气象2025,Vol.51Issue(9):1088-1100,13.DOI:10.7519/j.issn.1000-0526.2025.031002
四川盆地东部一次局地强对流天气微物理特征分析
Microphysical Characteristics of a Localized Severe Convection Case in East Sichuan Basin
摘要
Abstract
A localized severe convective rainfall event that occurred in east Sichuan Basin under the back-ground of southwest vortex on 8 August 2021 is analyzed by using the Chongqing S-band dual-polarization radar data,ERA5 reanalysis data and multi-source precipitation product.The results show that at the early developing stage of the convection system,ZH and KDP began to increase.Snow particles played a major role in ice-phase hydrometers at middle-upper level.The proportion of drizzle identification at the low level ranged from 20%to 40%.Raindrops were small and surface hourly rainfall intensity was weak.During the rapid intensification of the convection system,ZH,ZDR and KDP increased rapidly as well.ZDR and KDP columns can extended well above 8 km.Uplifted droplets generated supercooled water,facilitating ice-phase process over the melting layer.The melting of descending ice hydrometeors led to the enhancement of liquid particles' sizes and concentration at middle-lower level,which intensified the surface hourly rain-fall intensity.Convective cells were merged with each other and shifted eastward subsequently.As the system weakened,dry and wet snow particles became the main components of ice-phase particles at middle-upper level again.Both size and number of liquid particles at middle-lower level decreased and surface hourly rainfall intensity got weakened accordingly.Dual-polarization variables and hydrometeor identifica-tion can basically reflect the characteristic of hydrometeor transformation within the convection systems and cohere reasonably with the variation of surface hourly rainfall intensity.关键词
双偏振雷达/强对流/微物理特征Key words
dual-polarization radar/severe convection/microphysical characteristic分类
天文与地球科学引用本文复制引用
王智立,呼延李豆,高郁东,肖雲..四川盆地东部一次局地强对流天气微物理特征分析[J].气象,2025,51(9):1088-1100,13.基金项目
国家自然科学基金面上项目(42375161)、重庆市自然科学基金面上项目(cstc2021jcyj-msxmX0698)、重庆市技术创新与应用发展专项重点项目(CSTB2023TIAD-KPX0065)和重庆市气象局青年基金项目(QNJJ-202416)共同资助 (42375161)