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Thermal Performance Assessment and Validation of High-Concentration Photovoltaic Solar Cell Module

机译:高浓度光伏太阳能电池模块的热性能评估与验证

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摘要

A high-concentration photovoltaic (HCPV) system with high optic-electric transition efficiency was developed in order to increase the electrical energy generated by a photovoltaic system. However, device temperature rises quickly because of the solar cell operating under concentrated-light operation conditions. Therefore, system output power or energy-conversion efficiency decreases as the temperature of the cell incorporated within the system increases. Consequently, thermal management has become an important issue for HCPV solar cell package. In this paper, the finite element (FE) analysis was used to initially establish a detailed FE model of the HCPV solar cell package as a baseline model. Moreover, the dissipation power of the solar cell obtained by employing a predicted function is applied. Outdoor experiments were also performed to validate the baseline FE model with the estimated dissipation power. After validation of the simulation, an analysis of the thermal performance variations under different HCPV solar cell package design parameters was performed. Simulation results of different design parameters revealed that the geometry of the heat sink plate played an important role in the thermal management of the HCPV solar cell package.
机译:开发了具有高光电过渡效率的高浓度光伏(HCPV)系统,以增加由光伏系统产生的电能。然而,由于在浓缩光操作条件下运行的太阳能电池,器件温度迅速上升。因此,随着在系统内的电池的温度增加,系统输出功率或能量转换效率降低。因此,热管理已成为HCPV太阳能电池包的重要问题。在本文中,使用有限元(FE)分析来初始建立HCPV太阳能电池包的详细FE模型作为基线模型。此外,应用通过采用预测功能而获得的太阳能电池的耗散功率。还进行了室外实验,以验证基线FE模型,估计耗散功率。在验证模拟后,执行了不同HCPV太阳能电池封装设计参数下的热性能变化的分析。不同设计参数的仿真结果表明,散热片的几何形状在HCPV太阳能电池封装的热管理中起着重要作用。

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