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Transition to turbulence in an oscillatory flow through stenosis

机译:通过狭窄的振荡流动过渡到振荡流动

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Onset of flow transition in a sinusoidally oscillating flow through a rigid, constant area circular pipe with a smooth sinusoidal obstruction in the center of the pipe is studied by performing direct numerical simulations, with resolutions close to the Kolmogorov microscales. The studied pipe is stenosed in the center with a 75% reduction in area in two distinct configurations-one that is symmetric to the axis of the parent pipe and the other that is offset by 0.05 diameters to introduce an eccentricity, which disturbs the flow thereby triggering the onset of flow transition. The critical Reynolds number at which the flow transitions to turbulence for a zero-mean oscillatory flow through a stenosis is shown to be nearly tripled in comparison with studies of pulsating unidirectional flow through the same stenosis. The onset of transition is further explored with three different flow pulsation frequencies resulting in a total of 90 simulations conducted on a supercomputer. It is found that the critical Reynolds number at which the oscillatory flow transitions is not affected by the pulsation frequencies. The locations of flow breakdown and re-stabilization post-stenosis are, however, respectively shifted closer to the stenosis throat with increasing pulsation frequencies. The results show that oscillatory physiological flows, while more stable, exhibit fluctuations due to geometric complexity and have implications in studies of dispersion and solute transport in the cerebrospinal fluid flow and understanding of pathological conditions.
机译:通过执行直接数值模拟,研究了通过刚性,恒定区域圆形管通过刚性,恒定区域圆管,通过执行直接数值模拟,研究了管道中心的平滑正弦梗阻的流动过渡。所研究的管道在中心的中心中缩放,在两个不同的配置中,两个不同的配置中的区域 - 一个是对称的,它对父管的轴线对称,另一个偏离0.05直径以引入偏心率,这使得流动不介等触发流动转换的开始。与通过相同狭窄的脉动单向流动的研究相比,流动过渡到零平均振荡流动的流动转变为零平均振荡流动的湍流转变几乎增加了两倍。通过三种不同的流量脉动频率进一步探索过渡开始,从而在超级计算机上进行了总共90种模拟。发现振荡流动转变的关键雷诺数不受脉动频率影响的关键雷诺数。然而,流量衰弱和重新稳定后狭窄的位置分别与增加的脉动频率相比,分别越接近狭窄喉部。结果表明,由于几何复杂性,振荡生理流量虽然更稳定,但在脑脊髓流体流动中的分散和溶质转运和对病理条件的理解中具有影响,但具有对分散和溶质转运的影响。

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