Heat exchanging device and photoelectric photo-thermal photo-cool building integrated assembly

A heat exchange device and component technology, which is applied in photovoltaic power generation, electrical components, sustainable buildings, etc., can solve the problems of component temperature rise, affecting the power generation efficiency of solar cell components, and reducing the power of solar cell components, so as to reduce loss, Effect of reducing heat transfer and alleviating air conditioning load

Active Publication Date: 2014-01-01
湖南红太阳新能源科技有限公司
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0002] At present, solar crystalline silicon components use sunlight to generate electricity. After solar components are irradiated by sunlight, part of the light energy is converted into electrical energy, and part of it is absorbed by the component in the form of heat energy, and the temperature of the component will increase; the ideal working temperature of t

Method used

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  • Heat exchanging device and photoelectric photo-thermal photo-cool building integrated assembly
  • Heat exchanging device and photoelectric photo-thermal photo-cool building integrated assembly

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Example Embodiment

[0017] Such as figure 2 As shown, a heat exchange device includes a rectangular parallelepiped heat exchange box 2, the connection direction of the left and right ends of the heat exchange box 2 is the length direction of the heat exchange box 2, and the connection direction of the front and rear ends is the width of the heat exchange box 2 Direction, one end of the length direction of the heat exchange box 2 is provided with a liquid inlet 7 for passing the heat exchange liquid 5 into the heat exchange box 2, and the other end of the length direction of the heat exchange box 2 is provided with a discharge port 7 from the heat exchange box 2 The hot liquid outlet 1; the heat exchange box 2 is equipped with a plurality of inclined heat absorption fins 6 along the length direction of the heat exchange box 2, and the heat absorption fins 6 are arranged in parallel, and the inclination angle of the heat absorption fins 6 is 45°, There is a flow channel 8 for the heat exchange liq...

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Abstract

The invention relates to photoelectric photo-thermal photo-cool curtain walls, in particular to a heat exchanging device. The heat exchanging device comprises a cuboid heat exchanging box. A liquid inlet is formed in one end of the heat exchanging box in the length direction and a liquid outlet is formed in the other end of the heat exchanging box in the length direction, wherein heat exchanging liquid enters the heat exchanging box through the liquid inlet and is discharged from the heat exchanging box through the liquid outlet. A plurality of inclined heat absorbing sheets are installed inside the heat exchanging box in the length direction and a flow channel where the heat exchanging liquid flows is reserved between every two adjacent heat absorbing sheets. A box body of the heat exchanging box is made of heat conductive materials. The invention further relates to a photoelectric photo-thermal photo-cool building integrated assembly which comprises a solar cell module with the top face and the bottom face respectively made of glass. The heat exchanging device is installed on the bottom face of the solar cell module. The top face of the heat exchanging box is installed on the back face of the solar cell module. The heat exchanging device can absorb the heat energy generated in the power generating process of the solar cell module and the heat energy generated through sunlight illumination and the photoelectric photo-thermal photo-cool building integrated assembly can utilize the heat energy.

Description

technical field [0001] The invention relates to a photoelectric light heat light cold curtain wall. Background technique [0002] At present, solar crystalline silicon components use sunlight to generate electricity. After solar components are irradiated by sunlight, part of the light energy is converted into electrical energy, and part of it is absorbed by the components in the form of heat energy, and the temperature of the components will increase; the ideal working temperature of solar cell components is 25 degrees Celsius. Generally, it can be used normally if the temperature does not exceed 45 degrees Celsius; the power of the solar cell module will decrease with the increase of temperature, which will affect the power generation efficiency of the solar cell module, and the high temperature will affect the life of the solar cell. Contents of the invention [0003] The purpose of the present invention is to address the deficiencies of the prior art, to provide a heat ...

Claims

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Application Information

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IPC IPC(8): H02S40/42E04D13/18
CPCY02B10/20Y02B10/12Y02B10/10Y02E10/50
Inventor 王翼伦张福家侯长龙
Owner 湖南红太阳新能源科技有限公司
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