Cleaning of Photovoltaic Modules through Rain: Experimental Study and Modeling Approaches

IF 6 3区 工程技术 Q2 ENERGY & FUELS Solar RRL Pub Date : 2024-11-22 DOI:10.1002/solr.202400551
Fernanda Norde Santos, Stefan Wilbert, Elena Ruiz Donoso, Julie El Dik, Laura Campos Guzman, Natalie Hanrieder, Aránzazu Fernández García, Carmen Alonso García, Jesús Polo, Anne Forstinger, Roman Affolter, Robert Pitz-Paal
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Abstract

Predicting the amount of soiling accumulated on the collectors is a key factor when optimizing the trade-off between reducing soiling losses and cleaning costs. An important influence on soiling losses is natural cleaning through rain. Several soiling models assume complete cleaning through rain for daily rain sums above a model specific threshold and no cleaning otherwise. However, various studies show that cleaning is often incomplete. This study employs two statistical learning methods to model the cleaning effect of rain, aiming to achieve more accurate results than a simple totally cleaned/no cleaning answer while also considering other parameters besides the rain sum. The models are tested using meteorological and soiling data from 33 measurement stations in West Africa. Linear regression seems to be a good alternative for predicting the reduction in soiling levels after a rainfall.

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雨水对光伏组件的清洗:实验研究与建模方法
预测累积在收集器上的污垢量是优化减少污垢损失和清洁成本之间权衡的关键因素。雨水对土壤污染的自然清洗是影响土壤污染损失的重要因素。一些污染模型假设,如果日降雨总量超过模型特定阈值,则通过降雨进行完全清洁,否则不进行清洁。然而,各种研究表明,清洁往往是不完整的。本研究采用两种统计学习方法对雨水的清洁效果进行建模,目的是在考虑降雨总和以外的其他参数的同时,获得比简单的完全清洁/不清洁答案更准确的结果。这些模型使用来自西非33个测量站的气象和污染数据进行了测试。线性回归似乎是预测降雨后污染程度减少的一个很好的替代方法。
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来源期刊
Solar RRL
Solar RRL Physics and Astronomy-Atomic and Molecular Physics, and Optics
CiteScore
12.10
自引率
6.30%
发文量
460
期刊介绍: Solar RRL, formerly known as Rapid Research Letters, has evolved to embrace a broader and more encompassing format. We publish Research Articles and Reviews covering all facets of solar energy conversion. This includes, but is not limited to, photovoltaics and solar cells (both established and emerging systems), as well as the development, characterization, and optimization of materials and devices. Additionally, we cover topics such as photovoltaic modules and systems, their installation and deployment, photocatalysis, solar fuels, photothermal and photoelectrochemical solar energy conversion, energy distribution, grid issues, and other relevant aspects. Join us in exploring the latest advancements in solar energy conversion research.
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