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首页> 外文期刊>Journal of Fluid Mechanics >Pulsatile flow in a constricted channel: flow behaviour and equilibrium states
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Pulsatile flow in a constricted channel: flow behaviour and equilibrium states

机译:收缩通道中的脉动流量:流动行为和均衡状态

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摘要

Results are reported from linear and nonlinear stability analyses of pulsatile flow in a straight channel with a smooth constriction with 50?% occlusion. Physical mechanisms based on the energy variation of the two-dimensional modes are proposed to elucidate the equilibrium states and changes in the flow-field behaviour. When investigating how the energy of the two-dimensional modes varied with Reynolds number, an energy minimum was observed before the primary instability, so that it marked the Reynolds number value at which the flow field started to exhibit one pulse front per cycle downstream of the constriction. In addition, this flow is characterized by a bistable system in two dimensions, whose equilibrium states are related to the energy level of the two-dimensional mode. The energy difference between the equilibrium states surprisingly decreases from the lower to the higher Reynolds number, which indicates that the system should converge to a unique solution at high Reynolds number. Regarding the flow’s nature, the equilibrium state with higher energy presented a vortex pair soon after the constriction, with vorticity opposite to that of the base flow separating shear layers.
机译:报道了直线脉动流动的线性和非线性稳定性分析,其具有平滑收缩的脉动和非线性稳定性分析,具有50μm闭塞的平滑收缩。提出了基于二维模式的能量变化的物理机制来阐明平衡状态和流场行为的变化。在研究如何用雷诺数变化的二维模式的能量如何,在初级不稳定性之前观察到能量最小值,使得它标记了流场开始在下游下游脉冲前部的雷诺数值。收缩。另外,该流量的特征在于两个维度的双稳态系统,其平衡状态与二维模式的能级有关。均衡状态之间的能量差异令人惊讶地从较低的雷诺数减少,这表明系统应在高雷诺数的唯一解决方案中收敛到唯一的解决方案。关于流动性质,在收缩之后,具有较高能量的平衡状态呈现涡流对,涡流与基流分离剪切层的涡流相反。

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