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Peristaltic Creeping Flow of Power Law Physiological Fluids through a Nonuniform Channel with Slip Effect

机译:幂律生理流体通过具有滑移效应的非均匀通道的蠕变蠕变流

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摘要

A mathematical study on creeping flow of non-Newtonian fluids (power law model) through a nonuniform peristaltic channel, in which amplitude is varying across axial displacement, is presented, with slip effects included. The governing equations are simplified by employing the long wavelength and low Reynolds number approximations. The expressions for axial velocity, stream function, pressure gradient, and pressure difference are obtained. Computational and numerical results for velocity profile, pressure gradient, and trapping under the effects of slip parameter, fluid behavior index, angle between the walls, and wave number are discussed with the help of Mathematica graphs. The present model is applicable to study the behavior of intestinal flow (chyme movement from small intestine to large intestine). It is also relevant to simulations of biomimetic pumps conveying hazardous materials, polymers, and so forth.
机译:提出了非牛顿流体通过不均匀蠕动通道的蠕变流动的数学研究(幂律模型),该蠕动通道的振幅随轴向位移而变化,其中包括滑移效应。通过采用长波长和低雷诺数近似,简化了控制方程。获得了轴向速度,流函数,压力梯度和压力差的表达式。借助Mathematica图形讨论了滑移参数,流体行为指数,壁之间的角度和波数在速度分布,压力梯度和陷井的计算和数值结果。本模型适用于研究肠流的行为(食糜从小肠到大肠的运动)。它也与模拟传输危险材料,聚合物等的仿生泵有关。

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