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首页> 外文期刊>Journal of the Atmospheric Sciences >Concentric Eyewall Formation in Typhoon Sinlaku (2008). Part III: Horizontal Momentum Budget Analyses
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Concentric Eyewall Formation in Typhoon Sinlaku (2008). Part III: Horizontal Momentum Budget Analyses

机译:Typhoon Sinlaku(2008)中的同心眼墙形成。 第三部分:水平动量预算分析

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This is a follow-up work to two prior studies examining secondary eyewall formation (SEF) in Typhoon Sinlaku (2008). This study shows that, in the SEF region, the majority of the elevated winds are supergradient. About two-thirds of the rapid increase in tangential wind tendencies immediately prior to SEF are attributed to agradient wind tendencies. This suggests the importance of nonlinear, unbalanced dynamical processes in SEF in addition to the classical axisymmetric balanced response to forcings of heating and momentum. In the SEF region, analyses show two distinct responsible processes for the increasing azimuthal tangential wind in two vertical intervals. Within the boundary inflow layer, the competing effect between the mean radial influx of absolute vorticity and deceleration caused by surface friction and subgrid diffusion yields a secondary maximum of positive tendency. Analyses further demonstrate the major impact of the mean radial influx of absolute vorticity on SEF. Above the boundary inflow layer, the vertical advection acts to vertically extend the tangential wind jet via the lofting of the enhanced tangential momentum farther upward. The roles of the nonlinear unbalanced dynamics in these two processes are discussed in this paper. From a Lagrangian perspective, the persistently increasing agradient force outweighs the frictional loss, effectively decelerating boundary layer inflowing air across the SEF region. This explains the sharpening of the radial gradient of boundary layer inflow, which is shown to be responsible for the buildup of a zone with concentrated boundary layer convergence. The previously proposed unbalanced dynamical pathway to SEF is elaborated upon and supported by the current results and discussion.
机译:这是两个先前研究的后续工作,检查台风Sinlaku(2008)中的次要眼罩形成(SEF)。本研究表明,在SEF地区,大多数升高的风是超级淋污染。在SEF之前,大约三分之二的直切风倾向快速增加归因于拖拉风倾向。这表明在SEF中的非线性,不平衡动态过程的重要性,除了典型的轴对称平衡响应对加热和动量的强制性。在SEF地区,分析显示两个不同的负责过程,用于以两种垂直间隔增加方位角切向风。在边界流入层内,由表面摩擦和底层扩散引起的绝对涡度和减速度的平均径向流入之间的竞争效果产生了积极倾向的二次最大值。分析进一步证明了平均径向涌入对SEF上的绝对涡流的主要影响。在边界流入层上方,垂直平流通过垂直于增强的切线势力垂直延伸切向风射流。本文讨论了非线性不平衡动力学在这篇论文中的作用。从拉格朗日的角度来看,持续增加的施力力量超过了摩擦损失,有效地减速了整个SEF区域的空气流入空气。这解释了边界层流入的径向梯度的锐化,其被示出负责具有集中边界层收敛的区域的积聚。先前提出的SEF的不平衡动态途径被阐述并由当前的结果和讨论支持。

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