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直弹性管中正弦流的数值模拟:相位角的影响。

Numerical simulation of sinusoidal flow in a straight elastic tube: effects of phase angles.

作者信息

Dutta A, Tarbell J M

机构信息

Department of Chemical Engineering Pennsylvania State University, University Park 16802.

出版信息

Biorheology. 1989;26(1):1-22. doi: 10.3233/bir-1989-26101.

Abstract

Numerical simulations of flow in straight elastic (moving wall) tubes subjected to a sinusoidal pressure gradient were performed for conditions prevailing in large and medium sized arteries. The effects of varying the phase angle between the pressure gradient and the tube radius, the amplitude of wall motion, and the unsteadiness parameter (alpha) on flow rate and wall shear stress were investigated. Mean and peak flow rates and shear stresses were found to be strongly affected by the phase angle between the pressure gradient and the tube radius with greater sensitivity at higher diameter variation and higher alpha. In large artery simulations (alpha = 12), means flow rate was found to be 60% higher and peak flow rate to be 73% higher than corresponding rigid tube values for certain phase angles, while a threefold increase in mean wall shear stress and sevenfold increase in peak wall shear stress were observed in a sensitive phase angle range. Significant reversal in the wall shear stress direction occurred in the sensitive phase angle range even when there was negligible flow rate reversal. All effects were greatly diminished in simulations of medium sized vessels (alpha = 4). Some experimental evidence to support the predictions of a strong effect of phase angle on wall shear stress in large vessels is presented. Finally, physiological implications of the present work are discussed from a basis of aortic input impedance data, and a physical explanation for the extreme sensitivity of the flow field to small amplitude wall motion at high alpha is given.

摘要

针对大中型动脉中的实际情况,对承受正弦压力梯度的直管弹性(移动壁面)管内流动进行了数值模拟。研究了压力梯度与管半径之间的相位角、壁面运动幅度以及非定常参数(α)对流量和壁面剪应力的影响。发现平均流量和峰值流量以及剪应力受压力梯度与管半径之间的相位角影响很大,在直径变化较大和α较高时敏感度更高。在大动脉模拟中(α = 12),对于某些相位角,发现平均流量比相应的刚性管值高60%,峰值流量高73%,而在敏感相位角范围内,平均壁面剪应力增加了两倍,峰值壁面剪应力增加了七倍。即使流量反向可忽略不计,在敏感相位角范围内壁面剪应力方向也会发生显著反向。在中型血管模拟(α = 4)中,所有这些影响都大大减弱。给出了一些实验证据来支持关于相位角对大血管壁面剪应力有强烈影响的预测。最后,从主动脉输入阻抗数据的角度讨论了本研究工作的生理意义,并对在高α时流场对小幅度壁面运动的极端敏感性给出了物理解释。

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