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Precipitation Nowcasting with Three-Dimensional Space-Time Extrapolation of Dense and Frequent Phased-Array Weather Radar Observations

机译:密集和频繁相控阵天气雷达观测的三维时空外推法进行降水临近预报

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摘要

The phased-array weather radar (PAWR) is a new-generation weather radar that can make a 100-m-resolution three-dimensional (3D) volume scan every 30 s for 100 vertical levels, producing ~100 times more data than the conventional parabolic-antenna radar with a volume scan typically made every 5 min for 15 scan levels. This study takes advantage of orders of magnitude more rapid and dense observations by PAWR and explores high-precision nowcasting of 3D evolution at 1-10-km scales up to several minutes, which are compared with conventional horizontal two-dimensional (2D) nowcasting typically at O(100) km scales up to 1-6 h. A new 3D precipitation extrapolation system was designed to enhance a conventional algorithm for dense and rapid PAWR volume scans. Experiments show that the 3D extrapolation successfully captured vertical motions of convective precipitation cores and outperformed 2D nowcasting with both simulated and real PAWR data.
机译:相控阵天气雷达(PAWR)是新一代的天气雷达,可以每30 s对100个垂直级别进行100 m分辨率的三维(3D)体积扫描,生成的数据量比常规数据多100倍具有体积扫描功能的抛物面天线雷达通常每5分钟进行一次扫描,每次扫描15次。这项研究利用PAWR更快,更密集的观测数量级,并探索了3D演化的高精度临近预报,范围为1-10-km,长达数分钟,与传统的水平二维(2D)临近预报相比在O(100)km时可扩展到1-6 h。设计了一种新的3D降水外推系统,以增强用于密集和快速PAWR体积扫描的常规算法。实验表明,通过3D外推法成功地捕获了对流降水芯的垂直运动,并且在模拟和实际PAWR数据方面均优于2D临近预报。

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