. Preferably, the focal point of each of the Fresnel lenses 30 is located at a central line of the spherical knobs 226. As the glass block 24 is transparent, the Fresnel lenses 30 can converge light to the respective spherical knobs 226, such that the heat pipes 22 can receive solar energy, and thereby the heat pipes 22 are heated, then the heat pipes 22 can transfer the heat to the heat storage unit 10.
The spherical knobs 226 provide more space for receiving solar energy gathered by the Fresnel lenses 30. Other sections of the top surface 249 of the glass block 24, not having the Fresnel lenses 30, can directly receive solar light, and the solar light can reach the heat pipes 22 either through the glass block 24. No matter how small the heat pipes 22 are, all of the solar energy can be gathered to the heat pipes 22.
The heat storage unit 10 can be connected to a user's house.
It is understood that the above-described embodiments are intended to illustrate rather than limit the disclosure. Variations may be made to the embodiments and methods without departing from the spirit of the disclosure. Accordingly, it is appropriate that the appended claims be construed broadly and in a manner consistent with the scope of the disclosure.
Number | Date | Country | Kind |
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101116448 | May 2012 | TW | national |