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Influences of Shear Stress on Peristaltic Transport of a Non-Newtonian Fluid in a Micro Asymmetric Channel

机译:剪切应力对微自不对称通道非牛顿液体蠕动输送的影响

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The movement of a Williamson fluid is studied in a micro asymmetric walls and it is initiated by the movement of peristalsis waves with the constant speed, however with distinct amplitudes and phase on the stretchy walls under LWL wavelength and LRN assumption. The perturbation method in the power of We is constructed to get explicit forms for velocity, pressure rise, frictional forces and shear stress. The properties of several developing parameters on the fluid motion are presented graphically. In addition, the streamlines prototype is designed and it is examined that trapping happens near the walls and the magnitude of the trapped bolus varies with changing inserted flow parameters.
机译:在微观不对称壁中研究了威廉森流体的运动,并且通过垂直速度的垂直波的运动引发,然而,在LWL波长和LRN假设下的拉伸壁上具有不同的幅度和相位。我们的力量中的扰动方法被构造为获得速度,压力升高,摩擦力和剪切应力的明确形式。在图形上呈现了流体运动上的几个显影参数的性质。此外,设计了精简原型,并检查了墙壁附近发生的捕获,并且被困推注的大小随着插入的流量参数而变化。

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