Abstract Optical characterization and durability of immersion cooling liquids for high concentration III-V photovoltaic systems
首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Optical characterization and durability of immersion cooling liquids for high concentration III-V photovoltaic systems
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Optical characterization and durability of immersion cooling liquids for high concentration III-V photovoltaic systems

机译:高浓度III-V光伏系统浸没冷却液的光学表征及耐久性

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AbstractThe optical transmittance and durability of several immersion cooling liquids that could be used for high concentration III-V photovoltaic systems are investigated. Firstly, the optical transmittance of the liquid candidates divided into three categories: synthetic oil, silicone oil and mineral oil are determined based on a double optical path-length transmittance method. The normalized photocurrent density of GaInP/GaInAs/Ge triple-junction solar cells when illuminated by the solar spectral irradiance filtered by each liquid is reported. Results show that the liquid candidates exhibit superior transmittance for the UV and visible wavelengths of interest, whereas they display some absorption bands in the 1200–1800nm spectrum and thus the photocurrent of the bottom subcell Ge decreases. This is not an issue since the bottom subcell normally produces excess current. Then, the optical transmittance of the liquid candidates is monitored during exposure to UV light, damp heat and high-temperature accelerated aging tests. The average transmittance for the wavelengths of interest is introduced to quantify changes in the optical transmittance of immersion cooling liquids after being subjected to the accelerated aging tests. Results from the accelerated aging tests indicate that dimethyl silicone oil, white oils A/B/C and C14 n-alkane are suitable for immersion cooling of multi-junction solar cells whose average transmittance losses are less than the total degradation value of 5% allowed for CPV modules under qualification tests in the IEC62108 standard. The optimum liquid for immersion cooling multi-junction solar cells is found to be dimethyl silicone oil due to its high transmittance
机译:<![cdata [ 抽象 研究了可用于高浓度III-V光伏系统的几种浸没式冷却液的光透射率和耐久性。首先,液体候选物的光学透射率为三类:合成油,硅油和矿物油是基于双光路长透射率法测定的。报道了通过通过每个液体过滤的太阳光谱辐照度照射时GAINP / GAINAS / GE三射线太阳能电池的归一化光电流密度。结果表明,液体候选物对紫外线和可见波长的透射率具有卓越的透射率,而它们在1200-1800nm光谱中显示一些吸收带,因此底部亚壳GE的光电流降低。这不是一个问题,因为底部子单元通常会产生多大电流。然后,在暴露于UV光,潮湿的热量和高温加速老化测试期间监测液体候选物的光学透射率。引入了感兴趣波长的平均透射率以在经受加速老化试验后量化浸没式冷却液的光学透射率的变化。加速老化试验结果表明,二甲基硅油,白色油脂A / B / C和C14 N-烷烃适用于多结太阳能电池的浸没冷却,其平均透射率损耗小于允许的总降解值5%对于IEC62108标准的资格测试下的CPV模块。由于其高透射率,发现浸没冷却多结太阳能电池的最佳液体是二甲基硅油

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