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Impact of a Saharan dust intrusion over southern Spain on DNI estimation with sky cameras

机译:撒哈拉尘埃侵入西班牙南部对使用天空摄像机进行DNI估算的影响

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To operate Central Tower Solar Power (CTSP) plants properly, solar collector systems must be able to work under varied weather conditions. Therefore, knowing the state of the atmosphere, and more specifically the level of incident radiation, is essential operational information to adapt the electricity production system to atmospheric conditions. In this work, we analyze the impact of a strong Saharan dust intrusion on the Direct normal irradiance (DNI) registered at two sites 35 km apart in southeastern Spain: the University of Almeria (UAL) and the Plataforma Solar de Almeria (PSA). DNI can be inputted into the European Solar Radiation Atlas (ESRA) clear sky procedure to derive Linke turbidity values, which proved to be extremely high at the UAL. By using the Simple Model of the Atmospheric Radiative Transfer of Sunshine (SMARTS) at the PSA site, AERONET data from PSA and assuming dust dominated aerosol, DNI estimations agreed strongly with the measured DNI values. At the UAL site, a SMARTS simulation of the DNI values also seemed to be compatible with dust dominated aerosol. (C) 2017 Elsevier Ltd. All rights reserved.
机译:为了正确运行中央塔式太阳能发电站(CTSP),太阳能收集器系统必须能够在各种天气条件下工作。因此,了解大气状态,尤其是入射辐射的水平,是使电力生产系统适应大气条件的基本操作信息。在这项工作中,我们分析了强烈的撒哈拉沙尘入侵对西班牙东南部相距35 km的两个站点分别注册的直接法向辐射(DNI)的影响:阿尔梅里亚大学(UAL)和阿尔梅里亚太阳广场(PSA)。可以将DNI输入到欧洲太阳辐射图集(ESRA)晴朗天空程序中,以得出Linke浊度值,该值在UAL中被证明是极高的。通过使用PSA站点的阳光大气辐射传递简单模型(SMARTS),来自PSA的AERONET数据并假设粉尘占主导地位的气溶胶,DNI估算与测得的DNI值高度吻合。在UAL现场,对DNI值的SMARTS模拟似乎也与以粉尘为主的气溶胶兼容。 (C)2017 Elsevier Ltd.保留所有权利。

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