Department of Drilling and Oil Mechanics Field, Kasdi Merbah University, 30000, Ouargla, Algeria.
Laboratory of Promotion and Valorization of Saharan Resources (VPRS), Kasdi Merbah University, 30000, Ouargla, Algeria.
Environ Sci Pollut Res Int. 2024 Aug;31(40):53315-53328. doi: 10.1007/s11356-024-34776-8. Epub 2024 Aug 26.
The purpose of this study is to explore the effects of accumulated dust and weather conditions on the energy generated by solar photovoltaic panels in Ouargla, Algeria, between May 3 and August 3, 2023. For this experiment, two monocrystalline panels with a power output of 390 W manufactured by Zergoune Green Energy Company, as well as data-logging equipment, were used. The first panel was perfectly cleaned before starting every test and the second panel remained uncleaned. On day 90, the cleaned panel maintained an average power of 193 W, while the dusty panel exhibited a lower average power of 139 W. The greatest average reduction in efficiency, approximately 36.32%, occurred after 3 months of exposure to weather conditions. The scanning electron microscope (SEM) analysis demonstrates the existence of microscopic dust particles which prevent part of solar radiation away instead of being absorbed by the photovoltaic cells, leading to a drop in the efficiency of the PV module. The primary chemical elements found in dust are oxygen, silicon, aluminum, and magnesium.
本研究旨在探讨在 2023 年 5 月 3 日至 8 月 3 日期间,阿尔及利亚瓦尔格拉市的积尘和天气条件对太阳能光伏板产生的能量的影响。为此实验,使用了由 Zergoune Green Energy 公司生产的功率输出为 390 W 的两块单晶光伏板和数据记录设备。在每次测试前,第一块光伏板被完全清洁,而第二块则保持未清洁状态。在第 90 天,清洁后的光伏板保持了 193 W 的平均功率,而积尘的光伏板则表现出较低的 139 W 平均功率。经过 3 个月的天气暴露后,效率的最大平均降幅约为 36.32%。扫描电子显微镜 (SEM) 分析表明,存在微小的尘埃颗粒,这些颗粒会阻止部分太阳辐射,而不是被光伏电池吸收,从而导致光伏组件效率下降。尘埃中的主要化学元素是氧、硅、铝和镁。