相变材料冷却光伏板的参数环境经济分析

Q1 Chemical Engineering International Journal of Thermofluids Pub Date : 2025-05-01 Epub Date: 2025-03-01 DOI:10.1016/j.ijft.2025.101151
Tarek Ibrahim , Jalal Faraj , Hicham El Hage , Rani Taher , Samer Ali , Mahmoud Khaled
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引用次数: 0

摘要

本研究进行了参数分析,以评估使用相变材料(PCM)冷却光伏板的效果,同时考虑了两种情况:家庭住宅和发电厂的经济和环境方面。本研究采用能耗比(R)作为能源利用效率的指标,其定义为建筑物的实际能耗与光伏板的最大发电量之比。结果表明,PCM-PV +散热器组合(CPCM-PV-HS)系统性能最高,住宅和电厂的平均发电量分别为634.35 × R kWh和132182.7 × R kWh。相应的经济节约分别为272.77美元和56,838.57美元,而二氧化碳排放量的减少平均为367.92 x R kg和76,665.97 x R kg。采用PCM (PV-PCM)冷却方法的光伏面板在所有指标中记录的值最低。此外,在一年中的几个月里,效率提高与节约和减少二氧化碳之间存在线性关系。这项研究强调了基于pcm的冷却系统在提高光伏面板性能方面的潜力,为能源效率、成本节约和环境可持续性提供了有价值的见解。
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Parametric enviro-economic analysis of cooling photovoltaic panels with phase change materials
This study conducts a parametric analysis to evaluate the effects of cooling PV panels using phase change materials (PCM), considering both economic and environmental aspects for two cases: a domestic house and a power plant. The study employs the consumption ratio (R), defined as the ratio between the actual energy consumption of a building and the maximum energy producible by the PV panels, as an indicator of energy use efficiency. Results show that the combined PCM-PV with heat sink (CPCM-PV-HS) system achieved the highest performance, with average energy production values of 634.35 × R kWh and 132,182.7 × R kWh for the domestic house and power plant, respectively. Corresponding economic savings were $272.77 × R and $56,838.57 × R, while reductions in CO₂ emissions averaged 367.92 × R kg and 76,665.97 × R kg The PV panel with PCM (PV-PCM) cooling method recorded the lowest values across all metrics. Additionally, a linear relationship was observed between efficiency enhancements and both savings and CO₂ reductions over the months of the year. This study underscores the potential of PCM-based cooling systems to improve PV panel performance, providing valuable insights for energy efficiency, cost savings, and environmental sustainability.
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来源期刊
International Journal of Thermofluids
International Journal of Thermofluids Engineering-Mechanical Engineering
CiteScore
10.10
自引率
0.00%
发文量
111
审稿时长
66 days
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