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2000—2007年登陆台风中闪电活动与降水特征
引用本文:王艳,郑栋,张义军.2000—2007年登陆台风中闪电活动与降水特征[J].应用气象学报,2011,22(3):321-328.
作者姓名:王艳  郑栋  张义军
作者单位:1.中国气象科学研究院雷电物理和防护工程实验室,北京 100081
基金项目:国家自然科学基金项目“雹暴云电荷结构和放电过程综合观测研究”(41030960),国家自然科学基金项目“强风暴中的闪电活动与流场特征关系研究”(41005006),中国气象科学研究院基本科研业务费专项“强风暴起电和放电过程的试验和理论研究”(2010Z004)
摘    要:利用TRMM卫星LIS, PR和TMI资料,对2000—2007年41个登陆我国的台风中闪电活动和降水特征进行分析。结果表明:台风中的闪电活动整体较弱,相对而言,外雨带中的闪电活动最强,其次是眼壁,内雨带最弱,而眼壁的闪电密度最大。闪电活动沿台风径向有两个明显的高值区,主峰出现在距台风眼375 km的外雨带,次峰出现在距台风眼55 km的眼壁和内雨带相交的边界附近。台风中对流云降水面积远小于层云降水面积,其中外雨带中的对流云降水面积最大,其次是眼壁,内雨带最小;但对流降水对总降水量的贡献与层云相当。眼壁和内雨带中的对流云和层云的降水回波平均高度都小于外雨带。分析表明:TMI观测到的85.5 GHz极化修正亮温 (TPC85.5) 越低,闪电发生概率越大,外雨带具有最低的TPC85.5。有、无闪电发生区域的平均6 km高度雷达反射率因子和TPC85.5差异明显。台风区域内,闪电活动位置对应的平均6 km雷达回波强度普遍大于20 dBZ,而无闪电发生位置普遍低于30 dBZ。

关 键 词:台风    TRMM卫星    闪电    降水
收稿时间:2009-11-03
修稿时间:3/7/2011 12:00:00 AM

Characteristics of Lightning Activities and Precipitation in Typhoon Processes Making Landfall in China from 2000 to 2007
Wang Yan,Zheng Dong and Zhang Yijun.Characteristics of Lightning Activities and Precipitation in Typhoon Processes Making Landfall in China from 2000 to 2007[J].Quarterly Journal of Applied Meteorology,2011,22(3):321-328.
Authors:Wang Yan  Zheng Dong and Zhang Yijun
Affiliation:1.Laboratory of Lightning Physics and Protection Engineering, Chinese Academy of Meteorological Sciences, Beijing 1000812.Wuhan Central Meteorological Observatory, Wuhan 430074
Abstract:Based on the data of LIS, PR and TMI of TRMM satellite, the characteristics of lightning activities and precipitation in 41 typhoon processes making landfall in China from 2000 to 2007 are analyzed. The lightning activities in typhoons are found to be relatively weak compared with other convective weather systems. The lightning activity in outer rain band is the strongest and that in inner rain band is the weakest. Corresponding to these three regions, the average lightning frequencies are 16.05, 5.04 fl·min-1 and 2.72 fl·min-1 and the average lightning densities are 0.023, 0.029 fl·km-2·min-1 and 0.005 fl·km-2·min-1, respectively. The lightning activity in eyewall converged more than those in other two regions. Two peak values are found along the radial direction of typhoon. The main peak located in the outer rain band, 375 km away from the center of typhoon. The second peak is near to the common boundary of eyewall and inner rain band with the distance to the center of typhoon being 55 km. It is also found that the area of convective precipitation is far smaller than that of stratiform precipitation. However, the convective precipitation amount is basically equivalent to the stratiform precipitation. The average convective precipitation intensities in eyewall, inner rain band and outer rain band are 7.7, 26.3 mm·h-1 and 42.6 mm·h-1, respectively. The corresponding values of stratiform precipitation intensities are 5.2, 8.3 mm·h-1 and 11.2 mm·h-1, respectively. The average heights of precipitation echo of convective cloud and stratiform cloud are 8 km and 7 km respectively in eyewall and inner rainband and 11 km and 9 km respectively in outer rain band. The lower the polarization corrected temperature of 85.5 GHz (TPC85.5) is, the higher occurrence probability of lightning there are. The lowest TPC85.5 is found in outer rain band. The differences of the reflectivity at 6 km level and TPC85.5 are obvious between the regions with lightning activity and the regions without lightning activity. In eyewall, the average TPC85.5 is smaller than 210 K. They are smaller than 220 K and 200 K in inner rain band and outer rain band, respectively. The reflectivity values at 6 km level in the regions with lightning activity are universally larger than 20 dBZ and those in the regions without lightning activity are universally smaller than 30 dBZ.
Keywords:typhoon  TRMM satellite  lightning  precipitation
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