砾石床增强光伏/太阳能烟囱的性能:实验评价

Energy Storage Pub Date : 2025-03-04 DOI:10.1002/est2.70149
Firas Hussein Merie, Omer K. Ahmed
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引用次数: 0

摘要

本研究旨在通过结合多孔介质来分析和提高太阳能/电压烟囱的性能,特别是在太阳能电池板下方使用砾石层来促进冷却并提高效率。砾石作为传热介质,将面板上的热量散发到周围的空气中,从而降低面板的温度。对有和无多孔介质的系统进行了对比分析。结果表明,多孔介质的集成提高了光伏/太阳能混合烟囱的性能。其中,正午时的电能输出由无多孔介质时的395.56 W增加到有多孔介质时的447.98 W。试验开始时电效率达到峰值,无多孔介质时达到14.51%,有多孔介质时达到15.22%。中午,无多孔介质时的电效率为11.5%,有多孔介质时的电效率为12.2%。然而,随着太阳辐射强度的增加,效率逐渐下降。另一方面,有多孔介质烟囱的热效率低于无多孔介质烟囱,分别为53.45%和59.611%。无多孔介质时系统总效率为65%,有多孔介质时系统总效率为59.611%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Augumation of PV/Solar Chimney Using Gravel Bed: Experimental Appraisal

This study aims to analyze and enhance the performance of a solar/voltage chimney by incorporating porous media, specifically using a gravel layer beneath the solar panels to facilitate cooling and improve efficiency. The gravel acts as a heat transfer medium, dissipating heat from the panels to the surrounding air, thereby reducing their temperature. A comparative analysis was conducted between systems with and without porous media. The results demonstrated that integrating porous media enhances the performance of the hybrid photovoltaic/solar chimney. Specifically, the electrical energy output increased from 395.56 W without porous media to 447.98 W with porous media at noon. The peak electrical efficiency was observed at the beginning of the test, reaching 14.51% without porous media and 15.22% with porous media at 9 a.m. At midday, electrical efficiency was 11.5% without porous media and 12.2% with porous media. However, as solar radiation intensity increased, efficiency gradually declined. On the other hand, the thermal efficiency of the chimney with porous media was lower compared to the system without it, with values of 53.45% and 59.611%, respectively. The total efficiency of the system without porous media was 65%, while with porous media, it reached 59.611%.

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