干旱气象 ›› 2019, Vol. 37 ›› Issue (4): 586-596.

• 论文 • 上一篇    下一篇

河北省中南部暴雨雨滴谱特征

陈子健1,胡向峰1,陈宝君2,李芷霞3,孔凡超1   

  1. (1.河北省气象局,河北石家庄050000;2.南京大学,江苏南京210000;
    3.河北省邢台市气象局,河北邢台054000)
  • 出版日期:2019-08-30 发布日期:2019-09-04
  • 基金资助:
    河北省气象局科研开发项目(预报员专项17ky26)资助

Raindrop Size Distribution of Rainstorm in Central-Southern Hebei Province#br#

  1. (1. Hebei Provincial Meteorological Bureau, Shijiazhuang 050000, China; 2. Nanjing University, Nanjing 210000,China;
    3. Xingtai Meteorological Bureau of Hebei Province, Xingtai 054000, Hebei, China)
  • Online:2019-08-30 Published:2019-09-04

摘要: 基于2016—2017年河北省中南部暴雨过程的OTT Parsivel激光雨滴谱仪观测资料,对3种类型暴雨过程的降水微结构特征参量、不同尺度降水粒子对雨强的贡献、分雨强下的雨滴谱分布、速度谱等进行分析。结果表明:河北省中南部暴雨不同雨强下雨滴谱基本呈现单峰型分布,低槽冷锋类暴雨雨滴谱谱宽最窄,低涡类暴雨次之,暖切变线类暴雨最宽。不同类型暴雨过程粒子平均直径和峰值直径平均值以低涡类最小,低槽冷锋类次之,暖切变线类最大。雨滴体积中值直径和质量加权平均直径均值以低槽冷锋最小,低涡类次之,暖切变线类最大。河北省中南部暴雨过程主要以直径D<1.0 mm的小雨滴为主,其中1.0≤D<3.0 mm的雨滴雨强对总雨强贡献接近70%,D>4.0 mm 的大雨滴数浓度占总数浓度百分比最小,其雨强对总雨强的贡献也最小。3种类型暴雨分雨强对应雨滴谱多呈单峰型分布,呈双峰分布时对应雨强不同。速度谱上不同类型暴雨雨滴数极大值中心位置一致,且位于经验曲线下方。与目前雷达系统采用的标准Z=300I1.40关系相比,河北省中南部暴雨过程Z-I关系低估低槽冷锋类暴雨降水,高估低涡类和暖切变线类暴雨降水,其中低涡类暴雨偏差最大。

关键词: 激光雨滴谱仪, 雨滴谱, 暴雨, 速度谱, μ-λ关系, Z-I关系

Abstract: Based on the observation data of the OTT Parsivel laser raindrop disdrometer during the heavy rain processes in central and southern Hebei Province during 2016-2017, the precipitation microstructural parameters, the contribution of precipitation particles at different scales to rain intensity, raindrop size distribution under different rainfall intensity and velocity spectrum distribution  for three different types of heavy rainstorm processes were analyzed. The raindrop size distribution under different rainfall intensities in central and southern Hebei Province presented basically single peak, raindrop spectrum of the low trough cold front type of rainstorm was the narrowest and that of the low vortex type of rainstorm was the second, that of the warm shear line type of rainstorm was the widest. The average values of average diameter and peak diameter of the low vortex type of rainstorm was minimum, followed by the low trough cold front rainstorm, and that of warm shear line type of rainstorm was largest. The average values of the volume median diameter and the mass-weighted average diameter of the low trough-cold front rainstorm was minimum, followed by the low vortex rainstorm, and that of  warm shear line type of rainstorm was largest. The rainstorm process in central and southern Hebei Province was mainly dominated by small raindrops less than a diameter of 1.0 mm. The proportion of the number concentration of larger raindrops larger than a diameter of 4 mm to  total number concentration was the smallest, and the proportion of rain intensity of that to total rain intensity was minimal. Raindrop size distribution of three different rainfall intensity  presented single distribution, when it presented double distribution, the corresponding rain intensity position was different under three different types of rainstorms. For the velocity spectrum, the number of raindrops under different types of rainstorms had the same center, and this center point located below the empirical curve. The Z-I relationship in central and southern Hebei Province underestimated the precipitation of the low trough cold front rainstorm and overestimated the precipitation of the low vortex rainstorm and warm shear line type of rainstorm, especially the low vortex type of rainstorm.

Key words:  , laser raindrop spectrometer, raindrop size distribution, rainstorm, velocity spectrum distribution, μ-λ relationship, Z-I relationship

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