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Improved flat-panel type photovoltaic transducer

A transducer and flat-plate technology, which is applied in the field of improved solar concentrators, can solve the problem of high threshold and achieve the effects of cost reduction and convenient use

Inactive Publication Date: 2012-01-11
郭保光
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

For medium and small-scale solar power generation, high threshold is currently the biggest obstacle

Method used

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  • Improved flat-panel type photovoltaic transducer
  • Improved flat-panel type photovoltaic transducer
  • Improved flat-panel type photovoltaic transducer

Examples

Experimental program
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Embodiment Construction

[0042] As shown in Figure 1. In order to illustrate the shape of the reflective groove formed by the reflective film, the cross section of the reflective groove is a trumpet shape with a large mouth and a small bottom. It may be advisable to think of the flat-shaped finished product as composed of strip-shaped units (the reflective grooves are installed parallel to the east-west direction). The reflective film of each unit is made into a groove shape, and its cross-section is shown in Figure 1 ( Figure 1a , b) shown, there are two styles. The two styles have their own strengths. The cross section of the reflective film of the first style is a hyperbola. There is a plate-shaped receiver between the reflective film with a hyperbolic cross-section at the bottom of the groove. Generally speaking, the hyperbola adopts a confocal hyperbola, and the hyperbolas on both sides can adopt hyperbolas with different eccentricities. (The shape of the receiver has several changes, see bel...

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PUM

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Abstract

The invention relates to an improved flat-panel type photovoltaic transducer. In the transducer provided by the invention, light reflection grooves are uniformly arranged on a plane to be used as daylight collectors; light absorption grooves are formed at the bottom of the light reflection grooves and used for installing photovoltaic receiving devices; the cross sections of the light reflection grooves are in a horn shape with large mouth and small bottom; the cross sections of reflecting films at the two sides of the light reflection grooves are dual curves; a flat-panel photovoltaic receiver is arranged between the dual curves at the bottom of the grooves; or the cross sections of the reflecting films at the two sides of the light reflection grooves are straight lines; the cross sections of the light reflection grooves form a trapezoid; and correspondingly, light receivers are installed at the bottom of the grooves, and the cross section shape of the light receivers is a circular arc or a straight line. When the light intensity is enhanced for three times, the conversion efficiency of the grooves can be improved for about 5-6%. The final finished product of the improved flat-panel type photovoltaic transducer is in a panel shape, is the same to a flat-panel type photovoltaic transducer and is most suitable for substituting the building material of a roof.

Description

technical field [0001] The present invention relates to an improved solar concentrator. It involves a purely optical collection method, which has nothing to do with the material and performance of photovoltaic receiving devices. Compatible with any photovoltaic receiving device. Background technique [0002] Nowadays, people are gradually building up their expectations for the development and utilization of superior energy. Since there is no pollution during use, solar technology is particularly popular. However, due to the low energy density of light incident on the earth's surface and the high price of photovoltaic receivers, it is a one-time investment to directly use photovoltaic receivers for solar power generation. Far more than other power generation methods. However, because solar power generation has its irreplaceable advantages, it is still the only choice in some special applications, such as artificial satellites and alpine weather stations. For large-scale s...

Claims

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Application Information

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IPC IPC(8): H02N6/00G02B5/10G02B1/10H02S40/22
CPCY02B10/10Y02E10/50
Inventor 郭保光
Owner 郭保光