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首页> 外文期刊>Journal of Environmental Management >Multi-objective optimization of a photovoltaic thermal-compound sensible rotary heat exchanger system using exergo-economic and enviro-economic approaches
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Multi-objective optimization of a photovoltaic thermal-compound sensible rotary heat exchanger system using exergo-economic and enviro-economic approaches

机译:基于能效-经济和环境-经济方法的光伏热敏复合旋转换热器系统多目标优化

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摘要

This paper presents exergo-economic and enviro-economic assessment of a novel building integrated photovoltaic thermal-compound sensible rotary heat exchanger (BIPVT-SRHX) system. The innovative BIPVT-SRHX system preheats/precools the outdoor air in winter/summer and generates electric power. The performance of the system are analyzed from the energy/exergy viewpoints for Kermanshah, Iran climatic conditions. Then, the multi-objective genetic algorithm (MOGA) optimization is used to optimize to determine the optimum values of geometric and operating parameters in order to maximize the annual average exergo-economic and enviro-economic aspects of the system. The considered geometric and operating parameters include the length, width and depth of the air channel located underneath the PV modules, the air mass flow rate, and the diameter, rotational velocity and length of the SRHX. Moreover, the annual performance of the optimized and non-optimized BIPVT-SRHX systems are compared. The results showed that the annual average exergo-economic and enviro-economic aspects of the optimized BIPVT-SRHX system are 0.0076 $/annum and 246.9 kWh/$, respectively. Furthermore, it was found that the annual average enviro-economic aspect, annual average exergo-economic aspect, and yearly sum of CO2 mitigation of the optimized BIPVT-SRHX system are respectively 36.8%, 23.1% and 37.7% higher than the non-optimized system.
机译:本文介绍了一种新型建筑一体化光伏热复合显式旋转热交换器(BIPVT-SRHX)系统的能效经济和环境经济评估。创新的BIPVT-SRHX系统在冬季/夏季预热/预冷室外空气并产生电能。该系统的性能从伊朗克曼沙赫的气候条件的能源/火用角度进行了分析。然后,使用多目标遗传算法(MOGA)优化来确定几何参数和操作参数的最佳值,以使系统的年平均用能经济和环境经济方面最大化。所考虑的几何参数和操作参数包括位于PV模块下方的空气通道的长度,宽度和深度,空气质量流量以及SRHX的直径,旋转速度和长度。此外,还比较了优化和未优化的BIPVT-SRHX系统的年度性能。结果表明,优化后的BIPVT-SRHX系统的年度平均能效经济和环境经济方面分别为0.0076美元/年和246.9千瓦时/美元。此外,发现优化的BIPVT-SRHX系统的年平均环境经济方面,年平均能效经济方面和二氧化碳减排总和分别比未优化的高36.8%,23.1%和37.7%。系统。

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