首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >Large-scale circulation patterns favourable to tropical cyclogenesis over the western North Pacific and associated barotropic energy conversions
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Large-scale circulation patterns favourable to tropical cyclogenesis over the western North Pacific and associated barotropic energy conversions

机译:有利于北太平洋西部热带气旋形成的大规模环流模式及相关的正压能量转换

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摘要

Using the National Centers for Environmental Prediction-Department of Energy (NCEP-DOE) reanalysis and the Joint Typhoon Warning Center (JTWC) best track data for the period 1991-2010, this study classifies five largescale circulation patterns in association with the tropical cyclone (TC) formation over the western North Pacific (WNP): the monsoon shear (MS), the monsoon confluence (MC), the reverse-oriented monsoon trough (RMT), the monsoon gyre (MG), and the trade wind easterlies (TE). The first three patterns account for about 80% of tropical cyclogeneses. Through a diagnosis of energetics, it is found that the tropical cyclogenesis in the MS, MC, and RMT patterns is highly associated with the barotropic energy conversion. Analysis shows that the horizontal shear of basic zonal flow provides a favourable condition for the eddy kinetic energy (EKE) growth in the MS pattern. When a TC forms in the MC pattern, the horizontal shear and convergence of basic zonal flow are both important for the EKE growth. When the basic flow is the RMT pattern, in addition to the horizontal shear of basic flow, zonal and meridional wind convergence play an important role for tropical cyclogenesis over the WNP and the South China Sea, respectively. However, the barotropic energy conversion appears not to be a main mechanism for the EKE growth in the MG and TE patterns.
机译:利用美国国家能源环境预测中心(NCEP-DOE)的再分析和联合台风预警中心(JTWC)1991-2010年期间的最佳跟踪数据,本研究将五种与热带气旋相关的大型环流模式进行了分类(北太平洋西部(WNP)的TC)形成:季风剪切(MS),季风汇合(MC),反向风季槽(RMT),季风回旋(MG)和顺风向东(TE) )。前三种模式约占热带气旋的80%。通过对能量学的诊断,发现MS,MC和RMT模式中的热带气旋与正压能量转换高度相关。分析表明,基本纬向流的水平剪切为MS模式中的涡动能(EKE)的生长提供了有利条件。当TC以MC模式形成时,水平切变和基本纬向流的汇聚对于EKE的生长都非常重要。当基本流量是RMT模式时,除了基本流量的水平剪切作用外,纬向和子午风的收敛对WNP和南中国海的热带气旋作用也起着重要作用。但是,正压能量转换似乎不是MG和TE模式中EKE增长的主要机制。

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