Solar energy and temperature difference power generation device

A technology for solar power generation panels and thermoelectric power generation, applied in photovoltaic power generation, generators/motors, electrical components, etc., can solve the problems of heat dissipation, increase the stability of complex processes, achieve stable performance, and help heat conduction , the effect of reducing heat conduction

Inactive Publication Date: 2017-01-11
ZHEJIANG GEMCORE TECH
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  • Abstract
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  • Claims
  • Application Information

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Problems solved by technology

[0005] However, there is still room for simplification in the structure, especially the components such as the first rapid heat conduction device and the second rapid heat conduction device will not only generate thermal resistance of at least four contact surfaces at the joints, which will have a certain impact on heat dissipation, and the production and processing In the process, it will also increase the complexity of the process and the stability of the product in the later use process

Method used

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  • Solar energy and temperature difference power generation device

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Embodiment Construction

[0025] like figure 1 and figure 2 As shown, it is a preferred embodiment of the present invention, which consists of a condenser lens 1, a radiator 2, a solar power generation panel 3, an insulating layer 4, a thermoelectric power generation chip 5, a protective layer 6, a respirator 7 and a wire 8, etc.

[0026] Wherein, an insulating layer 4 is directly formed on the surface of the radiator 2 , and more than one thermoelectric power generation chip 5 is directly formed between the insulating layer 4 and the solar power generation panel 3 .

[0027] The insulating layer 4 is directly fabricated on the surface of the heat sink 2 by physical or chemical means, that is to say, there is no other medium between the contact surface of the insulating layer 4 and the heat sink 2, and the two materials are firmly bonded and in direct contact.

[0028] The thermoelectric power generation chip 5 is composed of a first circuit layer 51, a thermoelectric power generation layer 52 and a ...

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Abstract

A solar photoelectric module sequentially comprises a gallium arsenide solar cell, a first quick heat conducting device, a temperature difference power generation unit, a second quick heat conducting device and a radiator from top to bottom. A solar energy and temperature difference power generation device comprises a radiator, an insulating layer and a solar power generation panel, the insulating layer is arranged on the surface of the radiator, and at least one temperature difference power generation chip is arranged between the insulating layer and the solar power generation panel. According to the solar energy and temperature difference power generation device, one or more temperature difference power generation chips not only can be fixed between the solar power generation panel and the surface of the radiator in a module mode, but also can be fixed in an integrated mode to form a modularization device and especially can be freely combined through U-shaped slots formed in the two sides of the radiator; the solar energy and temperature difference power generation device not only is suitable for large-batch industrialized production, but also is high in power generation efficiency, stable in performance and good in market prospect.

Description

technical field [0001] The invention relates to a device for generating electricity using solar photovoltaics, in particular to a modular device for generating electricity by using a thermoelectric power generation sheet at the same time. Background technique [0002] Solar power generation mainly uses the photoelectric effect of semiconductor materials to convert solar energy into electrical energy. The commonly used solar power generation panels include monocrystalline silicon solar cells, polycrystalline silicon solar cells, amorphous silicon solar cells (thin film solar cells) and multi-component solar cells. Thermoelectric power generation is based on the Seebeck effect. It is composed of two different types of semiconductor thermoelectric materials, N and P, connected in series through a conductive sheet. When the hot end is heated, a temperature difference is established between the two ends of the device. , both carriers flow to the cold end, forming a thermoelectri...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02N11/00H02S40/22H02S40/42
CPCY02E10/52H02N11/002H02S40/22H02S40/42
Inventor 诸建平
Owner ZHEJIANG GEMCORE TECH
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