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首页> 外文期刊>Journal of Applied Meteorology and Climatology >Relationships between Extreme Rain Rates and Convective Intensities from the Perspectives of TRMM and WSR-88D Radars
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Relationships between Extreme Rain Rates and Convective Intensities from the Perspectives of TRMM and WSR-88D Radars

机译:TRMM和WSR-88D雷达视角下极端雨率与对流强度之间的关系

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摘要

TRMM PR 2A25, version 7 (V7), retrievals of reflectivity Z and rainfall rate R are compared with WSR-88D dual-polarimetric S-band radar data for 28 radars over the southeastern United States after matching their horizontal resolution and sampling. TRMM Ku-band measurements are converted to S-band approximations to more directly compare reflectivity estimates. Rain rates are approximated from WSR-88D data using the CSU-hydrometeor identification rainfall optimization (HIDRO) algorithm. Tropics-wide TRMM retrievals confirm previous findings of a low overlap fraction between extreme convective intensity, as approximated by the maximum 40-dBZ height, and extreme near-surface rain rates. WSR-88D data also confirm this low overlap but show that it is likely higher than TRMM PR retrievals indicate. For maximum 40-dBZ echo heights that extend above the freezing level, mean WSR-88D reflectivities at low levels are approximately 2 dB higher than TRMM PR reflectivities. Higher WSR-88D-retrieved rain rates for a given low-level reflectivity combine with these higher low-level reflectivities for a given maximum 40-dBZ height to produce rain rates that are approximately double those retrieved by the TRMM PR for maximum 40-dBZ heights that extend above the freezing level. TRMM PR path-integrated attenuation, and WSR-88D specific differential phase, differential reflectivity, and hail fraction indicate that the TRMMPR 2A25 V7 algorithm is possibly misidentifying low-midlevel hail and/or graupel as greater attenuating liquid, or vice versa. This misidentification, coupled with underestimation of path-integrated attenuation caused by nonuniform beamfilling and higher rain rates produced by specific differential phase (KDP)-R than Z-R relationships, results in low-biased 2A25 V7 rain rates in intense convection.
机译:TRMM PR 2A25,版本7(V7),反射率Z和降雨率R的检索与WSR-88D双极性S波段雷达数据进行比较,在匹配水平分辨率和采样后,在美国东南部的28个雷达。 TRMM KU波带测量被转换为S波段近似,以更直接比较反射率估计。使用CSU-Hydometeor识别降雨优化(HIDRO)算法,雨率从WSR-88D数据近似。热带宽度的TRMM检索确认以极端对流强度之间的低重叠分数的先前发现,如最大40 dBz高度,极端近地雨率。 WSR-88D数据也确认了这一点低重叠,但表明它可能高于TRMM PR检索表示。对于高于冷冻水平的最大40-dBz回波高度,平均值在低水平下的WSR-88D反射率比TRMM PR反射活动高约2 dB。对于给定的低级反射率的​​更高WSR-88D检索到的雨率与这些更高的低级反射率相结合,对于给定的最大40dBz高度,产生雨率,这些雨率约为TRMM PR最大为40-DBZ的两倍。高于冻结水平的高度。 TRMM PR路径集成衰减和WSR-88D特定差分相位,差分反射率和冰雹分数表明TRMMPR 2A25 V7算法可能被严明地识别低中型冰雹和/或GRAUPEL作为更大的衰减液体,反之亦然。这种误识别,与由非均匀的光束填充和由特定差分相(KDP)-R产生的更高的雨率低于Z-R的关系引起的路径综合衰减,导致强烈对流的低偏置2A25 V7雨率。

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