大气科学进展(英文版)
大氣科學進展(英文版)
대기과학진전(영문판)
ADVANCES IN ATMOSPHERIC SCIENCES
2010年
5期
1193-1209
,共17页
孙建华%赵思雄%徐广阔%孟庆涛
孫建華%趙思雄%徐廣闊%孟慶濤
손건화%조사웅%서엄활%맹경도
中尺度对流系统%梅雨季节%涡旋%降雨过程%嵌入式单片机%数据分析系统%ARPS模式%MCV
中呎度對流繫統%梅雨季節%渦鏇%降雨過程%嵌入式單片機%數據分析繫統%ARPS模式%MCV
중척도대류계통%매우계절%와선%강우과정%감입식단편궤%수거분석계통%ARPS모식%MCV
mesoscale convective system%mesoscale convective vortex%doppler radar%WRF model
The strong heavy rainfall on 3–5 July 2003 causing the severe flooding in Huaihe River basin (HRB), China is studied. It is noted that there are sometimes mesoscale convective vortex (MCV) in East Asia during the mei-yu season. Simulation results from the ARPS (Advanced Regional Prediction) data analysis system (ADAS) and WRF model were used to study the development of the mesoscale convective system (MCS) and mesoscale convective vortex (MCV). It is confirmed that the MCV formed during the development of a previous severe MCS. A closed vortex circulation can be found below 600 hPa with a vorticity maximum in the middle troposphere. The evolution process of the MCV can be divided into three stages: initiation, maturation, and dissipation. During the mature stage of the MCV, a downdraft occurred in the center of the MCV and new convection developed in southeast of the MCV. The convergence and the tilting in the lower troposphere convergence and vertical advection in the middle troposphere were the main vorticity sources in the MCV initiation stage. Finally, a conceptual model between the mei-yu front and the embedded MCS and MCV is proposed. The mei-yu front was the background condition for the development of the MCS and MCV. A low level jet (LLJ) transported moisture and the weak cold air invasion via a trough aloft in the middle troposphere and triggering the severe convection. Furthermore, the intensified jet was able to result in the initiation of new "secondary" areas of convection in the eastern part of the MCV.