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Analysis on the Process of a Convective Rainstorm of Stationary Front Triggered by Weak Cold Air

机译:弱冷空气触发的定性前锋对流暴雨过程分析

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Based on the conventional meteorological data and the NCEP/NCAR 1° × 1° reanalysis data and those related to mid-scale automatic station, satellite cloud picture and radar return, with the dynamic diagnosis analysis method, an analysis is made on the process of the convective rainstorm of quasi-stationary front triggered by the weak cold air on June 4-7, 2014, showing: 1) the process occurred in the event of convection of a stationary front triggered by the eastward moving south trough and the southward moving weak cold air from west under the background of circulation of two ridges and one trough at the Asian-European mid-high latitude and weakening and southeastward moving subtropical high; 2) a system configuration that contributes to convective rainstorms formed in the event of the convergence of low-level moisture, upper-level divergence and the continuous vertical ascending motion after the 200 hPa upper-level jet stream moved westwards from east and the 850 hPa southwest jet stream intensified; 3) after the intrusion by weak cold air of the meso-scale katallobaric area formed by the accumulated warm moist air of Guangxi before the intrusion, the warm moist air rose to trigger convection; convection cells developed and spread nearby the boundary between anallobaric area and katallobaric area, during which total 5 MCSs developed and each formed a rainstorm center at the part where the MCSs coincide; a meso-scale katallobaric area forms and develops 2 - 5 hours earlier than convection, so that it is also a warning of heavy rains.
机译:基于传统的气象数据和NCEP / NCAR 1&#176×1&#176再分析数据和与中型自动站相关的,卫星云图片和雷达返回,随着动态诊断分析方法,对了分析2014年6月4日至7日的弱冷空气触发的准防滑前锋的流程,显示:1)在东部移动南槽和向南触发的固定前沿发生的过程发生在亚欧中高纬度和弱化和东南移动亚热带高层的循环后,从西部移动弱冷空气。 2)一种系统配置,其有助于在从东部和850 HPA向西移动到向西的低水平湿度,上层发散和连续垂直升序运动的情况下形成的对流暴雨。西南喷射流愈演愈烈; 3)通过弱冷空气的侵入中的中间鳞片Katallobaric面积由广西累计湿润的湿气侵入前,温暖的潮湿空气升至触发对流;在Analobaric区域和Katallobaric区域之间的边界中发育和传播的对流细胞,在其中开发的总共5个MCS,并且每个MCS系重合的部分形成了暴雨中心;一个中间级卡塔普拉米亚地区的形式和发展比对流早2 - 5小时,因此它也是大雨的警告。

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