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A Dual-Polarization Radar Signature of Hydrometeor Refreezing in Winter Storms

机译:冬季风暴中水汽凝结的双极化雷达特征

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Polarimetric radar measurements in winter storms that produce ice pellets have revealed a unique signature that is indicative of ongoing hydrometeor refreezing. This refreezing signature is observed within the low-level subfreezing air as an enhancement of differential reflectivity Z(DR) and specific differential phase K-DP and a decrease of radar reflectivity factor at horizontal polarization Z(H) and copolar correlation coefficient (hv). It is distinct from the overlying melting-layer brightband signature and suggests that unique microphysical processes are occurring within the layer of hydrometeor refreezing. The signature is analyzed for four ice-pellet cases in central Oklahoma as observed by two polarimetric radars. A statistical analysis is performed on the characteristics of the refreezing signature for a case of particularly long duration. Several hypotheses are presented to explain the appearance of the signature, along with a summary of the pros and cons for each. It is suggested that preferential freezing of small drops and local ice generation are plausible mechanisms for the appearance of the Z(DR) and K-DP enhancements. Polarimetric measurements and scattering calculations are used to retrieve microphysical information to explore the validity of the hypotheses. The persistence and repetitiveness of the signature suggest its potential use in operational settings to diagnose the transition between freezing rain and ice pellets.
机译:在产生冰粒的冬季风暴中,极化雷达测量显示出独特的特征,表明水凝结物正在重新冻结。在低空亚冰冷空气中观察到这种重新冻结特征,这是差分反射率Z(DR)和特定差分相位K-DP的增强以及水平偏振Z(H)和共极相关系数(hv)时雷达反射率因子的降低。它与上覆的熔融层亮带特征不同,表明在水凝转冰层内发生了独特的微物理过程。通过两个极化雷达对俄克拉荷马州中部的四个冰球病例进行了签名分析。对于持续时间特别长的情况,将对重新冻结签名的特征进行统计分析。提出了几种假设来解释签名的外观,并总结了每种假设的优缺点。建议优先冻结小滴和局部结冰是Z(DR)和K-DP增强剂出现的合理机制。极化测量和散射计算用于检索微物理信息,以探索假设的有效性。签名的持久性和重复性表明它在操作环境中可能用于诊断冻雨和冰粒之间的过渡。

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