2014年9月16日夜间,第15号台风"海鸥"外围螺旋雨带中产生龙卷,袭击了广东省佛山市三水区白坭镇。通过现场灾情勘察、群众走访、新一代雷达观测等资料的综合分析,确定这次龙卷强度为EF1级。分析其发生发展的环境背景、雷达回...2014年9月16日夜间,第15号台风"海鸥"外围螺旋雨带中产生龙卷,袭击了广东省佛山市三水区白坭镇。通过现场灾情勘察、群众走访、新一代雷达观测等资料的综合分析,确定这次龙卷强度为EF1级。分析其发生发展的环境背景、雷达回波特征,并与相似台风路径下无龙卷产生的1409号超强台风"威马逊"环境条件对比,结果表明:龙卷发生在登陆台风"海鸥"移动方向的右后侧,对应上空200 h Pa为辐散区,500 h Pa为副热带高压和"海鸥"之间的强东南气流汇合处,从925 h Pa到500 h Pa强东南急流轴走向一致、上下叠加在珠江口附近,地面存在触发对流的东路弱冷空气和中尺度辐合线。环境条件呈弱的条件不稳定,对流有效位能(CAPE)小、抬升凝结高度(LCL)低、垂直风切变和风暴相对螺旋度(SRH)大;产生龙卷的对流风暴属于低质心的微型超级单体风暴,速度图上低层存在强中气旋,中气旋中心伴有TVS,中气旋和TVS尺度比较小、垂直伸展高度比较低,强中气旋、TVS分别早于龙卷14 min、8 min出现。龙卷出现在微型超级单体风暴右后侧钩状回波顶端、TVS附近。分析还表明,相似台风路径下,台风"海鸥"(有龙卷出现)和超强台风"威马逊"(无龙卷出现)的环境条件明显差异主要体现在0~1 km的低层垂直风切变和SRH上,后者的0~1 km垂直风切变和SRH均明显偏小,不利于微型超级单体风暴的出现。展开更多
We analyzed cloud microphysical processes' latent heat characteristics and their influence on an autumn heavy rain event over Hainan Island,China,using the mesoscale numerical model WRF and WRF-3DVAR system.We fou...We analyzed cloud microphysical processes' latent heat characteristics and their influence on an autumn heavy rain event over Hainan Island,China,using the mesoscale numerical model WRF and WRF-3DVAR system.We found that positive latent heat occurred far above the zero layer,while negative latent heat occurred mainly under the zero layer.There was substantially more positive latent heat than negative latent heat,and the condensation heating had the most important contribution to the latent heat increase.The processes of deposition,congelation,melting and evaporation were all characterized by weakening after their intensification;however,the variations in condensation and sublimation processes were relatively small.The main cloud microphysical processes for positive latent heat were condensation of water vapor into cloud water,the condensation of rain,and the deposition increase of cloud ice,snow and graupel.The main cloud microphysical processes for negative latent heat were the evaporation of rain,the melting and enhanced melting of graupel.The latent heat releases due to different cloud microphysical processes have a significant impact on the intensity of precipitation.Without the condensation and evaporation of rain,the total latent heating would decrease and the moisture variables and precipitation would reduce significantly.Without deposition and sublimation,the heating in high levels would decrease and the precipitation would reduce.Without congelation and melting,the latent heating would enhance in the low levels,and the precipitation would reduce.展开更多
文摘2014年9月16日夜间,第15号台风"海鸥"外围螺旋雨带中产生龙卷,袭击了广东省佛山市三水区白坭镇。通过现场灾情勘察、群众走访、新一代雷达观测等资料的综合分析,确定这次龙卷强度为EF1级。分析其发生发展的环境背景、雷达回波特征,并与相似台风路径下无龙卷产生的1409号超强台风"威马逊"环境条件对比,结果表明:龙卷发生在登陆台风"海鸥"移动方向的右后侧,对应上空200 h Pa为辐散区,500 h Pa为副热带高压和"海鸥"之间的强东南气流汇合处,从925 h Pa到500 h Pa强东南急流轴走向一致、上下叠加在珠江口附近,地面存在触发对流的东路弱冷空气和中尺度辐合线。环境条件呈弱的条件不稳定,对流有效位能(CAPE)小、抬升凝结高度(LCL)低、垂直风切变和风暴相对螺旋度(SRH)大;产生龙卷的对流风暴属于低质心的微型超级单体风暴,速度图上低层存在强中气旋,中气旋中心伴有TVS,中气旋和TVS尺度比较小、垂直伸展高度比较低,强中气旋、TVS分别早于龙卷14 min、8 min出现。龙卷出现在微型超级单体风暴右后侧钩状回波顶端、TVS附近。分析还表明,相似台风路径下,台风"海鸥"(有龙卷出现)和超强台风"威马逊"(无龙卷出现)的环境条件明显差异主要体现在0~1 km的低层垂直风切变和SRH上,后者的0~1 km垂直风切变和SRH均明显偏小,不利于微型超级单体风暴的出现。
基金National Natural Science Foundation of China(41275060)National Natural Science Foundation of China(41275145)+1 种基金National Key Basic Research Program of China(2014CB953903)Fundamental Research Funds for the Central Universities(131gjc03)
文摘We analyzed cloud microphysical processes' latent heat characteristics and their influence on an autumn heavy rain event over Hainan Island,China,using the mesoscale numerical model WRF and WRF-3DVAR system.We found that positive latent heat occurred far above the zero layer,while negative latent heat occurred mainly under the zero layer.There was substantially more positive latent heat than negative latent heat,and the condensation heating had the most important contribution to the latent heat increase.The processes of deposition,congelation,melting and evaporation were all characterized by weakening after their intensification;however,the variations in condensation and sublimation processes were relatively small.The main cloud microphysical processes for positive latent heat were condensation of water vapor into cloud water,the condensation of rain,and the deposition increase of cloud ice,snow and graupel.The main cloud microphysical processes for negative latent heat were the evaporation of rain,the melting and enhanced melting of graupel.The latent heat releases due to different cloud microphysical processes have a significant impact on the intensity of precipitation.Without the condensation and evaporation of rain,the total latent heating would decrease and the moisture variables and precipitation would reduce significantly.Without deposition and sublimation,the heating in high levels would decrease and the precipitation would reduce.Without congelation and melting,the latent heating would enhance in the low levels,and the precipitation would reduce.