Soiling impact and cleaning techniques for optimizing photovoltaic and concentrated solar power power production: A state-of-the-art review

Sara Benyadry, M. Halimi, A. Khouya
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Abstract

Nowadays, renewable energies are capturing the world's attention, particularly in light of the phenomenon of climate change and carbon dioxide emissions, which have caused major environmental damage. As a result, many investors have recently focused on developing investments in renewable energy projects worldwide, specifically photovoltaic and concentrated solar power plant projects. These solar technologies are considered among the most profitable solutions for generating power from a natural, free, and unlimited energy source. This review paper discusses one of the most significant issues affecting the performance of these solar systems, which is known as soiling. It has been supported by several studies in various nations with different climatic conditions, which offered accurate empirical data on the degradation rate of photovoltaic and concentrated solar power systems’ production due to the soiling effect. Furthermore, it provides various mitigating soiling ways, including manual and autonomous cleaning methods for both solar technologies. Ultimately, it summarizes each cleaning technique's main advantages and drawbacks, specifying its applicability according to the location characteristics and climatic conditions. Additionally, the review results reported in this work are intriguing enough to warrant further development of concentrated solar power and photovoltaic technologies.
优化光伏和聚光太阳能发电的污垢影响和清洁技术:最新综述
如今,可再生能源正吸引着全世界的目光,特别是考虑到气候变化和二氧化碳排放现象对环境造成的重大破坏。因此,许多投资者最近都把投资重点放在全球可再生能源项目上,特别是光伏发电和聚光太阳能发电厂项目。这些太阳能技术被认为是利用天然、免费和无限能源发电的最有利可图的解决方案之一。本文将讨论影响这些太阳能系统性能的最重要问题之一,即污损问题。在不同国家不同气候条件下进行的多项研究为本文提供了支持,这些研究提供了关于光伏发电和聚光太阳能发电系统因污垢效应而导致发电量下降的准确经验数据。此外,它还提供了各种减轻污损的方法,包括这两种太阳能技术的人工和自主清洁方法。最后,报告总结了每种清洁技术的主要优缺点,并根据地点特点和气候条件说明了其适用性。此外,这项工作所报告的审查结果也足够吸引人,值得进一步开发聚光太阳能和光伏技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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