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首页> 外文期刊>Journal of Fluid Mechanics >Dynamics of a stratified shear layer with horizontal shear
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Dynamics of a stratified shear layer with horizontal shear

机译:水平剪切的分层剪切层的动力学

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The evolution of a stratified shear layer with mean shear in the horizontal direction, orthogonal to gravity, is numerically investigated with focus on the structural organization of the vorticity and density fields. Although the Reynolds number of the flow increases with time, facilitating instabilities and turbulence, the bulk Richardson number signifying the level of stratification also increases. Remarkably rich dynamics is found: turbulence; the emergence of coherent core/braid regions from turbulence; formation of a lattice of dislocated vortex cores connected by thin horizontal sheets of collapsed density and vorticity; density-driven intrusions at the edges of the shear layer; and internal wave generation and propagation. Stratification introduces significant vertical variability although it inhibits the vertical velocity. The molecular dissipation of turbulent kinetic energy and of turbulent potential energy are both found to be substantial even in the case with highest stratification, and primarily concentrated in thin horizontal sheets. The simulation data are used to help explain how buoyancy induces the emergence of columnar vortex cores from turbulence and then dislocates these cores to eventually form a lattice of 'pancake' eddies connected by thin sheets with large vertical shear (horizontal vorticity) and density gradient.
机译:数值研究了在垂直于重力的水平方向上平均剪切的分层剪切层的演化,重点是涡度场和密度场的结构组织。尽管流动的雷诺数随时间增加,从而促进了不稳定性和湍流,但表示分层程度的大量理查森数也增加了。发现了非常丰富的动力学:湍流;湍流出现了相干的核心/编织区域;形成错位的涡流核的晶格,其由折叠的密度和涡度的薄水平片连接;剪切层边缘的密度驱动侵入;以及内部波的产生和传播。尽管分层会抑制垂直速度,但会引入显着的垂直变化。即使在最高分层的情况下,也发现湍动能和湍动势能的分子耗散都很大,并且主要集中在薄的水平薄片中。仿真数据用于帮助解释浮力如何从湍流中诱发圆柱状涡流核的出现,然后使这些核移位,最终形成由薄板连接的``薄煎饼''涡流的晶格,该薄板具有大的垂直剪切力(水平涡度)和密度梯度。

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