祁連山北坡一次人工增雨降水過程雨滴譜特征分析
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國家重點研發計劃(2019YFC1510302)、中國氣象局西北區域人影建設研究試驗項目(RYSY201901)、甘肅省氣象局重點項目(Zd202103)共同資助


Raindrop Spectrum Characteristics of an Artificial Precipitation Enhancement Process on Northern Slope of Qilian Mountains
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    摘要:

    本文以2020年8月21日在祁連山開展的人工增雨外場試驗為例,分析了祁連山北坡雨滴譜特征和增雨作業前后雨滴譜特征參量和譜型的變化。結果表明:雖然此次降水不均勻,但北坡3個試驗點微物理參量特征值的演變較接近,平均雨滴譜譜寬均較小,譜型基本一致,均為單峰型,峰值出現在0.5 mm左右。Gamma分布對雨滴譜的擬合效果較好,分布曲線能較準確地反映實際雨滴譜的分布形態,但在峰值段(0.5 mm)擬合值有偏差,擬合結果略小于實測譜。ZI之間滿足對數相關,擬合優度R2值都在0.86以上,有較好的擬合關系。作業后雨滴尺度、總數濃度、雨強等均出現增大趨勢,作業后雨滴譜的譜寬逐漸增大,作業后10 min,峰型由單峰轉變為雙峰,作業后30 min、60 min,譜寬持續增大,說明此時云內小雨滴間的碰并過程開始出現,產生了較大尺度的雨滴。

    Abstract:

    Based on the observation data from an artificial precipitation enhancement field experiment, which was carried out on 21 August 2020 in the Qilian Mountains, the characteristics of the raindrop spectrum on the northern slope of the Qilian Mountains and the changes of raindrop spectrum characteristic parameters and spectrum types before and after the precipitation enhancement operation are analyzed. The results show that the precipitation was uneven, but the microphysical parameter eigenvalues of the three observation stations on the northern slope were relatively close. The average raindrop spectral widths were small, and the spectral patterns were basically the same, all of which were unimodal. The peak appeared at about 0.5 mm. The Gamma distribution had a good fitting effect on the raindrop spectrum. The distribution curve can more accurately reflect the distribution of the actual raindrop spectrum, but the fitting value in the peak section (0.5 mm) was biased, and the fitting result was slightly smaller than the measured spectrum. The 〖WTBX〗ZI〖WTBZ〗 relation satisfied the logarithmic correlation; the goodnessoffit 〖WTBX〗R〖WTBZ〗2 was above 0.86; and there was a good fitting relationship. After the operation, the raindrop size, total concentration, rain intensity, etc. all show an increasing trend. After the precipitation enhancement operation, the spectrum width of the raindrop spectrum gradually increased. The peak shape changed from single peak to double peak 10 minutes after the operation. The spectrum width continued to increase 30 minutes and 60 minutes after operation, indicating that the collision process between small raindrops in the cloud began to occur at this time, resulting in largerscale raindrops.

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龐朝云,李寶梓,張豐偉,陳祺,羅漢,楊瑞鴻.祁連山北坡一次人工增雨降水過程雨滴譜特征分析[J].氣象科技,2021,49(4):621~628

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  • 收稿日期:2020-10-06
  • 定稿日期:2021-01-21
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  • 在線發布日期: 2021-08-23
  • 出版日期: 2021-08-31
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