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首页> 外文期刊>Journal of Thermodynamics >Exergetic Optimization of a Solar Photovoltaic Array
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Exergetic Optimization of a Solar Photovoltaic Array

机译:太阳能光伏阵列的能量优化

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摘要

An exergetic optimization is developed to determine the optimal performance and design parameters of a solar photovoltaic (PV) array. A detailed energy and exergy analysis is carried out to evaluate the electrical performance, exergy destruction components, and exergy efficiency of a typical PV array. The exergy efficiency of a PV array obtained in this paper is a function of climatic, operating, and design parameters such as ambient temperature, solar radiation intensity, PV array temperature, overall heat loss coefficient, open-circuit voltage, short-circuit current, maximum power point voltage, maximum power point current, and PV array area. A computer simulation program is also developed to estimate the electrical and operating parameters of a PV array. The results of numerical simulation are in good agreement with the experimental measurements noted in the previous literature. Finally, exergetic optimization has been carried out under given climatic, operating, and design parameters. The optimized values of the PV array temperature, the PV array area, and the maximum exergy efficiency have been found. Parametric studies have been also carried out.
机译:开发了一种积极的优化方法来确定太阳能光伏(PV)阵列的最佳性能和设计参数。进行了详细的能量和火用分析,以评估典型PV阵列的电性能,火用破坏成分和火用效率。本文获得的光伏阵列的火用效率是气候,运行和设计参数的函数,例如环境温度,太阳辐射强度,光伏阵列温度,总热损失系数,开路电压,短路电流,最大功率点电压,最大功率点电流和PV阵列面积。还开发了计算机仿真程序来估计PV阵列的电气和运行参数。数值模拟的结果与先前文献中提到的实验测量结果非常吻合。最后,在给定的气候,运行和设计参数下进行了充分的优化。找到了光伏阵列温度,光伏阵列面积和最大火用效率的最佳值。还进行了参数研究。

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