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首页> 外文期刊>Zeitschrift fur Angewandte Mathematik und Mechanik >Instability mechanism for miscible two-fluid channel flow with wall slip
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Instability mechanism for miscible two-fluid channel flow with wall slip

机译:壁板可混溶双流体通道流动的不稳定机制

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Modal analysis of the Reynolds-Orr energy equation for a miscible viscosity stratified slippery channel flow is deliberated. The main aim is to extend the earlier work of Ghosh et al. (Phys. Fluid, Vol. 26, 014107 (2014)) to discusses the instability mechanism, which has not been investigated so far. The generalized equation governing the average rate of change of disturbance kinetic energy is evaluated after solving the Orr-Sommerfeld boundary value problem. The analysis includes viscosity perturbation and slip boundary condition. Maximum growth rate curves for two-dimensional disturbances reconfirm the existence of new unstable modes at low Reynolds numbers. Stabilizing and destabilizing effects of wall velocity slip are found depending on parameter regime. The physical mechanism responsible for the dual role of the wall slip is brought to light by estimating the alteration of kinetic energy due to the production and dissipation of energy originating fromvarious factors inside the perturbed flow. Slip boundary condition at the wall affects the base flow as well as perturbations. Our numerical calculations here show how the wall velocity slip gives impact on each energy terms. The results ensure that, the new unstable mode is occurred due to the overlap of velocity and viscosity disturbance vortices. Stability characteristics of this overlap instability are ruled by the energy sourcing from the Reynolds stress and the viscosity perturbation gradient effect.
机译:对混溶性粘度分层滑通通道流动的雷诺-ORR能量方程的模态分析是刻探的。主要目的是扩展Ghosh等人的早期工作。 (物理。Fluid,Vol.26,014107(2014))讨论到目前为止未调查的不稳定机制。在解决ORR-SOMMERFELD边值问题后,评估了治疗扰动动能平均变化率的广义方程。该分析包括粘度扰动和滑动边界条件。二维干扰的最大增长速率曲线重新确认在低雷诺数的新不稳定模式的存在。根据参数制度发现壁速滑移的稳定和稳定化效果。由于在扰动流程中源于扰动流程中的能量的生产和耗散而估计动能的改变,负责墙壁滑动的双重作用的物理机制。墙壁上的滑动边界条件会影响基流以及扰动。我们的数值计算展示了墙速滑移如何对每个能量术语产生影响。结果确保了,由于速度和粘度干扰涡流的重叠,发生了新的不稳定模式。通过从雷诺应力和粘度扰动梯度效应的能量采集统治该重叠不稳定性的稳定性特性。

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