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An analytical indoor experimental study on the effect of soiling on PV, focusing on dust properties and PV surface material

机译:对PV污染效果的分析室内实验研究,专注于粉尘性能和PV表面材料

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摘要

Photovoltaic technology penetration is experiencing noticeable progress. However, its performance is significantly affected by soiling, which is influenced by several factors such as site characteristics, weather, tilt angle and surface orientation, surface material and dust properties. This indoor study investigates the effect of soiling on photovoltaic modules, focusing on dust properties and PV surface materials as influencing factors. A Solar simulator, spectrometer and SEM/EDX were used to characterise and investigate the effect of accumulation of 13 different samples (ash, bird droppings, carpet dust, cement, charcoal, clay, coarse sand, laterite, loam soil, salt, sandy soil, stone dust and wood dust) on PV performance. The findings develop upon previous studies on the effects of dust particle accumulation on PV performance by using more dust samples and applying more rigorous techniques. The results show that charcoal appears to have the worst degradation effect on PV performance with about 98% reduction in short circuit current while salt seems to have the least impact with about 7%. The influence of 2 PV surface materials (acrylic plastic and low iron glass) on dust accumulation were examined, and results show that the acrylic plastic accumulates more dust when compared to low iron glass. Results also show that dry deposition has a reduced adhesion to the coupons compared to wet deposition. The findings could be used in selecting PV farm sites by avoiding areas with high pollution, and it could stimulate further research on selecting an appropriate mitigation technique. The ramifications caused because of soiling cannot be overlooked or overemphasis; as such there is a need to identify appropriate and cost-effective mitigation techniques that can continue to promote the global penetration of PV technologies and sustain its performance.
机译:光伏技术渗透正在经历明显的进展。然而,其性能受到污染的显着影响,这受几个因素的影响,例如现场特征,天气,倾斜角度和表面取向,表面材料和灰尘性能。这种室内研究调查了污染光伏模块的效果,聚焦在粉尘性质和PV表面材料上作为影响因素。太阳能模拟器,光谱仪和SEM / EDX用于表征和研究13种不同样品的积累(灰,鸟粪,地毯粉尘,水泥,木炭,粘土,粗砂,腰部土壤,盐,砂土PV性能上的石灰尘和木尘)。通过使用更多灰尘样品并施加更严格的技术,对先前研究粉尘粒子积累对PV性能的影响进行了发展。结果表明,木炭似乎对光伏性能具有最大的降解影响,短路电流降低约98%,而盐似乎具有约7%的影响。检查了2个PV表面材料(丙烯酸类塑料和低铁玻璃)对粉尘积累的影响,结果表明,与低铁玻璃相比,丙烯酸塑料积聚更多灰尘。结果还表明,与湿沉积相比,干沉积与试样的粘附性降低。该发现可用于通过避免具有高污染的区域来选择光伏电场网站,并且可以刺激选择适当的缓解技术的进一步研究。由于污染而导致的后果不能被忽视或过度曝光;因此,需要确定可以继续促进PV技术的全球渗透率并维持其性能的适当和经济效益的缓解技术。

著录项

  • 来源
    《Solar Energy》 |2020年第6期|46-68|共23页
  • 作者单位

    Univ Exeter Environm & Sustainabil Inst ESI Penryn Campus Penryn TR10 9FE England;

    Univ Exeter Environm & Sustainabil Inst ESI Penryn Campus Penryn TR10 9FE England;

    Univ Exeter Environm & Sustainabil Inst ESI Penryn Campus Penryn TR10 9FE England;

    Univ Exeter Environm & Sustainabil Inst ESI Penryn Campus Penryn TR10 9FE England;

  • 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 properties; PV surface material; PV performance;

    机译:污染;灰尘性;光伏表面材料;PV性能;
  • 入库时间 2022-08-18 21:17:49

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