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首页> 外文期刊>Journal of Applied Meteorology and Climatology >Polarimetric Signatures in Supercell Thunderstorms
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Polarimetric Signatures in Supercell Thunderstorms

机译:Supercell雷暴中的极化特征

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摘要

Data from polarimetric radars offer remarkable insight into the microphysics of convective storms. Numerous tornadic and nontornadic supercell thunderstorms have been observed by the research polarimetric Weather Surveillance Radar-1988 Doppler (WSR-88D) in Norman, Oklahoma (KOUN); additional storm data come from the Enterprise Electronics Corporation "Sidpol" C-band polarimetric radar in Enterprise, Alabama, as well as the King City C-band polarimetric radar in Ontario, Canada. A number of distinctive polarimetric signatures are repeatedly found in each of these storms. The forward-flank down-draft (FFD) is characterized by a signature of hail observed as near-zero Z_(DR) and high Z_(HH). In addition, a shallow region of very high Z_(DR) is found consistently on the southern edge of the FFD, called the Z_(DR) "arc." The Z_(DR) and K_(DP) columns and midlevel "rings" of enhanced Z_(DR) and depressed P_(HV) are usually observed in the vicinity of the main rotating updraft and in the rear-flank downdraft (RFD). Tornado touchdown is associated with a well-pronounced polarimetric debris signature. Similar polarimetric features in supercell thunderstorms have been reported in other studies. The data considered here are taken from both S- and C-band radars from different geographic locations and during different seasons. The consistent presence of these features may be indicative of fundamental processes intrinsic to supercell storms. Hypotheses on the origins, as well as microphysical and dynamical interpretations of these signatures, are presented. Implications about storm morphology for operational applications are suggested.
机译:来自极化雷达的数据为对流风暴的微观物理学提供了卓越的见识。俄克拉荷马州诺曼市的极化气象监视雷达1988多普勒(WSR-88D)已观测到许多龙卷风和非龙卷风超级雷暴;其他风暴数据来自阿拉巴马州Enterprise的Enterprise Electronics Corporation的“ Sidpol” C波段极化雷达以及加拿大安大略省的King City C波段极化雷达。在这些风暴中的每一个中都反复发现许多独特的极化特征。前翼下降法(FFD)的特征是冰雹的特征为Z_(DR)接近零和Z_(HH)接近零。此外,在FFD的南部边缘始终发现Z_(DR)很高的浅层区域,称为Z_(DR)“弧”。通常在主旋转上升气流附近和后侧下降气流(RFD)中观察到Z_(DR)和K_(DP)列以及增强的Z_(DR)和凹陷的P_(HV)的中间“环”。龙卷风着陆与发音清晰的极化碎片相关。在其他研究中,也已经报道了超级单体雷暴中类似的极化特征。这里考虑的数据来自不同地理位置和不同季节的S波段和C波段雷达。这些特征的一致存在可以指示超级小区风暴固有的基本过程。介绍了起源的假设,以及这些特征的微观物理和动力学解释。建议对业务应用的风暴形态学有影响。

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