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Numerical Analyses of High Concentrator Triple-Junction Solar Cell under Jet Impingement Cooling

机译:喷气冲击冷却下高集中器三界太阳能电池的数值分析

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The triple junction III-V(TJ)solar cells are commonly used for the high concentrator photovoltaic(HCPV)arrangements as they have high efficiency and have a good response to high concentration.Nevertheless,the efficiency of solar cells decreases with an increase of temperature especially under high solar irradiance concentration ratios where the temperature of solar cells reaches to very high levels.Consequently,heat dissipation by cooling is crucial for a concentrator photovoltaic solar cell at high concentration.Moreover,significant temperature difference possibly will exist within the cell body,so it is vital to identify the presence of thermal stresses that can cause failure and deformation of the cell body.This work investigated the capability of impinging jet cooling technique to maintain a triple junction solar cell temperature under recommended operating conditions.Furthermore,thermal stress analyses were perfonned.The results showed that employing jet impingements cooling improved both of thermal energy and electrical generation.In addition,the thermal stress is considerably decreased with increasing the cooling inlet mass flow rate.
机译:三结III-V族(TJ)太阳能电池是通常使用的高聚光光伏(HCPV)安排,因为它们具有高效率并具有良好的响应于高concentration.Nevertheless,太阳能电池的效率随着温度的增加而减小尤其是在高太阳辐照浓度比率,其中太阳能电池的下游,以非常高的levels.Consequently温度,通过冷却散热是在高concentration.Moreover聚光光伏太阳能电池是至关重要的,显著温差可能会在细胞体内存在,因此它是识别可导致细胞body.This工作的失效和变形的热应力的存在重要研究冲击射流冷却技术,以保持在推荐的操作conditions.Furthermore,热应力分析的三结太阳能电池的温度的能力被perfonned.The结果表明,采用射流撞击综合征冷却即兴粘弹性阻尼器两者热能和电generation.In。此外,热应力显着增加与冷却入口质量流量降低。

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