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Probabilistic Evaluation of Tibetan Plateau Mesoscale Vortex on 18 July 2013

机译:2013年7月18日藏高高原Mesoscale Vortex的概率评价

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Tibetan Plateau (TP) mesoscale vortex (TPMV) was regarded as one of the most important rain bearing systems in China. Previous studies focused on the mechanisms of the TPMV in the viewpoint of deterministic forecast; however, few studies investigate the predictability of the TPMV using the Observing System Research and Predictability Experiment (THORPEX) Interactive Grand Global Ensemble (TIGGE) from the European Center for Medium Range Weather Forecasts (ECWMF). This paper investigates the location and the intensity of the larger-scale synoptic systems that influenced the development of the TPMV and its associated heavy rainfall by correlation and composite analysis. The case study on 18 July 2013 shows that stronger Balkhash Lake ridge, weaker Baikal Lake trough, and weaker western Pacific subtropical high (WPSH) are favorable to formation of TPMV over the Sichuan basin (SCB); otherwise, weaker Balkhash Lake ridge, stronger Baikal Lake trough, and stronger WPSH result in formation of TPMV to west of the SCB slightly. After the initial time, forecast for next 48?h of the geopotential height over the SCB can be viewed as a precursor of the subsequent time-averaged 90–108?h forecast of TPMV. TPMV had critical contributions to the heavy rainfall over the SCB on 18 July 2013.
机译:西藏高原(TP)Messcale Vortex(TPMV)被认为是中国最重要的雨量系统之一。以前的研究重点是在确定性预测的观点中的TPMV的机制;然而,很少有研究使用来自欧洲中范围天气预报(ECWMF)的观测系统研究和可预测实验(Thepex)互动的Grand Glase集团(Thepex)互动大全球合奏(TIGGE)的观察系统研究和可预测性实验(TIGGE)。本文调查了较大规模概要系统的位置和强度,通过相关性和复合分析,影响TPMV的发展及其相关的大雨降雨。案例研究于2013年7月18日表明,Balkhash Lake Ridge,Bakikal Lake Trough较弱,较弱的西太平洋亚热带高(WPSH)有利于在四川盆地(SCB)上形成TPMV;否则,Balkhash Lake Ridge弱,Baikal Lake Trough更强,更强大的WPSH导致SCB向西的TPMV形成。在初始时间之后,可以将SCB上接下来的48·H的预测作为TPMV的后续时间平均90-108·H预测的前兆。 TPMV于2013年7月18日对SCB的大量降雨进行了关键贡献。

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