Seasonal Variations of Observed Raindrop Size Distribution in East China

被引:0
作者
Long Wen
Kun Zhao
Mengyao Wang
Guifu Zhang
机构
[1] Nanjing University,Key Laboratory of Mesoscale Severe Weather of Ministry of Education and School of Atmospheric Sciences
[2] Chinese Academy of Meteorological Sciences,State Key Laboratory of Severe Weather and Joint Center for Atmospheric Radar Research of China Meteorological Administration and Nanjing University
[3] Xichang Satellite Launch Center,School of Meteorology and Center for Analysis and Prediction of Storms
[4] University of Oklahoma,undefined
来源
Advances in Atmospheric Sciences | 2019年 / 36卷
关键词
raindrop size distribution; precipitation microphysics; disdrometer; seasonal variation; East China; 雨滴谱分布; 降水微物理; 雨滴谱仪; 季节变化; 中国东部地区;
D O I
暂无
中图分类号
学科分类号
摘要
Seasonal variations of rainfall microphysics in East China are investigated using data from the observations of a two-dimensional video disdrometer and a vertically pointing micro rain radar. The precipitation and rain drop size distribution (DSD) characteristics are revealed for different rain types and seasons. Summer rainfall is dominated by convective rain, while during the other seasons the contribution of stratiform rain to rainfall amount is equal to or even larger than that of convective rain. The mean mass-weighted diameter versus the generalized intercept parameter pairs of convective rain are plotted roughly around the “maritime” cluster, indicating a maritime nature of convective precipitation throughout the year in East China. The localized rainfall estimators, i.e., rainfall kinetic energy–rain rate, shape–slope, and radar reflectivity–rain rate relations are further derived. DSD variability is believed to be a major source of diversity of the aforementioned derived estimators. These newly derived relations would certainly improve the accuracy of rainfall kinetic energy estimation, DSD retrieval, and quantitative precipitation estimation in this specific region.
引用
收藏
页码:346 / 362
页数:16
相关论文
共 256 条
  • [41] Raj P. E.(2002)Kinetic energy of rain and its functional relationship with intensity J. Hydrol. 257 256-367
  • [42] Bhattacharya A.(2017)A comparison study of summer season raindrop size distribution between Palau and Taiwan, two islands in western Pacific J. Geophys. Res. 122 11 787-75
  • [43] Maitra A.(2011)Polarimetric radar observation of the melting layer in a convective rainfall system during the rainy season over the East China Sea Journal of Applied Meteorology and Climatology 50 354-1424
  • [44] Chang W.-Y.(2014)Characteristics of the raindrop size distributions and their retrieved polarimetric radar parameters in northern and southern China Atmos. Res. 135–136 59-371
  • [45] Wang T.-C. C.(2002)Raindrop size distribution using method of moments for terrestrial and satellite communication applications in Singapore IEEE Trans. Antennas Propag. 50 1420-1685
  • [46] Lin P.-L.(1996)Evidence from tropical raindrop spectra of the origin of rain from stratiform versus convective clouds J. Appl. Meteor. 35 355-1690
  • [47] Chen B. J.(2008)Raindrop size distribution measurements in tropical cyclones Mon. Wea. Rev. 136 1669-1775
  • [48] Wang Y.(2013)Comparison of raindrop size distribution measurements by collocated disdrometers J. Atmos. Oceanic Technol. 30 1672-1791
  • [49] Ming J.(1983)Natural variations in the analytical form of the raindrop size distribution J. Appl. Meteor. 22 1764-230
  • [50] Chen B. J.(2007)Microphysics of raindrop size spectra: Tropical continental and maritime storms Journal of Applied Meteorology and Climatology 46 1777-176