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Application of a Typhoon Initialization Scheme Based on the Incremental Analysis Updates Technique in a Rapid Update Cycle System 被引量:2

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摘要 Initialization of tropical cyclones plays an important role in typhoon numerical prediction. This study applied a typhoon initialization scheme based on the incremental analysis updates (IAU) technique in a rapid refresh system to improve the prediction of Typhoon Lekima (2019). Two numerical sensitivity experiments with or without application of the IAU technique after performing vortex relocation and wind adjustment procedures were conducted for comparison with the control experiment, which did not involve a typhoon initialization scheme. Analysis of the initial fields indicated that the relocation procedure shifted the typhoon circulation to the observed typhoon region, and the wind speeds became closer to the observations following the wind adjustment procedure. Comparison of the results of the sensitivity and control experiments revealed that the vortex relocation and wind adjustment procedures could improve the prediction of typhoon track and intensity in the first 6-h period, and that these improvements were extended throughout the first 12-h period of the prediction by the IAU technique. The new typhoon initialization scheme also improved the simulated typhoon structure in terms of not only the wind speed and warm core prediction but also the organization of the eye of Typhoon Lekima. Diagnosis of the tendencies of variables showed that use of the IAU technique in a typhoon initialization scheme is efficacious in resolving the spurious high-frequency noise problem such that the model is able to reach equilibrium as soon as possible.
作者 陈锋 董美莹 冀春晓 邱金晶 CHEN Feng;DONG Mei-ying;JI Chun-xiao;QIU Jin-jing(Zhejiang Institute of Meteorological Sciences,Hangzhou 310008 China)
出处 《Journal of Tropical Meteorology》 SCIE 2020年第4期428-440,共13页 热带气象学报(英文版)
基金 Science and Technology Project of Zhejiang Province(LGF20D050001) East China Regional Meteorological Science and Technology Innovation Fund Cooperation Project(QYHZ201805) Meteorological Science and Technology Project of Zhejiang Meteorological Service(2018ZD01,2019ZD11)。
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