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首页> 外文期刊>Transport in Porous Media >Peristaltic Hemodynamic Flow of Couple-Stress Fluids Through a Porous Medium with Slip Effect
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Peristaltic Hemodynamic Flow of Couple-Stress Fluids Through a Porous Medium with Slip Effect

机译:耦合应力流体通过多孔介质的蠕变血流动力学特性

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摘要

The present investigation deals with a theoretical study of the peristaltic hemodynamic flow of couple-stress fluids through a porous medium under the influence of wall slip condition. This study is motivated towards the physiological flow of blood in the micro-circulatory system, by taking account of the particle size effect. Reynolds number is small enough and the wavelength to diameter ratio is large enough to negate inertial effects. Analytical solutions for axial velocity, pressure gradient, frictional force, stream function and mechanical efficiency are obtained. Effects of different physical parameters reflecting couple-stress parameter, permeability parameter, slip parameter, as well as amplitude ratio on pumping characteristics and frictional force, streamlines pattern and trapping of peristaltic flow pattern are studied with particular emphasis. The computational results are presented in graphical form. This study puts forward an important observation that pressure reduces by increasing the magnitude of couple-stress parameter, permeability parameter, slip parameter, whereas it enhances by increasing the amplitude ratio.
机译:本研究涉及在壁滑条件影响下,应力耦合流体通过多孔介质的蠕动血流动力学的理论研究。通过考虑颗粒大小的影响,本研究的动机是血液在微循环系统中的生理流动。雷诺数足够小,并且波长与直径之比足够大,可以抵消惯性效应。获得了轴向速度,压力梯度,摩擦力,流函数和机械效率的解析解。重点研究了反映耦合应力参数,渗透率参数,滑移参数以及振幅比的不同物理参数对泵送特性和摩擦力,流线型态和蠕动流型截留的影响。计算结果以图形形式显示。这项研究提出了一个重要的观察结果,即通过增加耦合应力参数,渗透率参数,滑移参数的大小来降低压力,而通过增加振幅比来提高压力。

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