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首页> 外文期刊>Advances in Atmospheric Sciences >On the forced tangentially-averaged radial-vertical circulation within vortices. Part II: The transformation of Tropical Storm Haima (2004)
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On the forced tangentially-averaged radial-vertical circulation within vortices. Part II: The transformation of Tropical Storm Haima (2004)

机译:涡内强迫切向平均径向垂直循环。第二部分:热带风暴海马的转变(2004年)

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摘要

A real case study for the transformation of Tropical Storm (TS) Haima (2004) into an extratropical cyclone (EC) is carried out numerically since, after landfall, Haima (2004) (as an EC) brought severe weather to a large area (from the south to the north) in China during 13–16 September 2004. With the linear diagnostic model (derived in a previous study) for the tangentially-averaged radial-vertical circulation within vortices moving on the spherical Earth, Haima’s (2004) life cycle is reconstructed noticeably well. Therefore, the major contributor could be identified confidently for Haima’s (2004) extratropical transition based on the diagnostic model outputs. The quantitative comparison shows that up to a 90% contribution to the innerregion updraft and a 55% contribution to the upper-layer outflow come from latent heating during Haima’s (2004) TS stage. Up to a 90% contribution to the inner-region updraft and nearly a 100% contribution to the upper-layer outflow come from the upper-layer eddy angular momentum advection (EAMA) during Haima’s (2004) EC stage. Representing the asymmetric structure of the storm, the predominantly positive contribution of the upper-layer EAMA to Haima’s (2004) transformation is closely associated with the Sshaped westerlies in the upper layer with two jets. One jet in the cyclonic-curvature area carries cyclonic angular momentum into the storm, and the other jet in the anticyclonic-curvature area carries anticyclonic angular momentum out of the storm. Consequently, the newly-increased cyclonic tangential wind is deflected by the Coriolis force to the right to form the upper-layer outflow accompanied by the central-area rising motion, leading to Haima’s (2004) extratropical transition after its landfall.
机译:对海马(2004)热带风暴(TS)转变为温带气旋(EC)进行了真实案例研究,因为在登陆后,海马(2004)(作为EC)将大范围的恶劣天气带到了热带地区(于2004年9月13日至16日在中国从南到北)。利用线性诊断模型(在先前的研究中得出),对在球形地球上运动的涡流进行切向平均的径向垂直循环,海马(2004)的生活周期重构得很好。因此,根据诊断模型的输出,可以确定Haima(2004)温带过渡的主要贡献者。定量比较显示,海马(2004)TS阶段潜在的加热对内部区域上升气流的贡献高达90%,对上层流出的贡献高达55%。 Haima(2004)EC阶段,上层涡流角动量平流(EAMA)对内部区域上升的贡献高达90%,对上层流出的贡献接近100%。代表风暴的不对称结构,上层EAMA对Haima(2004)转换的主要积极贡献与上层有两个射流的S型西风密切相关。气旋曲率区域中的一个喷流将气旋角动量带入风暴中,而反气旋曲率区域中的另一个喷流将反气旋角动量带出风暴。因此,新增加的气旋切向风被科里奥利力偏转到右侧,形成上层流出,并伴随着中部区域上升运动,导致海马(2004)登陆后发生了温带过渡。

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