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Bias in modeled solar radiation by non-resolved intra-daily AOD variability

机译:通过非解决的日间AOD可变性模型太阳辐射偏差

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摘要

Attenuation of broadband solar irradiance by aerosols has been traditionally evaluated in wide areas using aerosol optical depth (AOD) discretized at monthly time steps. This fact is known to induce a bias in the longterm solar irradiance evaluations. Nowadays weather models allow for a spatially-continuous description of AOD at sub-daily steps (e.g., hourly or 3-hourly). But considering the still high uncertainty of their modeled AODs in relation with the natural sub-daily AOD variability, a key question is whether the attenuation of solar irradiance by aerosols could simply be accounted for from daily AOD means. Hence, the bias induced by the non-resolved sub-daily AOD variability should be investigated. This work proposes a mathematical methodology to understand the roots of such a bias and uses AOD observations from 213 ground sites to investigate it. Overall, the mean and standard deviation of the bias at evaluating the daily mean global horizontal solar irradiance stay at about -0.2 and 1.2 W/m(2), respectively, or -2.0 and 5.5 W/m(2) for direct normal irradiance. The mean of the daily bias nearly vanishes using the proposed methodology while the standard deviation reduces to only 1.0 (3.3) W/m(2) in global horizontal (direct normal) solar irradiance.
机译:在每月时间步长下,使用气溶胶光学深度(AOD)在广泛的区域中传统上评估了气溶胶的宽带太阳辐照度的衰减。已知这一事实是在Longterm太阳辐照度评估中引起偏差。如今天气模型允许在亚日步骤(例如,每小时或3小时)的AOD的空间连续描述。但考虑到与天然次日AOD变异性相比,他们建模AOD的仍然存在高度不确定性,这是一个关键问题是气溶胶的衰减是否可以从日常AOD手段中占据了气溶胶的衰减。因此,应研究由非分辨的次日AOD变异性引起的偏差。这项工作提出了一种数学方法,了解这种偏差的根源,并使用213个地点的AOD观测来研究其。总体而言,评估每日平均水平太阳辐照度的偏差的平均值和标准偏差分别保持约-0.2和1.2W / m(2),或-2.0和5.5 w / m(2),用于直接正常辐照度。日常偏见的平均值几乎使用所提出的方法消失,而标准偏差在全球水平(直接正常)太阳辐照度下仅降低为1.0(3.3)W / M(2)。

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