Best practices for mitigating soiling risk on PV power plants

A. AlDowsari, R. Bkayrat, H. Alzain, T. Shahin
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引用次数: 9

Abstract

Solar power generates proven, predictable and economical energy and new innovations have made solar PV power plants easy to deploy, integrate and maintain. Areas with large solar energy potential are among the dustiest in the world. At first glance, solar would be a natural fit in many of these environments but humidity, airborne dust, and wind of these regions often bring high soiling rates that can accumulate to reduce performance by up to 10% per month on average, where soiling can be a major loss factor that affects the energy yield for PV plants especially in humid and dusty climates. Therefore, to achieve the desired performance ratio and obtain stable generation, mitigation solutions are proposed to overcome dust issues that affect the performance of PV plants. This makes PV module cleaning a key component for long-term plant performance and sustainable profitability. In this paper, a review of the mechanisms and mitigation solutions to overcome soiling on solar installations using real-world testing and verification is investigated with emphasis on dry type cleaning methods.
减轻光伏电站污染风险的最佳实践
太阳能发电产生经过验证的、可预测的和经济的能源,新的创新使太阳能光伏电站易于部署、集成和维护。拥有巨大太阳能潜力的地区是世界上尘土最多的地区之一。乍一看,在这些环境中,太阳能将是一个自然的选择,但这些地区的湿度、空气中的灰尘和风通常会带来高污染率,这些污染会累积起来,平均每月降低10%的性能,其中污染可能是影响光伏电站发电量的主要损失因素,特别是在潮湿和多尘的气候中。因此,为了达到理想的性能比,获得稳定的发电,针对影响光伏电站性能的扬尘问题,提出了缓解方案。这使得光伏组件清洁成为工厂长期绩效和可持续盈利能力的关键组成部分。在本文中,审查的机制和缓解解决方案,以克服污染的太阳能装置使用现实世界的测试和验证进行了调查,重点是干式清洁方法。
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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