AN OBSERVATIONAL ANALYSIS OF A TORRENTIAL RAINSTORM IN THE WARM SECTOR OF SOUTH CHINA COASTAL AREAS
YU Xin
ZHENG Teng-fei
HUANG Jian
WAN Qi-lin
LIU Xian-tong
LU Jie-ying
Abstract:On May 20th 2007,a brief but severe downpour rainstorm occurred in the coastal areas of Maoming and Yangjiang areas with rainfall of 115 mm per hour.Data from NCEP/NCAR reanalysis with 1 ° × l ° resolution,Doppler weather radar,conventional surface observations,high-altitude radiosonde and wind profiler radar were used to analyze characteristics and contributions of synoptic scale and mesoscale systems during this torrential rainstorm.The results showed that:(1) the storm was caused by a quasi-linear mesoscale convective system (MCS) and the slow-movement of this system was the primary reason triggering torrential downpourrainstorm;(2) water vapor was abundant,nearly saturated and in steady state throughout the atmosphere before the storm;intrusion of the weak dry and cold air in the middle level and a striking " wet on " knot had increased the atmospheric instability;(3) low-level southwesterly airflow from a low pressure (trough) at Gulf of Tonkin provided abundant water vapors in the onset of thefor the rainstorm;a deep dry layer was formed by dry and cold air behind the high-level trough,which facilitated latent heat release;upper-level divergence and low-level convergence circulations also provided vertical uplift for warm and moist air at lower level;(4)Topography only played a minor role as the MCS developed and strengthened over relatively flat coastal terrain.Low level density flow induced by convection triggered new convective cell generation at the leading edge of the convective system,thereby playing a key role in the sustainaation might change temperature gradient at lower layers,and results in strengthening atmospheric instability.
Keywords:South China coastal areasRainstorm in the warm sectorsynoptic scale systemsMesoscale process
Publication Date:2017-01-01
Pages:11( 134-144 )
