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Frictional effect on stability of discontinuity interface in tangential velocity of a shallow-water flow

机译:对浅水流向切向速度中不连续界面稳定性的摩擦影响

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摘要

We examine a frictional effect on the linear stability of an interface of discontinuity in tangential velocity. The fluid is moving with uniform velocity U in a region but is at rest in the other, and the bottom surface is assumed to exert drag force, quadratic in velocity, on the thin fluid layer. In the absence of the drag, the instability of the Kelvin-Helmholtz type is suppressed for U > root 8c, with c being the propagating speed of the gravity wave. We find by asymptotic analyses for both small and large values of the drag strength that the drag, regardless of its strength, makes the flow unstable for the whole range of the Froude number U/c. (C) 2019 Elsevier B.V. All rights reserved.
机译:我们研究了切向速度中不连续界面的线性稳定性的摩擦效应。 流体在区域中具有均匀的速度u,但在另一个区域中静止,并且假设底表面施加拖曳力,在薄流体层上施加速度。 在没有阻力的情况下,对于U>根8c抑制了Kelvin-Helmholtz类型的不稳定性,C是传播重力波的传播速度。 我们发现渐近分析对拖曳力量的小而大值,无论其强度如何,都会使流量不稳定,对于FRoude号U / C的整个范围。 (c)2019 Elsevier B.v.保留所有权利。

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