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首页> 外文期刊>ournal of the Meteorological Society of Japan >Evolution of Mesoscale Convective System Properties as Derived from Himawari-8 High Resolution Data Analyses
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Evolution of Mesoscale Convective System Properties as Derived from Himawari-8 High Resolution Data Analyses

机译:由Himawari-8高分辨率数据分析得出的中尺度对流系统特性的演变

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?Two case studies of the mesoscale convective system (MCS) in the Indonesian region were conducted by applying an improved “Grab ‘em Tag ‘em Graph ‘em” (GTG) tracking algorithm and the Integrated Cloud Analysis System (ICAS) algorithm to Himawari-8 AHI infrared data. The first case over Java Island showed a land-originating MCS in the boreal winter, which coincided with a wet phase of Madden-Julian Oscillation (MJO) over the Maritime Continent. The second case showed the evolution of MCS under the influence of a strong vertical wind shear during the boreal summer. The cloud top height (CTH) of deep convective part in the first case was larger than that in the second case, while the temporal evolution of CTH was similar between the two cases. For the anvil part, the median CTH of the second case was relatively stable at around 13 km, while that of the first case showed a considerable temporal variation ranging from 14 to 16 km. The cloud-particle effective radius (CER) of the anvil increased after the period of maximum deep convective CTH in both cases, although the CER was slightly larger in the second case than in the first case. These differences in cloud properties between the two cases were attributable to the background wind profiles.
机译:通过将改进的“ Grab'em Tag'em Graph'em”(GTG)跟踪算法和集成云分析系统(ICAS)算法应用于Himawari,对印度尼西亚地区的中尺度对流系统(MCS)进行了两个案例研究-8 AHI红外数据。爪哇岛上的第一例病例显示,在北方冬季出现了陆源MCS,这与海陆上Madden-Julian涛动(MJO)的湿润时期相吻合。第二个案例显示了北方夏季在强垂直风切变作用下MCS的演化。第一种情况下深对流部分的云顶高度(CTH)大于第二种情况,而两种情况下CTH的时间演变相似。对于砧座部分,第二种情况的中值CTH相对稳定在13 km左右,而第一种情况的中值CTH表现出相当大的时间变化,范围为14至16 km。在两种情况下,在最大深度对流CTH之后,砧座的云粒子有效半径(CER)都增加了,尽管第二种情况下的CER略大于第一种情况。两种情况之间的云特性差异归因于背景风廓线。

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