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研究心脏泵中非牛顿血液模型的影响。

Investigating the impact of non-Newtonian blood models within a heart pump.

作者信息

Al-Azawy Mohammed G, Turan A, Revell A

机构信息

School of Mechanical, Aerospace and Civil Engineering, The University of Manchester.

Mechanical Engineering Department, College of Engineering, Wasit University, Wasit, Iraq.

出版信息

Int J Numer Method Biomed Eng. 2017 Jan;33(1). doi: 10.1002/cnm.2780. Epub 2016 Apr 13.

Abstract

A detailed computational fluid dynamics (CFD) study of transient, turbulent blood flow through a positive displacement left ventricular assist device is performed. Two common models for non-Newtonian blood flow are compared to the Newtonian model to investigate their impact on predicted levels of shear rate and wall shear stress. Given that both parameters are directly relevant to the evaluation of risk from thrombus and haemolysis, there is a need to assess the sensitivity to modelling non-Newtonian flow effects within a pulsatile turbulent flow, in order to identify levels of uncertainly in CFD. To capture the effects of turbulence, the elliptic blending Reynolds stress model is used in the present study, on account of superior performance of second moment closure schemes previously identified by the present authors. The CFD configuration includes two cyclically rotating valves and a moving pusher plate to periodically vary the chamber volume. An overset mesh algorithm is used for each instance of mesh motion, and a zero gap technique was employed to ensure full valve closure. The left ventricular assist device was operated at a pumping rate of 86 BPM (beats per minute) and a systolic duration of 40% of the pumping cycle, in line with existing experimental data to which comparisons are made. The sensitivity of the variable viscosity models is investigated in terms of mean flow field, levels of turbulence and global shear rate, and a non-dimensional index is used to directly evaluate the impact of non-Newtonian effects. The clinical relevance of the results is reported along with a discussion of modelling uncertainties, observing that the turbulent kinetic energy is generally predicted to be higher in non-Newtonian flow than that observed in Newtonian flow. Copyright © 2016 John Wiley & Sons, Ltd.

摘要

对通过容积式左心室辅助装置的瞬态、湍流血液流动进行了详细的计算流体动力学(CFD)研究。将两种常见的非牛顿血流模型与牛顿模型进行比较,以研究它们对预测的剪切速率和壁面剪切应力水平的影响。鉴于这两个参数都与血栓和溶血风险的评估直接相关,因此有必要评估在脉动湍流中对非牛顿流效应建模的敏感性,以便确定CFD中的不确定性水平。为了捕捉湍流的影响,本研究使用了椭圆混合雷诺应力模型,这是由于作者之前确定的二阶矩封闭方案具有优越的性能。CFD配置包括两个周期性旋转的瓣膜和一个移动的推板,以周期性地改变腔室容积。对于网格运动的每个实例都使用了重叠网格算法,并采用了零间隙技术来确保瓣膜完全关闭。左心室辅助装置以86次/分钟的泵送速率和占泵送周期40%的收缩期持续时间运行,这与现有的实验数据一致,并与之进行了比较。从平均流场、湍流水平和全局剪切速率方面研究了可变粘度模型的敏感性,并使用无量纲指数直接评估非牛顿效应的影响。报告了结果的临床相关性,并讨论了建模的不确定性,观察到在非牛顿流中预测的湍动能通常比在牛顿流中观察到的要高。版权所有© 2016约翰威立父子有限公司。

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