[口头报告]城市雾中不同的滴谱离散度效应和参数化

城市雾中不同的滴谱离散度效应和参数化
编号:2406 稿件编号:1928 访问权限:私有 更新:2023-04-15 18:05:25 浏览:174次 口头报告

报告开始:2023年05月07日 09:15 (Asia/Shanghai)

报告时间:10min

所在会议:[13B] 13B、大气物理与气象气候 » [13B-1] 13B-1 大气物理和大气探测

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摘要
Understanding cloud droplet relative dispersion is critical for mitigating the confounding effect of aerosol-cloud interactions in the simulation of the global climatic patterns. Diverse dispersion effects, meaning that the correlation between relative dispersion (e) and fog droplet number concentration (Nf) changes from positive to negative as Nf increases at a fixed liquid water content (LWC) condition, were found in the urban fog observed during the winters of 2017 and 2018 in Nanjing, China. The dominant microphysical processes driving the diverse dispersion effects were found to be activation, condensation, deactivation, evaporation, and sedimentation. The critical first bin (diameter range of 2 to 4 mm) strength and volume-mean diameter (Dv) for classifying the diverse dispersion effects are 0.3-0.4 and 10-12 mm, respectively. The mean dispersion offset (DO) was -27.6% for weakening the Twomey effect and 27.5% for enhancing it. Assuming the Gamma distribution for the fog droplet number size distribution, the mean dispersion effect was significantly underestimated at DO < 0. Based on the measured nonmonotonic relationship between e and Dv, we establish e parameterization using a Nelder function, which can be applied to the diverse dispersion effects. The mean deviation for diagnosing DO was less than 10% for DO > 0 and less than 50% for DO < 0. These results could shed new light on understanding the diverse dispersion effects, which cloud help reduce the uncertainties in the simulation of aerosol-cloud interactions.
 
关键字
离散度效应,气溶胶-云雾相互作用,云雾微物理
报告人
王元
青年研究员 兰州大学

稿件作者
王元 兰州大学
陆春松 南京信息工程大学
牛生杰 南京工业大学
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