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Analytical Expression For Electrical Efficiency Of Pv/t Hybrid Air Collector

机译:Pv / t混合空气集热器电效率的解析表达式

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The overall electrical efficiency of the photovoltaic (PV) module can be increased by reducing the temperature of the PV module by withdrawing the thermal energy associated with the PV module. In this communication an attempt has been made to develop analytical expression for electrical efficiency of PV module with and without flow as a function of climatic and design parameters. The four different configurations of PV modules are considered for the present study which are defined as; case A (Glass to glass PV module with duct), case B (Glass to glass PV module without duct), case C (Glass to tedlar PV module with duct), case D (Glass to tedlar PV module without duct). Further, experiments were carried out for all configurations under composite climate of New Delhi. It is found that the glass to glass PV modules with duct gives higher electrical efficiency as well as the higher outlet air temperature amongst the all four cases. The annual effect on electrical efficiency of glass to glass type PV module with and without duct is also evaluated. The annual average efficiency of glass to glass type PV module with and without duct is 10.41% and 9.75%, respectively.
机译:可以通过提取与PV模块关联的热能来降低PV模块的温度,从而提高PV(PV)模块的整体电效率。在这种交流中,已经尝试开发出有和没有流量时,PV模块的电效率与气候和设计参数有关的解析表达式。本研究考虑了四种不同的光伏组件配置,分别为:案例A(带风道的玻璃到玻璃PV模块),案例B(不带风道的玻璃到玻璃PV模块),案例C(带风道的玻璃到泰德尔PV模块),案例D(不带风道的玻璃到泰德尔PV模块)。此外,在新德里的复合气候下针对所有配置进行了实验。发现在所有四种情况下,带有风道的玻璃对玻璃光伏组件可提供更高的电效率以及更高的出口空气温度。还评估了带或不带风道的玻璃对玻璃型PV组件对电效率的年度影响。带和不带风道的玻璃到玻璃型光伏组件的年平均效率分别为10.41%和9.75%。

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