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Effects of dust accumulation and module cleaning on performance ratio of solar rooftop system and solar power plants

机译:集尘和组件清洁对太阳能屋顶系统和太阳能发电厂性能比的影响

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摘要

Thailand is an agricultural country, with rice, sugar, and cassava as the major export products. Production of rice, sugar cane, and cassava entails agricultural activities that give rise to significant airborne dusts. In this work, five photovoltaic (PV) units (one solar rooftop and four power plants) are selected for the study. From the study of dust accumulation on glass surface located near rice farms, it was found that opaque areas due to the deposition of dust are 11-14% after 1-2-week exposure. As a consequence, PV system performance is affected. Performance ratio was calculated to determine these effects. Overall results reveal that during the dry and hot seasons, dust deposition significantly affects the performance ratio. The performance ratio reduces by 1.6-3% for 1-month dust accumulation and reduces by 6-8% for 2-month dust accumulation. After cleaning the dust accumulated, the performance ratio greatly increases, resulting in the increase in the energy output by 10%. This increase provides economic and cost benefits of PV cleaning. The performance ratio is not significantly changed during the rainy season, which PV modules are relatively clean as the dust is washed away by rain. It was also found that most of the solar power plants in Thailand still rely on manual cleaning of PV modules with washing water followed by wiping. However, only one power plant, employs a machine for cleaning, resulting in lower cleaning costs. (C) 2017 The Japan Society of Applied Physics
机译:泰国是一个农业大国,米,糖和木薯为主要出口产品。稻米,甘蔗和木薯的生产需要农业活动,这会产生大量的空气传播粉尘。在这项工作中,选择了五个光伏(PV)单元(一个太阳能屋顶和四个发电厂)进行研究。通过对位于稻田附近的玻璃表面上灰尘堆积的研究,发现在暴露1至2周后,由于灰尘沉积而导致的不透明区域为11-14%。结果,光伏系统的性能受到影响。计算性能比以确定这些效果。总体结果显示,在干燥和炎热的季节,灰尘沉积会显着影响性能比。对于1个月的灰尘积累,性能比率降低1.6-3%,对于2个月的灰尘积累,性能比率降低6-8%。清除积聚的灰尘后,性能比将大大提高,从而使能量输出提高10%。这种增加提供了PV清洁的经济和成本优势。在雨季,性能比没有显着变化,由于雨水冲走了灰尘,因此光伏组件相对清洁。还发现,泰国的大多数太阳能发电厂仍然依靠人工用清洗水清洁光伏组件,然后进行擦拭。但是,只有一个发电厂使用一台机器进行清洁,从而降低了清洁成本。 (C)2017日本应用物理学会

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