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Improved Doppler Velocity Dealiasing for Radar Data Assimilation and Storm-Scale Vortex Detection

机译:改进的多普勒速度去混叠用于雷达数据同化和风暴尺度涡旋检测

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摘要

The Doppler velocity dealiasing technique based on alias-robust VAD and variational (AR-Var) analyses developed at the National Severe Storms Laboratory for radar data quality control and assimilation is further improved in its two-step procedures: the reference check in the first step and the continuity check in the second step. In the first step, the alias-robust variational analysis is modified adaptively and used in place of the alias-robust velocity-azimuth display (VAD) analysis for all scan modes (rather than solely theWSR-88D volume coverage pattern 31 with the Nyquist velocity V_N reduced below 12ms~(?1) and the TDWR Mod80 with V_N reduced below 15ms~(?1)), so more raw data can pass the stringent threshold conditions used by the reference check in the first step.This improves the dealiased data coverage without false dealiasing to better satisfy the high data quality standard required by radar data assimilation. In the second step, new procedures are designed and added to the continuity check to increase the dealiased data coverage over storm-scale areas threatened by intense mesocyclones and their generated tornados.The performances of the improved dealiasing technique versus the existing techniques are exemplified by the results obtained for tornadic storms scanned by the operational KTLX radar in Oklahoma.
机译:基于严重鲁棒VAD和变分(AR-Var)分析的多普勒速度脱象技术在国家严重风暴实验室开发的用于雷达数据质量控制和同化的两步程序中得到了进一步改进:第一步中的参考检查并在第二步中进行连续性检查。第一步,自适应修改别名鲁棒性变化分析,并代替所有扫描模式的别名鲁棒速度方位角显示(VAD)分析(而不是仅使用奈奎斯特速度的WSR-88D体积覆盖模式31) V_N降低到12ms〜(?1)以下,而TDWR Mod80的V_N降低到15ms〜(?1)以下),因此更多的原始数据可以通过第一步中参考检查所使用的严格阈值条件,从而改善了脱位数据覆盖范围不进行错误的脱钩处理,以更好地满足雷达数据同化所需的高数据质量标准。在第二步中,设计了新的程序并将其添加到连续性检查中,以增加在受到强烈的中气旋及其产生的龙卷风威胁的风暴规模区域上的脱碳数据覆盖率。改进的脱碳技术与现有技术相比的性能体现在由俄克拉荷马州的运行中的KTLX雷达扫描的暴风雨获得的结果。

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