Ali N, Hayat T, Sajid M
Department of Mathematics, Quaid-i-Azam University, Islamabad, Pakistan.
Biorheology. 2007;44(2):125-38.
This paper presents an analysis of the peristaltic flow of a couple stress fluid in an asymmetric channel. The asymmetric nature of the flow is introduced through the peristaltic waves of different amplitudes and phases on the channel walls. Mathematical modelling corresponding to a two-dimensional flow has been carried out. The flow analysis is presented under long wavelength and low Reynolds number approximations. Closed form solutions for the axial velocity, stream function and the axial pressure gradient are given. Numerical computations have been carried out for the pressure rise per wavelength, friction forces and trapping. It is noted that there is a decrease in the pressure when the couple stress fluid parameter increases. The variation of the couple stress fluid parameter with the size of the trapped bolus is also similar to that of pressure. Furthermore, the friction force on the lower channel wall is greater than that on the upper channel wall.
本文对非对称通道中偶应力流体的蠕动流进行了分析。通过通道壁上不同振幅和相位的蠕动波引入流动的非对称特性。进行了与二维流动相对应的数学建模。在长波长和低雷诺数近似下进行了流动分析。给出了轴向速度、流函数和轴向压力梯度的封闭形式解。对每波长的压力上升、摩擦力和俘获现象进行了数值计算。结果表明,当偶应力流体参数增加时,压力会降低。偶应力流体参数随俘获团块大小的变化也与压力变化相似。此外,下通道壁上的摩擦力大于上通道壁上的摩擦力。