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Lidar investigation of aerosol-cloud-precipitation interactions over a tropical monsoon environment: Recharging of atmosphere

机译:激光雷达对热带季风环境中气溶胶-云-降水相互作用的研究:大气的再填充

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摘要

In this paper, we present the results of the analysis of aerosol/cloud backscattered signals recorded with a state-of-the-art LIDAR at a tropical urban station, Pune in India. The study reveals that a major portion of cloud condensation nuclei (CCN) within the cloud cells is contributed by the sub-cloud region. Cloud/rain scavenging reduces the CCN concentration within the saturated zone. Cloud dissipation followed by drizzle is explained based on increased local atmospheric stability. Delay in the production of fresh CCN and associated cloud formation is observed after the wet removal - a phenomenon called "Recharging of the Atmosphere". A substantial effect of CCNs on the growth and dissipation of clouds and the subsequent changes in the local hydrological cycle are elucidated by some novel approach.
机译:在本文中,我们介绍了使用印度最先进的热带雷达站浦那最先进的激光雷达记录的气溶胶/云反向散射信号的分析结果。该研究表明,云细胞内云凝结核(CCN)的主要部分是由亚云区域贡献的。清除云/雨可降低饱和区内的CCN浓度。基于增加的局部大气稳定性来解释云消散和细雨。湿法去除后,观察到新鲜CCN的生产延迟和相关的云层形成-这种现象称为“大气再充电”。一些新颖的方法阐明了CCNs对云的生长和消散以及随后的局部水文循环变化的重大影响。

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