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On the Northward Motion of Midlatitude Cyclones in a Barotropic Meandering Jet

机译:正压弯流中纬度旋风的北移

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The combined effects of the deformation (horizontal stretching and shearing)and nonlinearities on the beta drift of midlatitude cyclones are studied using a barotropic quasigeostrophic model on the beta plane. It is found that, without any background flow, a cyclonic vortex moves more rapidly northward when it is initially strongly stretched along a mostly north–south direction. This meridional stretching is more efficient at forming an anticyclone to the east of the cyclone through Rossby wave radiation. The cyclone–anticyclone couple then forms a nonlinear vortex dipole that propagates mostly northward. The case of a cyclone em-bedded in uniformly sheared zonal flows is then studied. A cyclone evolving in an anticyclonic shear is stretched more strongly, develops a stronger anticyclone, and moves faster northward than a cyclone em-bedded in a cyclonic shear, which remains almost isotropic. Similar results are found in the general case of uniformly sheared nonzonal flows. The evolution of cyclones is also investigated in the case of a more realistic meandering jet whose relative vorticity gradient creates an effective beta and whose deformation field is spatially varying. A statistical study reveals a strong correlation among the cyclone's stretching, the anticyclone strength, and the velocity toward the jet center. These different observations agree with the more idealized cases. Finally, these results provide a rationale for the existence of preferential zones for the jet-crossing phase: that is, the phase when a cyclone crosses a jet from its anticyclonic to its cyclonic side.
机译:利用正平面准地转模型在β平面上研究了变形(水平拉伸和剪切)和非线性对中纬旋风分离器β漂移的综合影响。结果发现,在没有任何背景流动的情况下,气旋涡旋最初沿主要是南北方向强烈伸展时,向北移动的速度更快。这种经向拉伸在通过罗斯比波辐射形成旋风以东的反旋风时更为有效。然后,气旋-反气旋夫妇形成一个非线性涡旋偶极子,该偶极子大部分向北传播。然后研究了旋风分离器埋在均匀剪切的纬向流中的情况。与埋在旋风剪中的旋风分离器(几乎保持各向同性)相比,旋流式旋风切变器中旋转的旋风被更强地拉伸,形成更强的旋风分离器,并向北移动得更快。在均匀剪切的非区域流的一般情况下,发现类似的结果。在更真实的曲折射流的情况下,还研究了旋风分离器的演变,该射流的相对涡度梯度产生有效的β且其变形场在空间上变化。一项统计研究表明,旋风分离器的拉伸,反气旋强度和射流中心速度之间有很强的相关性。这些不同的观察结果与更理想的情况相吻合。最后,这些结果为存在射流穿越阶段(即,旋风分离器从其反气旋侧越过其旋流侧越过射流的阶段)的优先区域的存在提供了理论依据。

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