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Radiative effect of dust aerosols on cloud microphysics and meso-scale dynamics during monsoon breaks over Arabian sea

机译:沙尘气溶胶对阿拉伯海季风爆发期间云微观物理和中尺度动力学的辐射效应

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During monsoon breaks (large scale rainfall below the long term normal), dry air laddened with dust aerosols intrude over central India through Arabian sea (AS) from West Asian desert regions. To understand the effect of these dust aerosols on marine clouds over AS during monsoon breaks, Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observation (CALIPSO) and Cloud and the Earth's Radiant Energy System (CERES) data have been analyzed for the period 2007 to 2013. The vertical profile of dust backscatter coefficient (DBS) showed an elevated layer between 2 and 5 km and the maximum heating rate observed is 9 K/Day which is higher by 3 K/day as compared to the heating observed in June to September (JJAS) mean. Semi-direct effect due to the interaction of the long range transported dust with pristine cloud environment is observed in both warm and cold clouds. Significant differences in shortwave and longwave fluxes at the top of the atmosphere (TOA), cloud micro and macrophysical parameters are observed between the clouds with and without dust. Also, the percentage differences are more in cold clouds as compared to warm clouds. Dust induced semi-direct effect is found to be more pronounced in cold clouds, while indirect effect in warm clouds. Zonal anomalies of dynamical parameters due to dust induced heating, affect the circulation patterns in the immediate meso-scale environment, which strengthen/extend the monsoon break situation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在季风爆发期间(长期降雨量低于长期正常水平的大规模降雨),积满了粉尘气溶胶的干燥空气从西亚沙漠地区穿过阿拉伯海(AS)侵入印度中部。为了了解这些季风爆发期间这些粉尘气溶胶对AS上海云的影响,我们分析了2007年至2013年期间的云气激光雷达和红外探路卫星观测(CALIPSO)以及云和地球辐射能系统(CERES)数据。尘埃反向散射系数(DBS)的垂直剖面显示,在2至5 km之间存在一个升高的层,观测到的最大加热速率为9 K /天,与6月至9月观察到的加热量相比,增加了3 K /天( JJAS)的意思。在暖云和冷云中均观察到由于远距离输送的粉尘与原始云环境的相互作用而产生的半直接效应。在有尘和无尘云之间,观测到了大气(TOA)顶部的短波和长波通量,云的微观和宏观物理参数的显着差异。此外,与暖云相比,冷云中的百分比差异更大。发现尘埃引起的半直接效应在冷云中更为明显,而间接效应在暖云中更为明显。由于粉尘引起的加热而引起的动力学参数的区域异常,影响了中尺度环境中的环流模式,从而加强/扩展了季风破裂的情况。 (C)2015 Elsevier Ltd.保留所有权利。

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