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恶劣气候条件下用于减轻光伏板积尘的纳米涂层效率的实验研究

Experimental investigation of a nano coating efficiency for dust mitigation on photovoltaic panels in harsh climatic conditions.

作者信息

Ahmed Asmaa, Elsakka Mohamed, Elhenawy Yasser, Amer Ahmed, Mansi Amr, Bassyouni Mohamed, Gadalla Mamdouh, Refaat Ahmed

机构信息

Mechanical Power Engineering Department, Port Said University, Port Said, Egypt.

Energy Research and Studies Centre, Port Said University, Port Said, Egypt.

出版信息

Sci Rep. 2024 Oct 3;14(1):23013. doi: 10.1038/s41598-024-72772-7.

Abstract

Dust accumulation on photovoltaic (PV) panels in arid regions diminishes solar energy absorption and panel efficiency. In this study, the effectiveness of a self-cleaning nano-coating thin film is evaluated in reducing dust accumulation and improving PV Panel efficiency. Surface morphology and elemental analysis of the nano-coating and dust are conducted. Continuous measurements of solar irradiances and ambient temperature have been recorded. SEM analysis of dust revealed irregularly shaped micron-sized particles with potential adhesive properties, causing shading effects on the PV panel surface. Conversely, the coating particles exhibited a uniform, spherical shape, suggesting effective prevention of dust adhesion. Solar irradiance ranged from 120 W/m² to a peak of 720 W/m² at noon. Application of the self-cleaning nano-coating thin film consistently increased short circuit current (I), with the coated panel averaging 2.8 A, which is 64.7% higher than the uncoated panel's 1.7 A. The power output of the coated panel ranged from 7 W to 38 W, with an average of approximately 24.75 W, whereas the uncoated panel exhibited a power output between 3 W and 23 W, averaging around 14 W. These findings highlight the substantial potential of nano-coating for effective dust mitigation, particularly in dusty environments, thus enhancing PV system reliability.

摘要

干旱地区光伏(PV)板上的灰尘积累会降低太阳能吸收和面板效率。在本研究中,评估了一种自清洁纳米涂层薄膜在减少灰尘积累和提高光伏板效率方面的有效性。对纳米涂层和灰尘进行了表面形态和元素分析。记录了太阳辐照度和环境温度的连续测量值。对灰尘的扫描电子显微镜(SEM)分析显示,有形状不规则的微米级颗粒,具有潜在的粘附特性,对光伏板表面造成遮光效应。相反,涂层颗粒呈现出均匀的球形,表明能有效防止灰尘粘附。太阳辐照度范围为120瓦/平方米至中午时的峰值720瓦/平方米。自清洁纳米涂层薄膜的应用持续提高了短路电流(I),涂覆面板的平均短路电流为2.8安,比未涂覆面板的1.7安高64.7%。涂覆面板的功率输出范围为7瓦至38瓦,平均约为24.75瓦,而未涂覆面板的功率输出在3瓦至23瓦之间,平均约为14瓦。这些发现突出了纳米涂层在有效减轻灰尘方面的巨大潜力,特别是在多尘环境中,从而提高了光伏系统的可靠性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c5f/11449939/662d26c0c77b/41598_2024_72772_Fig1_HTML.jpg

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