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Correlation Pattern between Effective Radius and Optical Thickness of Water Clouds Simulated by a Spectral Bin Microphysics Cloud Model

机译:光谱桶微物理云模型模拟的水云有效半径与光学厚度的相关模式

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摘要

The cloud particle size distribution of water clouds was simulated by a non-hydrostatic spectral bin microphysics cloud model. The result shows two different correlation patterns in the simulated optical thickness and effective radius; positive and negative correlations for non-drizzling and drizzling clouds, respectively, similar to the observed features reported by past remote sensing works. The correlation pattern in a pristine condition is mainly composed by negative correlation with small fragment of positive correlation, similar to the satellite-observed characteristics over the FIRE region off California. In the case of polluted condition, on the contrary, only a positive correlation is simulated, similar to the satellite observation over the ASTEX region of North Atlantic Ocean. Satelliteobserved contrast of correlation patterns between FIRE and ASTEX regions can be explained by the difference in the aerosol burden of airmasses over the two regions.
机译:通过非静水波谱仓微物理学云模型模拟了水云的云粒径分布。结果表明,在模拟的光学厚度和有效半径上存在两种不同的相关模式。非滴水云和细雨云的正相关和负相关,分别类似于过去遥感工作报告的观测特征。原始状态下的相关模式主要由负相关和正相关的小片段组成,类似于加州外FIRE区域的卫星观测特征。相反,在受污染的情况下,仅模拟正相关,类似于在北大西洋的ASTEX区域进行的卫星观测。卫星观测到的FIRE和ASTEX区域之间相关模式的对比可以通过两个区域上气团的气溶胶负荷差异来解释。

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