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罗斯比孤立涡旋,存在于巨行星上以及实验室中。

Rossby solitary vortices, on giant planets and in the laboratory.

作者信息

Nezlin Mikhail V.

机构信息

Russian Research Center "Kurchatov Institute", Institute of Nuclear Fusion, Moscow 123182, Kurchatov Square, 1, Russia.

出版信息

Chaos. 1994 Jun;4(2):187-202. doi: 10.1063/1.166003.

Abstract

This is a review of laboratory experiments with a layer of shallow water having a free surface and rotating together with a vessel of parabolic form. Such a (rather original) setup has allowed one to create Rossby solitary vortex for the first time. The latter is an anticyclonic Rossby vortex not subjected to dispersive spread owing to its compensation by the nonlinearity of KdV type. By its structural, collisional, and other properties, including clear-cut cyclonic-anticyclonic asymmetry, it may be considered as a physical prototype of the large-scale long-lived anticyclonic Rossby vortices like the Great Red Spot of Jupiter or the Great Dark Spot of Neptune (this remarkable vortex was discovered by the spacecraft Voyager-2 during its farewell to the Solar System) and other vortices dominating in the atmospheres of giant planets and created by the unstable zonal flows. It has been shown that the vortex under study is a long-lived entity provided it satisfies "antitwisting condition," i.e., it has rather large amplitude (at which it rotates more quickly than it propagates and thereby carries the trapped fluid). In this case, it is not subjected to the "twisting" deformation and may be ascribed by the generalized Charney-Obukhov equation for Rossby vortices on shallow water with a free surface. The results of creating the vortex under consideration by the different methods have been compared with the results obtained by other authors in the experiments on shear-flow generation of Rossby vortices.

摘要

这是一篇关于实验室实验的综述,该实验涉及一层具有自由表面的浅水,并与抛物面形状的容器一起旋转。这样一种(相当新颖的)装置首次使得人们能够创造出罗斯比孤立涡旋。后者是一个反气旋罗斯比涡旋,由于其通过KdV型非线性得到补偿,因而不会遭受色散扩散。就其结构、碰撞及其他特性而言,包括明显的气旋 - 反气旋不对称性,它可被视为诸如木星大红斑或海王星大黑斑(这个显著的涡旋是由“旅行者2号”航天器在其告别太阳系期间发现的)等大规模长期存在的反气旋罗斯比涡旋以及在巨行星大气中占主导地位且由不稳定纬向流产生的其他涡旋的物理原型。研究表明,所研究的涡旋如果满足“抗扭转条件”,即具有相当大的振幅(此时它旋转得比传播得更快,从而携带被困流体),那么它就是一个长期存在的实体。在这种情况下,它不会遭受“扭转”变形,并且可以用具有自由表面的浅水上罗斯比涡旋的广义恰尼 - 奥布霍夫方程来描述。已将通过不同方法产生所考虑涡旋的结果与其他作者在罗斯比涡旋剪切流产生实验中获得的结果进行了比较。

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