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The Effect of Topography on Storm-Track Intensity in a Relatively Simple General Circulation Model

机译:相对简单的一般环流模型中地形对风暴路径强度的影响

摘要

The effect of topography on storm-track intensity is examined with a set of primitive equation model integrations. This effect is found to be crucially dependent on the latitudinal structure of the background flow impinging on the topography. If the background flow consists of a weak double jet, higher topography leads to an intensification of the storm track downstream of the topography, consistent with enhanced baroclinicity in that region. However, if the background flow consists of a strong single jet, topography weakens the storm track, despite the fact that the baroclinicity downstream of the topography is again enhanced. The different topographic impact results from the different wave packets in the two background flows. For a weak double-jet state, wave packets tend to radiate equatorward and storm-track eddies grow primarily at the expense of local baroclinicity. In contrast, for a strong single-jet state, wave packets persistently propagate in the zonal direction and storm tracks are affected not only by local baroclinicity but also by far-upstream disturbances via downstream development. It is the reduction of the latter by the topography that leads to weaker storm tracks in a strong single-jet state. The implications of these findings for Northern Hemisphere storm tracks are also discussed.
机译:使用一组原始方程模型集成来检查地形对风暴路径强度的影响。发现该效应主要取决于撞击在地形上的背景流的纬度结构。如果本底流由弱双射流组成,则较高的地形会导致地形下游的风暴路径加剧,这与该地区的斜压增强有关。但是,如果背景气流由强单喷组成,尽管地形下游的斜压度再次得到增强,但地形会减弱风暴路径。不同的地形影响来自两个背景流中不同的波包。对于弱双喷射状态,波包倾向于向赤道辐射,风暴轨迹涡流的增长主要是牺牲了局部斜压。相反,对于强的单喷状态,波包在地带方向上持续传播,风暴轨迹不仅受到局部斜压的影响,而且还受到下游发育的上游干扰的影响。地形的减少是后者的结果,导致在强单喷状态下较弱的风暴轨迹。还讨论了这些发现对北半球风暴径的影响。

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