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Determination of the Soiling Impact on Photovoltaic Modules at the Coastal Area of the Atacama Desert

机译:测定阿塔卡马沙漠沿海地区光伏模块的污染抗冲击

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摘要

With an elevation of 1000 m above sea level, once the coastal mountain range is crossed, the Atacama Desert receives the highest levels of solar radiation in the world. Global horizontal irradiations over 2500 kWh/(m2 year) and a cloudiness index below 3% were determined. However, this index rises to 45% in the coastal area, where the influence of the Pacific Ocean exists with a large presence of marine aerosols. It is on the coastal area that residential photovoltaic (PV) applications are concentrated. This work presents a study of the soiling impact on PV modules at the coastline of Atacama Desert. The current–voltage characteristics of two multicrystalline PV modules exposed to outdoor conditions were compared, while one of them was cleaned daily. Asymptotic behavior was observed in the accumulated surface dust density, over 6 months. This behavior was explained by the fact that as the glass became soiled, the probability of glass-to-particle interaction decreased in favor of a more likely particle-to-particle interaction. The surface dust density was at most 0.17 mg·cm−2 per month. Dust on the module led to current losses in the range of 19% after four months, which in turn produced a reduction of 13.5%rel in efficiency.
机译:海拔1000米的海拔1000米,一旦沿海山脉越过,阿塔卡马沙漠就会获得世界上最高水平的太阳辐射。确定全球水平照射超过2500千瓦时/(m2年)和低于3%的云层指数。然而,该指数在沿海地区上升至45%,在那里太平洋的影响存在于海洋气溶胶的大量存在。它位于沿海地区,居民光伏(PV)应用集中。这项工作提出了对阿喀拉姆沙漠海岸线对光伏模块的污染影响研究。比较了暴露于室外条件的两种多晶体PV模块的电流 - 电压特性,其中一体是每天清洁。在累积的表面粉尘密度下观察到渐近行为超过6个月。由于玻璃变染,玻璃到颗粒相互作用的可能性降低了这种行为,有利于更可能的颗粒 - 颗粒相互作用。表面粉尘密度为每月最多为0.17毫克·cm-2。模块上的灰尘导致了四个月后的电流损失,又产生了13.5%的效率。

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