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首页> 外文期刊>Aerosol and Air Quality Research >Aerosol-Cloud-Interaction Variability Induced by Atmospheric Brown Clouds during the 2009 Indian Summer Monsoon Drought
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Aerosol-Cloud-Interaction Variability Induced by Atmospheric Brown Clouds during the 2009 Indian Summer Monsoon Drought

机译:2009年印度夏季风干旱期间大气棕云引起的气溶胶-云相互作用的变异性

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Contrasting monsoons of 2008 and 2009 provided a test bed to enhance the understanding of the aerosol variability and aerosol-cloud interaction. Vertical aerosol profiles derived from the Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observations (CALIPSO) are used to delineate the aerosol properties during the two contrasting Indian summer monsoons. We observed a 30–40% increase in the aerosol occurrence frequency (AOF) in lower altitudes (below 6 km) in 2009 and a 5–8% enhancement in AOF at higher altitudes in 2008. The cloud occurrence frequency also showed more deep convective clouds in 2008 (13–15%) than in 2009. Cloud Fraction, Aerosol Optical Depth and TRMM precipitation data sets have been also used to investigate the aerosol-cloud interaction. We define the microphysical effect as the increase in cloud fraction with increase in aerosols (CCN) and the radiative effect as the decrease of cloud fraction with increase in aerosol loading. We observe a stronger microphysical effect than the radiative effect in 2008 as compared to 2009. In 2009, atmospheric brown clouds were observed from March to September, which slowed down the microphysical effect and enhanced the radiative effect. This resulted in a 30% reduction in the total cloud fraction that may have reduced precipitation, and invigorated the drought conditions during 2009.
机译:2008年和2009年的对比季风提供了一个试验台,以增进对气溶胶变异性和气溶胶-云相互作用的理解。来自“云气溶胶激光雷达”和“红外探路者卫星观测”(CALIPSO)的垂直气溶胶剖面用于描绘两个对比的印度夏季风期间的气溶胶特性。我们观察到2009年较低海拔(6公里以下)的气溶胶发生频率(AOF)增加了30–40%,2008年较高海拔的气溶胶发生频率增加了5–8%。云的发生频率也显示出更深的对流与2008年相比,2008年的云量(13-15%)要高。云量,气溶胶光学深度和TRMM降水数据集也已用于调查气溶胶-云相互作用。我们将微物理效应定义为随着气溶胶(CCN)的增加而云分数的增加,以及随着气溶胶负荷的增加而云分数的减少而导致的辐射作用。与2009年相比,我们观察到的微物理效应要强于2008年的辐射效应。2009年,3月至9月观察到大气棕云,这减缓了微物理效应,增强了辐射效应。这导致总云量减少30%,这可能减少了降水,并使2009年的干旱状况更加活跃。

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