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Evaluation of enhancement events of global horizontal irradiance due to clouds at Patras, South-West Greece

机译:希腊帕特拉云云云层增强事件的评价

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Cloudiness is the dominant factor that affects the transfer of solar irradiance through the atmosphere. Especially the type of clouds, their high spatial and temporal variability, velocity and position relatively to the Sun, could cause events ranging from total reduction to substantial enhancements of surface solar irradiance. In study, the enhancements of Global Horizontal Irradiance (GHI) at South Greece for 2 years are examined. We use 1-min averages of GHI, sunshine duration and synchronized estimations of cloud coverage and type from a digital imaging system. A radiative transfer model is used to estimate GHI under clear skies. For solar zenith angles lower than 80 degrees, 4% of total GHI measurements are considered as enhancements. It is shown that the effect of thick clouds on the GHI enhancements is significantly higher when compared to the thin ones. We also examine cases that correspond to instantaneous clearness index values higher than 1 (K-t 1): 228 extreme enhancement events are found including 5 cases with GHI values higher than 1367 W/m(2) and a maximum value of 1420 W/m(2). These results suggest that such events are common and should be included in the design and simulation of the performance of solar energy systems. (C) 2019 Elsevier Ltd. All rights reserved.
机译:浑浊是通过大气影响太阳辐照的主要因素。特别是云的类型,其高空间和时间可变性,速度相对的阳光,速度和位置可能导致事件从总降低到表面太阳辐照度的显着增强。在研究中,审查了南希腊在南希腊的全球水平辐照度(GHI)的增强。我们使用GHI的1分钟平均值,阳光持续时间和云覆盖的同步估计,以及从数字成像系统的类型。辐射转移模型用于估计清澈天空下的GHI。对于低于80度的太阳能天性角度,总GHI测量的4%被认为是增强功能。结果表明,与薄的相比,厚云对GHI增强的影响显着更高。我们还检查对应于高于1(kt> 1)的瞬时透明索引值的情况:发现了228个极端增强事件,包括5例GHI值,高于1367 W / m(2),最大值为1420 w / m (2)。这些结果表明,此类事件很常见,应包括在太阳能系统性能的设计和仿真中。 (c)2019 Elsevier Ltd.保留所有权利。

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