山東高唐EF3級龍卷S波段雙偏振雷達探測特征
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山東省自然科學基金項目(ZR2020MD053)、山東省氣象局重點課題(2021sdqxz09) 共同資助


CINRAD/SA-D Dual Polarization Radar Detection Characteristic of EF3-Level Tornado in Gaotang, Shandong Province
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    摘要:

    利用濟南CINRAD/SAD雙偏振天氣雷達的探測數據,結合龍卷實地調查資料,對2021年7月11日發生在山東聊城高唐的一次EF3級龍卷風暴的雷達回波演變過程、龍卷風暴單體的結構及龍卷風暴的中氣旋(M)、龍卷渦旋特征(TVS)和龍卷碎片特征(TDS)進行分析。結果表明:①龍卷發生在高空冷渦及地面氣旋共同〖JP2〗作用天氣形勢下,龍卷位于地面氣旋中心東偏北方向約200 km處;螺旋狀對流云帶中2個較強對流單體合并發展,演變成超級單體風暴,其后部下沉氣流較強,與強的入流共同作用,誘發了強龍卷。②風暴中中氣旋的頂高大多在5~7 km之間;龍卷發生前中氣旋最大切變平均值為19×10-3 s-1,龍卷維持期間,中氣旋最大切變平均值達到51×10-3 s-1。③高唐龍卷渦旋底層雙偏振參量主要特征是大的水平極化反射率因子,小的甚至負的差分反射率ZDR,小的相關系數CC;TDS時間及空間特征是,底層CC都小于0.7,CC低值區的面積在龍卷生成后隨時間明顯增大,CC值底層最小,隨高度逐漸增大;CC低值區的面積低層和頂層較大,中間層較?。积埦砩珊骉DS最大高度隨時間逐漸增高,龍卷最強時TDS最高達到4.8 km,之后逐漸降低;龍卷消散后,1.5°以上TDS的特征很快消失,0.5°仰角TDS特征繼續維持了大約11 min。

    Abstract:

    Based on the detection data of CINRAD/SA-D dualpolarization weather radar in Jinan and the field survey data of tornado, the evolution process of radar echo, the structure of tornado cell, mesocyclone (M), tornadic vortex signature (TVS) and tornadic debris signature (TDS) of a class EF3 tornado storm in Gaotang, Liaocheng, Shandong Province, on July 11, 2021, are analyzed. The results show that: (1) The tornado, which was located about 200 km northeast of the surface cyclone centre, occurred under the weather situation of the common effect of the upper cold vortex and the surface cyclone. The two strong convective cells in the spiral convective cloud zone merged and developed into a supercell storm. The downdraft behind the supercell was strong, which together with the strong inflow, induced a strong tornado. (2) The top heights of mesocyclones in storms were mostly between 5 and 7 km; the average maximum shear of mesocyclone before the tornado was 19×10-3 s-1; during the tornado maintenance period, the average maximum shear value of mesocyclone reached 51×10-3 s-1. (3) The main characteristics of the dual polarization parameters of the bottom layer of the Gaotang tornado vortex were large horizontal polarization reflectivity factor, small or even negative ZDR and small CC; the temporal and spatial characteristics of TDS were that the bottom CC was less than 0.7, the area of the low CC value area increased significantly with time after the tornado formation, and the bottom CC value was the minimum, increased gradually with height; the area of the low-value area of CC was larger in the lower and top layers, and smaller in the middle layer; the maximum height of TDS gradually increased with time after the tornado formation, and the maximum height of TDS reached 4.8 km when the tornado was strongest, and then decreased gradually; after the tornado dissipating, the TDS characteristics above 1.5° disappeared quickly, and the TDS characteristics at 0.5° elevation continued to maintain for about 11 minutes.

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黃秀韶,朱君鑒,刁秀廣,龔佃利.山東高唐EF3級龍卷S波段雙偏振雷達探測特征[J].氣象科技,2023,51(3):397~408

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  • 收稿日期:2022-09-30
  • 定稿日期:2023-03-28
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  • 在線發布日期: 2023-06-29
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