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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >An experimental analysis of the optical, thermal and power to weight performance of plastic and glass optics with AR coatings for embedded CPV windows
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An experimental analysis of the optical, thermal and power to weight performance of plastic and glass optics with AR coatings for embedded CPV windows

机译:嵌入式CPV窗口塑料和玻璃光学塑料和玻璃光学性能的实验分析

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摘要

A low concentrator photovoltaic is presented and the optical losses within a double glazed window assembly are described. The use of plastic instead of glass is analyzed for its reduced weight and hence greater power to weight ratios. Although the transmittance of glass is higher, the power to weight ratio of the plastic devices was almost double that of the glass counterparts and even higher than the original non concentrating silicon cell. The plastic Topas material was found to be the best performing material overall. Crystal Clear, a plastic resin, had a higher average transmittance but had a lower optical efficiency due to the cold cast manufacturing process in comparison to injection moulding of the other materials. This proves the importance of considering both the materials and their associated manufacturing quality.
机译:提出了低聚光器光伏,并且描述了双玻璃窗组件内的光学损耗。 分析使用塑料代替玻璃的重量减轻,因此更大的重量比率。 虽然玻璃的透射率较高,但塑料装置的功率与玻璃对应物的功率几乎是较高的,甚至高于原始非浓缩硅电池。 发现塑料ToPAS材料是总体上最好的材料。 晶莹剔透,塑料树脂具有较高的平均透射率,但由于与其他材料的注射成型相比,由于冷铸造工艺而具有较低的光学效率。 这证明了考虑材料及其相关的制造质量的重要性。

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