兩次強降水過程雨滴譜特征及差異
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安徽省氣象局氣象科技發展基金KM201609資助


Raindrop Spectral Characteristics of Two Different Types of Heavy Precipitation Based on Raindrop Spectral Data
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    摘要:

    利用壽縣觀測站內的Parsivel激光雨滴譜儀結合觀測站雨量數據及雷達基數據,分析了發生在2015年6月26—30日梅雨期間和2015年8月7—10日超強臺風“蘇迪羅”影響期間2次強降水過程的雨滴譜結構特征及其差異,擬合了雨強與雷達反射率因子之間的關系。結果表明:雨強的大小直接影響雨滴譜的特征參量,且隨著雨強增大而增大;梅雨鋒暴雨中1.0 mm<直徑≤1.5 mm的粒子所占比例最多,雨強貢獻率最大;臺風雨中0.75 mm<直徑≤1.0 mm的粒子所占比例最多,但1.0 mm<直徑≤1.25 mm的粒子對雨強的貢獻最大,說明較大粒子對強降水的貢獻較大。

    Abstract:

    Using the data from the Parsivel laser precipitation particle spectrometer combined with rainfall data and radar data, we analyze the structure characteristics and difference of raindrop spectrums of two heavy rains in Shouxian. In addition, the relationship between rain intensity and radar reflectivity factor is fitted. Results show that the rainfall intensity directly affects the characteristic parameters of the raindrop spectrum, and increases with the rainfall intensity. In the Meiyu front rainstorm, contributions to the total number concentration of raindrops with a diameter of 0.25 to 1.0 mm are the maximum, and rainfall intensity is the greatest. In the typhoon rainstorm, the contributions to the total number concentration of raindrops with a diameter of 0.75 to 1.0 mm are the greatest, but those to the total rainfall intensity of raindrops with a diameter of 1.0 to 1.25 mm are the greatest, which indicates that the larger particles contribute more greatly to the heavy rainfall; The ZR relationship of the Meiyu front rainstorm is 〖WTBX〗Z〖WTBZ〗=160〖WTBX〗I〖WTBZ〗1.47, and the 〖WTBX〗ZR〖WTBZ〗 relationship of the typhoon rain is 〖WTBX〗Z〖WTBZ〗=152〖WTBX〗I〖WTBZ〗1.30.

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李俠麗,潘先潔,童應祥,倪婷,黃國貴,李景安,陶杰,姚祎,凌新鋒.兩次強降水過程雨滴譜特征及差異[J].氣象科技,2019,47(2):322~328

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  • 收稿日期:2018-03-09
  • 定稿日期:2018-11-01
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  • 在線發布日期: 2019-04-24
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