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Evolution of a stratified rotating shear layer with horizontal shear. Part 2. Nonlinear evolution

机译:具有水平剪切的分层旋转剪切层的演化。第2部分。非线性演化

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Direct numerical simulation is used to investigate the nonlinear evolution of a horizontally oriented mixing layer with uniform stable stratification and coordinate system rotation about the vertical axis. The important dimensional parameters governing inviscid dynamics are maximum shear S.t/, buoyancy frequency N, angular velocity of rotation Ω and characteristic shear thickness L.t/. The effect of rotation rate, Ω, on the development of fluctuations in the shear layer is systematically studied in a regime of strong stratification. An instability mechanism, qualitatively distinct from the inertial instability, is found to deform columnar vortex cores in vertical planes for a strongly stratified rotating mixing layer. This mechanism emerges when centreline absolute vertical vorticity, (Ω_3)(t)+2Ω, is nearly zero as predicted by the linear stability analysis in Part 1 (J. Fluid. Mech., vol. 703, 2012, pp. 29-48). When the initial rotation rate is moderately anticyclonic, strong destabilization and a cascade to small scales is observed, consistent with prior studies involving horizontally sheared flow in the presence of rotation. Examination of enstrophy budgets in cases which are initially inertially unstable reveal the importance of baroclinic torque in maintaining lateral enstrophy fluctuations substantially beyond the time when the flow becomes inertially stable. The cyclonic stratified cases show weak nonlinearity in vortex dynamics. At high Reynolds number, despite the strong stratification, the flow exhibits three-dimensional, nonlinear dynamics and significant vertical mixing except for cases where the rotation is stabilizing.
机译:直接数值模拟用于研究具有均匀稳定分层和坐标系统绕垂直轴旋转的水平取向混合层的非线性演化。控制无粘性动力学的重要尺寸参数是最大剪切力S.t /,浮力频率N,旋转角速度Ω和特征剪切厚度L.t /。在强分层的情况下,系统地研究了旋转速率Ω对剪切层波动发展的影响。在质量上与惯性不稳定性不同的不稳定性机制被发现,会使强分层旋转混合层的圆柱状涡流核在垂直平面内变形。当中心线绝对垂直涡度(Ω_3)(t)+2Ω几乎为零(如第1部分中的线性稳定性分析所预测的那样)时,就会出现这种机理(《流体力学》,第703卷,2012年,第29-48页) )。当初始旋转速度适度反气旋时,观察到强烈的失稳和小范围的级联反应,这与先前的研究在旋转存在的情况下涉及水平剪切流一致。在最初是惯性不稳定的情况下,对涡旋预算的检查表明,斜压扭矩在保持横向涡旋波动基本超出流动惯性稳定的时间之后,具有重要意义。气旋分层的情况表明涡旋动力学具有弱的非线性。在高雷诺数下,尽管有很强的分层性,但流动仍表现出三维非线性动力学和显着的垂直混合,除非旋转稳定。

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