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"23·7"华北特大暴雨过程雨强精细化特征及动力和热力条件初探

符娇兰 韩旭卿 权婉晴 麦子 罗琪 陈涛 李晓兰 许先煌 朱文剑 华珊

气象2023,Vol.49Issue(12):1435-1450,16.
气象2023,Vol.49Issue(12):1435-1450,16.DOI:10.7519/j.issn.1000-0526.2023.112701

"23·7"华北特大暴雨过程雨强精细化特征及动力和热力条件初探

Preliminary Study on the Refined Characteristics of Rainfall Intensity and Dynamic and Thermodynamic Conditions in the July 2023 Severe Torrential Rain in North China

符娇兰 1韩旭卿 1权婉晴 1麦子 1罗琪 1陈涛 1李晓兰 1许先煌 1朱文剑 1华珊1

作者信息

  • 1. 国家气象中心,北京 100081
  • 折叠

摘要

Abstract

Based on the ERA5 reanalysis data and the multi-source observations such as ground national and regional automatic weather stations,dual polarization radar,ground raindrop spectrometer,lightning loca-tor,wind-profiling radar,we analyze the refined characteristics of rainfall intensity,the mesoscale convec-tive system(MCS)responsible for the extreme precipitation,the microphysical features as well as dynamic and thermodynamic conditions of the July 2023 extremely severe precipitation process in North China.The results indicate that the hourly rainfall intensity in this event was characterized by weak in most areas but strong at some stations,and the local hourly and minute-level rainfall intensities both reached the extremi-ty level.The stage feature of the rainfall intensity was obvious,with the rainfall intensity being strongest in the second stage from 08:00 BT 30 to 20:00 BT 31 July.This was caused by several β-MCSs and accom-panied by mesoscale processes such as backward propagation and train effect.The severe precipitation was mainly composed of high concentration raindrops with medium diameters,and had a certain amount of low-concentration large particle raindrop samples.Thus,this extreme rainfall event belonged to a mixed type with precipitation of oceanic and continental nature,in which warm clouds collided,coexisting with ice crystal aggregation and melting.In the first stage(from 08:00 BT 29 to 08:00 BT 30 July)and the third stage(from 20:00 BT 31 July to 08:00 BT 2 August)the rainfall intensity was relatively small.The for-mer had a low vertical extension height and weak intensity of MCS,dominated by warm-cloud precipitation,and the raindrops had high concentrations and medium diameters.The MCS responding to the latter developed vigorously,but it moved fast.So,it also had the characteristics of mixed-type oceanic and continental precipitation.The maximum values of integrated precipitable water in the three stages all exceeded 70 mm.In the first stage,the synoptic scale forcing was strong,and the convective available po-tential energy(CAPE)was around 500 J·kg-1.The vertical height of MCS was relatively low.In the second half period of the second stage,the synoptic scale forcing was weakened,but the unstable convec-tive energy in the central and southern parts of North China was rebuilt again.The CAPE in the upstream region became increased compared to the value in the first stage(600-1000 J·kg-1),causing the ex-treme-rainfall-related MCS to have developed into a deep wet convective system and the rainfall intensity increased significantly.In the third stage,the synoptic scale forcing was greatly weakened.The conver-gence of southerly wind pulsations at low level and the large CAPE provided favorable conditions for the vigorous development of MCS.

关键词

"23·7"特大暴雨/极端降水/雨强/中尺度对流系统/降水微物理特征/动力和热力条件

Key words

July 2023 severe torrential rain/extreme precipitation/rainfall intensity/mesoscale convective system(MCS)/precipitation microphysical feature/dynamic and thermodynamic condition

分类

大气科学

引用本文复制引用

符娇兰,韩旭卿,权婉晴,麦子,罗琪,陈涛,李晓兰,许先煌,朱文剑,华珊.."23·7"华北特大暴雨过程雨强精细化特征及动力和热力条件初探[J].气象,2023,49(12):1435-1450,16.

基金项目

国家重点研发计划(2021YFC3000804)、国家自然科学基金项目(U2142206、41875080)、上海市自然科学基金项目(22ZR1482000)共同资助 (2021YFC3000804)

气象

OA北大核心CSCDCSTPCD

1000-0526

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