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Thermal-electrical model for energy estimation of a water cooled photovoltaic module

机译:用于水冷光伏模块能量估计的热电模型

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In this paper a theoretical model, which integrates both thermal and electrical aspects, has been developed in order to analyze an unglazed Photovoltaic (PV) module with water cooling. The coolant flow induces higher conversion efficiency due to lower temperatures. However, a non-uniform temperature field of solar cells arises with a consequent impact on their electrical parameters and the corresponding power losses are investigated. Outdoor experimental tests have been carried out to indirectly estimate the temperature of the solar cells at known conditions of irradiance and ambient temperature and to characterize the PV module at Standard Test Conditions (STC). In the outdoor characterization of commercial PV modules without cooling, the current voltage curves are corrected to STC with a standard procedure, for comparing them with the manufacturer datasheets. In this paper, it is experimentally verified that the STC can be reasonably reproduced in the field in clear sky conditions thanks to a suitable cooling. Finally, by means of daily simulations, the performance improvement with variable coolant flow rates, for two reference sites at different climates, is investigated in details. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本文中,已经建立了一个理论模型,该模型综合了热学和电学方面的内容,以分析带有水冷的无釉光伏(PV)模块。由于温度较低,冷却剂流导致较高的转换效率。但是,太阳能电池的温度场不均匀,从而影响其电参数,并研究了相应的功率损耗。已经进行了室外实验测试,以间接估计已知辐照度和环境温度下的太阳能电池温度,并在标准测试条件(STC)下表征光伏组件。在不冷却的商用光伏模块的室外特性分析中,采用标准程序将电流电压曲线校正为STC,以将其与制造商数据表进行比较。在本文中,通过实验验证了通过适当的冷却,STC可以在晴朗的天空条件下在野外合理地复制。最后,通过每日模拟,详细研究了不同气候下的两个参考站点在可变冷却剂流量下的性能改进。 (C)2016 Elsevier Ltd.保留所有权利。

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