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Investigation of aerosol indirect effects on simulated flash-flood heavy rainfall over Korea

机译:气溶胶对韩国模拟暴雨暴雨的间接影响研究

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This study investigates aerosol indirect effects on the development of heavy rainfall near Seoul, South Korea, on 12 July 2006, focusing on precipitation amount. The impact of the aerosol concentration on simulated precipitation is evaluated by varying the initial cloud condensation nuclei (CCN) number concentration in the Weather Research and Forecasting (WRF) Double-Moment 6-class (WDM6) microphysics scheme. The simulations are performed under clean, semi-polluted, and polluted conditions. Detailed analysis of the physical processes that are responsible for surface precipitation, including moisture and cloud microphysical budgets shows enhanced ice-phase processes to be the primary driver of increased surface precipitation under the semi-polluted condition. Under the polluted condition, suppressed auto-conversion and the enhanced evaporation of rain cause surface precipitation to decrease. To investigate the role of environmental conditions on precipitation response under different aerosol number concentrations, a set of sensitivity experiments are conducted with a 5 % decrease in relative humidity at the initial time, relative to the base simulations. Results show ice-phase processes having small sensitivity to CCN number concentration, compared with the base simulations. Surface precipitation responds differently to CCN number concentration under the lower humidity initial condition, being greatest under the clean condition, followed by the semi-polluted and polluted conditions.
机译:这项研究调查了气溶胶对2006年7月12日韩国首尔附近强降雨发展的间接影响,重点是降水量。通过改变天气研究和预报(WRF)双矩6级(WDM6)微物理方案中的初始云凝结核(CCN)数量浓度,可以评估气溶胶浓度对模拟降水的影响。模拟是在清洁,半污染和污染的条件下进行的。对造成地表降水的物理过程(包括水分和云的微物理预算)进行的详细分析表明,在半污染条件下,增强的冰相过程是增加地表降水的主要驱动力。在污染的情况下,抑制的自动转换和雨水的增加蒸发会导致表面降水减少。为了研究环境条件对不同气溶胶数量浓度下的降水响应的作用,进行了一组敏感性实验,相对于基础模拟,初始时相对湿度降低了5%。结果表明,与基础模拟相比,冰期过程对CCN数浓度的敏感性较小。在较低的湿度初始条件下,表面沉淀对CCN数浓度的响应不同,在清洁条件下最大,其次是半污染和污染的条件。

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