Mekheimer Kh S
Department of Mathematics, Faculty of Science, Al-Azhar University, Nasr City, Cairo, Egypt.
Biorheology. 2002;39(6):755-65.
The problem of peristaltic transport of a couple stress fluid in uniform and non-uniform two-dimensional channels has been investigated under zero Reynolds number with long wavelength approximation. Blood is represented by a couple stress fluid (a fluid which its particles size are taken into account, a special case of a non-Newtonian fluid). It is found that the pressure rise decreases as the couple stress fluid parameter gamma increases (i.e., small size fluid particle). So the pressure rise for a couple stress fluid (as a blood model) is greater than that for a Newtonian fluid. Also the pressure rise increases as the amplitude ratio phi increases for different values of gamma. Further, the pressure rise in the case of non-uniform geometry is found to be much smaller than the corresponding value in the case of uniform geometry. Finally, the maximum pressure rise when the mean flow rate over one period of the wave, Q = 0, increases as phi increases and gamma decreases.
在零雷诺数和长波长近似条件下,研究了均匀和非均匀二维通道中偶应力流体的蠕动传输问题。血液由偶应力流体表示(一种考虑了颗粒大小的流体,是非牛顿流体的一种特殊情况)。研究发现,随着偶应力流体参数γ增大(即流体颗粒尺寸减小),压力升高值减小。因此,作为血液模型的偶应力流体的压力升高值大于牛顿流体的压力升高值。此外,对于不同的γ值,压力升高值随着振幅比φ增大而增大。进一步研究发现,非均匀几何形状情况下的压力升高值远小于均匀几何形状情况下的相应值。最后,当一个波周期内的平均流速Q = 0时,最大压力升高值随着φ增大和γ减小而增大。