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Experimental characterization and multi-physics simulation of a triple-junction cell in a novel hybrid III:V concentrator photovoltaic-thermoelectric receiver design with secondary optical element

机译:一种新型杂交III中三孔电池的实验表征及多物理模拟:V浓缩器光伏 - 热电接收机设计与二次光学元件

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摘要

A lattice-matched monolithic triple-junction Concentrator Photovoltaic cell (InGa_((0.495))P/GaIn_((0.012))As/Ge) was electrically, and thermally interfaced to a Thermoelectric Peltier module. A single optical design secondary lens was bonded to the CPV-TE receiver. The hybrid SILO-CPV-TE solar energy harvesting device was electrically, thermally and theoretically investigated. The electrical performance data for the cell under variable irradiance and cell temperature conditions were measured using the integrated thermoelectric module as both a temperature sensor and as a solid-state heat pump. The cell was electrically characterised under standard test conditions (1000 W/m~2 irradiance, 25°C temperature and AM1.5G spectrum) for comparison with literature data. Transient multiphysics simulations in ANSYS CFX 15.0 were carried out to calculate cell temperatures and to determine the short circuit current and temperature coefficient in a scaling law. The optimization was used to determine 15 model parameters for the component sub-cells within the triple-junction cell at STC with a MATLAB scaling law. The root-mean-square error in electrical currents between measurement and simulations was 0.66%.
机译:晶格匹配的整体式三 - 结浓缩器光伏电池(Inga _((0.495))p / gain _((0.012))电气,电极和热界面热电堵塞。单个光学设计二次透镜粘合到CPV-TE接收器。混合筒CPV-TE太阳能收集装置电气,热和理论上研究。使用集成的热电模块作为温度传感器和固态热泵,测量可变辐照度和电池温度条件下电池的电气性能数据。该电池在标准试验条件下(1000W / m〜2辐照度,25℃温度和AM1.5G光谱)电气表征,以与文献数据进行比较。对ANSYS CFX 15.0中的瞬态多体血管模拟进行计算以计算细胞温度并确定扩展法中的短路电流和温度系数。优化用于在STC与Matlab缩放法中确定三射线电池内的组分子单元的型号参数。测量和模拟之间电流中的根均方误差为0.66%。

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