An Automated Velocity Dealiasing Scheme for Radar Data Observed from Typhoons and Hurricanes

Author:

He Guangxin1,Sun Juanzhen2,Ying Zhuming2

Affiliation:

1. Key Laboratory of Meteorological Disaster, Ministry of Education (KLME), and International Joint Research Laboratory on Climate and Environment Change (ILCEC), and Collaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters, and Center of Data Assimilation for Research and Application, Nanjing University of Information Science and Technology, and Nanjing Joint Center of Atmospheric Research, Nanjing, and Key Laboratory of Meteorology and Ecological Environment of Hebei...

2. National Center for Atmospheric Research, Boulder, Colorado

Abstract

AbstractAccurate and automated dealiasing of radar data is important for data interpretation and downstream applications such as numerical weather prediction (NWP) models. In this paper an improved radial velocity dealiasing scheme is presented and evaluated using observations from several S-band radars under the severe weather conditions of typhoons and hurricanes. This scheme, named Automated Dealiasing for Typhoon and Hurricane (ADTH), is a further development of the China New Generation Doppler Weather Radar (CINRAD) improved dealiasing algorithm (CIDA). The upgraded algorithm ADTH includes three modules designed to select the first radial from which the dealiasing process starts, to conduct a two-way multipass dealiasing, and to perform an error check for a final local dealiasing. The dealiasing algorithm is applied to two typhoon hurricane cases and four typhoon cases observed with radars from CINRAD, NEXRAD of the United States, and the Taiwan radar network for a continuous period of 12 h for each of the selected cases. The results show that ADTH outperforms CIDA for all of the test cases.

Funder

Research Program for Nanjing Joint Center of Atmospheric Research

Special Research Program for Public Welfare (Meteorology) of China

Research Program for Key Laboratory of Meteorology and Ecological Environment of Hebei Province

Priority Academic Program Development of Jiangsu Higher Education Institutions

Publisher

American Meteorological Society

Subject

Atmospheric Science,Ocean Engineering

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