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Evolution Mechanism of a Severe Squall Line Triggered by the Coupling of a Sea Breeze Front and a Gust Front
引用本文:万夫敬,孙 敏,庞华基,赵海军,赵传湖. Evolution Mechanism of a Severe Squall Line Triggered by the Coupling of a Sea Breeze Front and a Gust Front[J]. 热带气象学报(英文版), 2024, 30(2): 200-210
作者姓名:万夫敬  孙 敏  庞华基  赵海军  赵传湖
摘    要:In the present study, a severe squall line (SL) was analyzed by using intensive observational surface data and radar monitoring products. In this process, mesoscale convergence lines, such as the sea breeze front (SBF), gust front and dry line, served as the main triggering and strengthening factors. The transition from convection triggering to the formation of the initial shape was mainly affected by the convergence line of the SBF, which combined with thermal convection to form the main parts of the SL. In the later stage, the convergence line of the gust front merged with other convergence lines to form a series of strong convective cells. The SBF had good indicative significance in terms of severe convective weather warnings. The suitable conditions of heat, water vapor and vertical wind shear on the Shandong Peninsula were beneficial to the maintenance of the SL. Before SL occurrence, tropopause folding strengthened, which consequently enhanced the baroclinic property in the middle and upper troposphere. The high sensible heat flux at the surface easily produced a positive potential vorticity anomaly in the low layer, resulting in convective instability, which was conducive to the maintenance of these processes. In the system, when precipitation particles passed through the unsaturated air layer, they underwent strong evaporation, melting or sublimation, and the cooling effect formed negative buoyancy, which accelerated the sinking of the air and promoted the sustained development of the surface gale. Together with the development of low- level mesocyclones, the air pressure decreased rapidly, which was conducive to gale initiation.

关 键 词:squall line   sea breeze front   gust front   cold pool   thunderstorm gale

Evolution Mechanism of a Severe Squall Line Triggered by the Coupling of a Sea Breeze Front and a Gust Front
WAN Fu-jing,SUN Min,PANG Hua-ji,ZHAO Hai-jun and ZHAO Chuan-hu. Evolution Mechanism of a Severe Squall Line Triggered by the Coupling of a Sea Breeze Front and a Gust Front[J]. Journal of Tropical Meteorology, 2024, 30(2): 200-210
Authors:WAN Fu-jing  SUN Min  PANG Hua-ji  ZHAO Hai-jun  ZHAO Chuan-hu
Affiliation:1. Qingdao Meteorological Bureau, Qingdao, Shandong 266003 China,2. Shanghai Central Meteorological Observatory, Shanghai 200030 China,1. Qingdao Meteorological Bureau, Qingdao, Shandong 266003 China,3. Linyi Meteorological Bureau, Linyi, Shandong 276037 China and 4. Frontier Science Center for Deep Ocean Multispheres and Earth System (FDOMES) and Physical Oceanography Laboratory, Ocean University of China, Qingdao, Shandong 266101 China
Abstract:In the present study, a severe squall line (SL) was analyzed by using intensive observational surface data and radar monitoring products. In this process, mesoscale convergence lines, such as the sea breeze front (SBF), gust front and dry line, served as the main triggering and strengthening factors. The transition from convection triggering to the formation of the initial shape was mainly affected by the convergence line of the SBF, which combined with thermal convection to form the main parts of the SL. In the later stage, the convergence line of the gust front merged with other convergence lines to form a series of strong convective cells. The SBF had good indicative significance in terms of severe convective weather warnings. The suitable conditions of heat, water vapor and vertical wind shear on the Shandong Peninsula were beneficial to the maintenance of the SL. Before SL occurrence, tropopause folding strengthened, which consequently enhanced the baroclinic property in the middle and upper troposphere. The high sensible heat flux at the surface easily produced a positive potential vorticity anomaly in the low layer, resulting in convective instability, which was conducive to the maintenance of these processes. In the system, when precipitation particles passed through the unsaturated air layer, they underwent strong evaporation, melting or sublimation, and the cooling effect formed negative buoyancy, which accelerated the sinking of the air and promoted the sustained development of the surface gale. Together with the development of low- level mesocyclones, the air pressure decreased rapidly, which was conducive to gale initiation.
Keywords:squall line   sea breeze front   gust front   cold pool   thunderstorm gale
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