论文标题

并行couette流的接口处的剪切层动力学

Shear-layer dynamics at the interface of parallel Couette flows

论文作者

Kalluri, Manohar Teja, Narasimhamurthy, Vagesh D.

论文摘要

本文旨在详细分析共同流动的平面库特流。特别是研究了从湍流到非扰动区域的流量变化。虽然腹部表现出急剧的跳跃,但其他数量(例如,平均速度,雷诺正常应力和动能)在整个界面上显示出连续的变化。雷诺的预算分析正常应力表明,术语在湍流运输中起关键作用的术语因雷诺的正常压力而异。术语的产生,扩散和再分配在流雷诺应力ðU0U0中起重要作用。在Spanwise Reynolds应力ðv0v0Þ中,扩散术语起着重要作用。在壁正常的雷诺应力ðw0w0Þ中,仅重新分布项很重要。与标准的平面couette流(PCF)相比,通过额外的平均速度和雷诺的正常应力观察到了一个流向另一个流动状态的影响。将共流系统与常规PCF系统进行比较,前者表现出更大的涡度,涡流拉伸和动能。使用流量不变性研究了有关流量结构的几何形状和拓扑结构的详细分析。

This article aims to make a detailed analysis of co-flowing plane Couette flows. Particularly, the variation of flow quantities from the turbulent to non-turbulent region is studied. While the enstrophy exhibits a sharp jump, the other quantities (e.g., mean velocity, Reynolds normal stress, and kinetic energy) show a continuous variation across the interface. The budget analysis of Reynolds normal stresses reveals that the terms playing a key role in turbulence transportation vary depending on the Reynolds normal stress under study. The terms production, diffusion, and redistribution play an important role in streamwise Reynolds stress ðu0u0 Þ. In the spanwise Reynolds stress ðv0v0 Þ, the diffusion terms play a significant role. In the wall-normal Reynolds stress ðw0w0 Þ, only the redistribution term is significant. The influence of one flow over another in the co-flow state was observed through the additional mean velocity and Reynolds normal stress found in the system compared to a standard plane Couette flow (pCf). Comparing the co-flow system with a conventional pCf system, the former exhibits greater vorticity, vortex stretching, and kinetic energy. A detailed analysis on the geometry and topology of flow structures was studied using flow invariants.

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