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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

作     者:T.K.N. Sweet M H Rolley W Li M C Paul M Gao A R Knox 

作者机构:School of Engineering Cardiff University Cardiff. CF24 3AA UK School of Engineering University of Glasgow Glasgow G12 8QQ UK 

出 版 物:《Energy Procedia》 

年 卷 期:2017年第142卷

页      面:809-814页

主  题:Concentrator photovoltaic triple-junction solar cell thermoelectric cell temperature secondary optical element optimization 

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%.

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