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首页> 外文期刊>Journal of Fluid Mechanics >Direct numerical simulations of transitional pulsatile flow through a constriction
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Direct numerical simulations of transitional pulsatile flow through a constriction

机译:通过缩颈的过渡脉动流的直接数值模拟

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摘要

A combined experimental and numerical study of transitional pulsatile flow through a planar constriction is presented. The parametric space that we adopt is similar to the one reported in a variety of past experiments relevant to the flow through stenosed arteries. In general, the flow just downstream of the constriction is dominated by the dynamics of the accelerating/decelerating jet that forms during each pulsatile cycle. We found a switch in the shedding frequency and roll-up dynamics, just after the flow rate approaches its maximum value in the cycle. The flow in the reattached area further downstream is also affected by the jet dynamics. A 'synthetic' turbulent-like wall-layer develops, and is constantly supported by streamwise vortices that originate from the spanwise instabilities of the large coherent structures generated by the jet. The relation of these structures to the phase-averaged turbulent statistics and the turbulent kinetic energy budgets is discussed.
机译:结合实验和数值研究提出了通过平面收缩的过渡脉动流。我们采用的参数空间类似于过去有关狭窄动脉流动的各种实验中报道的空间。通常,紧缩部下游的流动主要由每个脉动周期中形成的加速/减速射流的动力学决定。在流量接近周期中的最大值之后,我们发现脱落频率和上滚动态发生了变化。在更下游的重新连接区域中的流动也受到射流动力学的影响。形成“合成”的湍流状壁层,并不断受到由射流产生的大型相干结构的翼展方向不稳定性引起的流向涡流的支持。讨论了这些结构与相平均湍流统计量和湍动能预算之间的关系。

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