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首页> 外文期刊>Atmospheric Measurement Techniques >McClear: a new model estimating downwelling solar radiation at ground level in clear-sky conditions
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McClear: a new model estimating downwelling solar radiation at ground level in clear-sky conditions

机译:麦克莱尔(McClear):一种新模型,可估算晴空条件下地面下层向下的太阳辐射

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摘要

A new fast clear-sky model called McClear was developed to estimate the downwelling shortwave direct and global irradiances received at ground level under clear skies. It is a fully physical model replacing empirical relations or simpler models used before. It exploits the recent results on aerosol properties, and total column content in water vapour and ozone produced by the MACC project (Monitoring Atmosphere Composition and Climate). It accurately reproduces the irradiance computed by the libRadtran reference radiative transfer model with a computational speed approximately 10~5 times greater by adopting the abaci, or look-up table, approach combined with interpolation functions. It is therefore suited for geostationary satellite retrievals or numerical weather prediction schemes with many pixels or grid points, respectively. McClear irradiances were compared to 1 min measurements made in clear-sky conditions at several stations within the Baseline Surface Radiation Network in various climates. The bias for global irradiance comprises between -6 and 25 W m~(-2). The RMSE ranges from 20 W m~(-2) (3 % of the mean observed irradiance) to 36 W m~(-2) (5 %) and the correlation coefficient ranges between 0.95 and 0.99. The bias for the direct irradiance comprises between -48 and +33 W m~(-2). The root mean square error (RMSE) ranges from 33 W m~(-2) (5 %) to 64 W m~(-2) (10%). The correlation coefficient ranges between 0.84 and 0.98. This work demonstrates the quality of the McClear model combined with MACC products, and indirectly the quality of the aerosol properties modelled by the MACC reanalysis.
机译:开发了一种称为麦克莱尔(McClear)的新型快速晴空模型,以估计晴朗天空下地面接收的下行短波直接辐射和全球辐照度。它是一个完全物理的模型,代替了以前的经验关系或更简单的模型。它利用了MACC项目(监测大气成分和气候)有关气溶胶特性以及水蒸气和臭氧中总柱含量的最新结果。它通过采用算盘(或查找表)方法与插值函数相结合,准确地再现由libRadtran参考辐射传递模型计算出的辐照度,其计算速度大约是其10到5倍。因此,它适用于分别具有许多像素或网格点的对地静止卫星检索或数值天气预报方案。将麦克莱尔辐照度与晴空条件下在不同气候下在基准地面辐射网络内几个站点的晴空条件下进行的测量进行了比较。全球辐照度的偏差在-6至25 W m〜(-2)之间。 RMSE范围从20 W m〜(-2)(平均观察到的辐照度的3%)到36 W m〜(-2)(5%),相关系数在0.95和0.99之间。直接辐照度的偏置在-48至+33 W m〜(-2)之间。均方根误差(RMSE)为33 W m〜(-2)(5%)至64 W m〜(-2)(10%)。相关系数在0.84至0.98之间。这项工作证明了结合了MACC产品的McClear模型的质量,以及通过MACC再分析间接模拟的气溶胶特性的质量。

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