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Barotropic instability of coastal flows as a boundary-value problem: linear and non-linear theory

机译:海岸流动的正压不稳定性是一个边值问题:线性和非线性理论

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摘要

The barotropic instability is traditionally viewed as an initial-value problem wherein wave perturbations of a laterally sheared flow in a homogeneous uniformly rotating fluid that temporally grows into vortices. The vortices are capable of mixing fluid on the continental shelf with fluid above the continental slope and adjacent deep-sea region. However, the instability can also be viewed as a boundary-value problem. For example, a laterally sheared coastal flow is perturbed at some location, creating perturbations that grow spatially downstream. This process leads to a time periodic flow that exhibits instability in space. This article first examines the linear barotropic instability problem with real frequency and complex wavenumber. It is shown that there exists a frequency band within which a spatially growing wave is present. It is then postulated that far downstream the spatially unstable flow emerges into a chain of identically axisymmetric vortices. Conservation of mass, momentum and energy fluxes are applied to determine the diameter, spacing and the speed of translation of the vortices.
机译:传统上,正压不稳定性被视为一个初值问题,其中横向剪切流在时间上逐渐增长成涡旋的均匀均匀旋转的流体中受到波的扰动。涡流能够将大陆架上的流体与大陆斜坡和相邻深海区域以上的流体混合。但是,不稳定性也可以看作是边值问题。例如,横向剪切的沿海水流在某些位置受到扰动,从而在空间下游产生扰动。该过程导致在空间中表现出不稳定的时间周期性流动。本文首先研究具有实际频率和复波数的线性正压失稳问题。结果表明,存在一个频带,在该频带中存在空间增长的波。然后假定,在很远的下游,空间不稳定的流动会形成一系列相同的轴对称涡旋。守恒质量,动量和能量通量,以确定旋涡的直径,间距和平移速度。

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