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Low-cost solar PV soiling sensor validation and size resolved soiling impacts: A comprehensive field study in Western India

机译:低成本的太阳能光伏染色传感器验证和尺寸解决了污染影响:印度西部的综合实地研究

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摘要

Deposition of particulate matter (PM) onto solar photovoltaic (PV) panels - known as soiling - has been estimated to reduce energy production by 10-40% in many regions of the world. Despite this, many key properties including soiling rates, PM source contributions, physical and optical properties of the deposited particles, and the impact of rain and relative humidity (RH) are not well understood. With this in mind we conducted a field study in Gandhinagar, India. Our approach combines soiling monitoring with a reference station and a low-cost digital microscopy system, sample collection for mass loading information, glass sample slides for size resolved soiling impacts, and monitoring of rain, RH, and panel temperature for insight into meteorological impacts on cleaning and soiling rates. Results indicate soiling reduces PV energy production by 0.37 +/- 0.09% day(-1). The low cost ( 100$) digital microscope estimated soiling within similar to 1% of measured losses, confirming the feasibility of this low-cost alternative to expensive soiling stations. Deposited PM decreased energy production by 5.12 +/- 0.55% per PM mass loading (g m(-2)). Microscopy analyses of field samples revealed that 90% of deposited mass loading is from particles 5 mu m in diameter, with 50% of the soiling impacts estimated to be from particles 5 mu m. While heavy rain cleaned PV panels, light rains and high RH contributed to a 2x soiling rate and 5-10x PM deposition velocities as compared to dry periods.
机译:据估计,颗粒物质(PM)沉积到太阳能光伏(PV)板上 - 据估计,在世界上许多地区将能源产量降低10-40%。尽管如此,许多关键特性,包括污染率,PM源贡献,沉积颗粒的物理和光学性质以及雨水和相对湿度(RH)的影响并不顺利。考虑到这一点,我们在印度甘尼加尔进行了一个田间研究。我们的方法将污染监测与参考站和低成本数字显微镜系统相结合,质量加载信息的样品收集,玻璃样品载玻片的尺寸已解决的污点影响,以及监测雨,RH和面板温度,以了解气象影响清洁和污染速率。结果表明污染降低光伏能量产量0.37 +/- 0.09%(-1)。低成本(<100 $)数字显微镜估计在类似于1%的测量损失内的污染,确认这种低成本替代方向昂贵的污染站的可行性。沉积PM每PM质量负荷(G m(-2))降低5.12 +/- 0.55%。田间样品的显微镜分析显示> 90%的沉积质量负荷直径从颗粒>5μm,> 50%的污染抗冲击估计来自颗粒<5μm。虽然大雨清洁的PV面板,下雨和高RH导致2倍污染率和5-10x PM沉积速度与干燥时段相比。

著录项

  • 来源
    《Solar Energy》 |2020年第7期|307-315|共9页
  • 作者单位

    Duke Univ Pratt Sch Engn Civil & Environm Engn Dept Durham NC 27705 USA;

    Duke Univ Pratt Sch Engn Civil & Environm Engn Dept Durham NC 27705 USA;

    India Inst Technol Gandhinagar Chem Engn DryProTech Lab Gandhinagar 382355 Gujarat India;

    India Inst Technol Gandhinagar Chem Engn DryProTech Lab Gandhinagar 382355 Gujarat India;

    Sol Ideas Technol Dev POB 5729 San Jose CA 95150 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Soiling; Dust deposition; Size distribution; PV soiling; Photovoltaic; Low cost sensor;

    机译:污染;粉尘沉积;尺寸分布;PV污染;光伏;低成本传感器;

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