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首页> 外文期刊>Journal of Applied Meteorology and Climatology >Dual-Wavelength Polarimetric Radar Analyses of Tornadic Debris Signatures
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Dual-Wavelength Polarimetric Radar Analyses of Tornadic Debris Signatures

机译:湍流碎片特征的双波长极化雷达分析

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Statistical properties of tornado debris signatures (TDSs) are investigated using S- and C-band polarimetric radar data with comparisons to damage surveys and satellite imagery. Close proximity of the radars to the 10 May 2010 Moore-Oklahoma City, Oklahoma, tornado that was rated as a 4 on the enhanced Fujita scale (ef4) provides a large number of resolution volumes, and good temporal and spatial matching for dual-wavelength comparisons. These comparisons reveal that S-band TDSs exhibit a higher radar reflectivity factor (Zhh) ar,d copolar cross-correlation coefficient (p_(tw)) than do C-band TDSs. Higher S-band phv may result from a smaller ratio of non-Rayleigh scatterers to total scatterers due to the smaller electrical sizes of debris and, consequently, reduced resonance effects. A negative ZDR signature is observed at 350 m AGL at both the S and C bands as the tornado passes over a vegetated area near a large body of water. Another interesting signature is a positive (negative) shift in propagation differential phase (OPHI) at S band (C band), which could result from increased phase folding at C band. With increasing height above 350 m AGL, the S- and C-band Z_(MH) decreases and p_(hv) increases, indicating a decrease in debris size. To investigate relationships between polarimetric variables and tornado wind fields, range profiles of radial and tangential wind speeds are obtained using two radars. Velocity profiles reveal radial divergence within vortex core flow through 700 m AGL collocated with the TDS. Formation of a weak-echo hole and higher P_(hv) in the vortex center aloft suggests debris centrifuging, outward motion of scatterers due to radial divergence (i.e., two-cell vortex flow), or both.
机译:使用S波段和C波段极化雷达数据,并与损害调查和卫星图像进行比较,研究了龙卷风碎片特征(TDS)的统计特性。雷达与2010年5月10日龙卷风的俄克拉荷马州俄克拉何马城非常接近,在增强的藤田标度(ef4)中被评为4级,可提供大量的分辨率,并且对双波长具有良好的时空匹配比较。这些比较表明,与C波段TDS相比,S波段TDS表现出更高的雷达反射率因子(Zhh)ar,d共极互相关系数(p_(tw))。由于碎片的电气尺寸较小,因此,非瑞利散射体与总散射体的比例较小,可能导致较高的S带phv,从而降低了共振效应。当龙卷风经过大片水域附近的植被区域时,在S和C波段在350 m AGL处都观察到负ZDR信号。另一个有趣的特征是在S波段(C波段)的传播差分相位(OPHI)出现正(负)偏移,这可能是由于C波段的相位折叠增加所致。随着高度的增加,高于350 m AGL,S和C波段的Z_(MH)减小,而p_(hv)增大,表明碎屑尺寸减小。为了研究极化变量与龙卷风风场之间的关系,使用两个雷达获得了径向风速和切向风速的距离分布。速度剖面揭示了通过与TDS并置的700 m AGL的旋涡芯流内的径向发散。在涡流中心高空形成弱回声孔和较高的P_(hv)表示碎片离心,由于径向发散(即两单元涡流)而导致的散射体向外运动或两者兼有。

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