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Role of vertical structure of cloud microphysical properties on cloud radiative forcing over the Asian monsoon region

机译:云的微观物理性质的垂直结构对亚洲季风区域云辐射强迫的作用

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摘要

Five years (2006-2010) of clouds and earth's radiant energy system (CERES) and CloudSat data have been analyzed to examine the role of vertical structure of cloud microphysical properties on cloud radiative forcing (CRF) parameters at the top-of-the atmosphere over the Asian monsoon region during the summer monsoon season (June-September) and the Pacific warm pool region during April. Vertical profile of cloud properties (optical depth, cloud liquid water content and cloud ice water content) derived from CloudSat data has been used for the present analysis. Shortwave, longwave and net CRF derived from the CERES data have been used. The results suggest an imbalance between shortwave cloud radiative forcing and longwave cloud radiative forcing over the Asian monsoon region consistent with the results reported earlier. The present analysis suggests that over the Bay-of-Bengal (BoB), vertical profile of cloud microphysical properties determine more than 50 % of variance in CRF. However, over the Pacific warm pool region, cloud microphysical property profiles does not contribute significantly to variance in net CRF (< 10 %). Over the BoB, large asymmetry between shortwave and longwave CRF is caused by large amounts of cloud liquid water content in the layer between the surface and 9 km. The present study highlights the importance of accurate representation of cloud microphysical properties in determining the influence of clouds on the radiative balance over the top-of-the atmosphere.
机译:分析了五年(2006-2010年)的云和地球辐射能系统(CERES)和CloudSat数据,以检验云微物理特性的垂直结构对大气顶部云辐射强迫(CRF)参数的作用夏季季风季节(6月至9月)在亚洲季风区域和4月期间在太平洋暖池区域。从CloudSat数据得出的云性质(光学深度,云液态水含量和云冰水含量)的垂直剖面已用于本分析。已使用从CERES数据得出的短波,长波和净CRF。结果表明,亚洲季风区域的短波云辐射强迫和长波云辐射强迫之间的不平衡与先前报道的结果一致。本分析表明,在孟加拉湾(BoB)上,云微物理特性的垂直剖面确定了CRF中超过50%的方差。但是,在太平洋暖池地区,云的微物理性质剖面对净CRF的变化(<10%)的贡献不大。在BoB上,短波CRF和长波CRF之间的较大不对称性是由表面和9 km之间的层中大量的液态云水引起的。本研究强调了准确表示云的微物理性质对确定云对大气层顶部辐射平衡的影响的重要性。

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