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Peristaltic Motion of Johnson-Segalman Fluid in a Curved Channel with Slip Conditions

机译:具有滑移条件的弯曲通道中Johnson-Segalman流体的蠕变运动

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摘要

Slip effects on the peristaltic transport of Johnson-Segalman fluid through a curved channel have been addressed. The influence of wall properties is also analyzed. Long wavelength and low Reynolds number assumptions have been utilized in the mathematical formulation of the problem. The equations so formed have been solved numerically by shooting method through computational software Mathematica 8. In addition the analytic solution for small Weissenberg number (elastic parameter) is computed through a regular perturbation method. An excellent agreement is noticed between the two solutions. The results indicate an increase in the magnitude of velocity with an intensification in the slip effect. Moreover the size and circulation of the trapped boluses increase with an increase in the slip parameter. Unlike the planar channel, the profiles of axial velocity are not symmetric about the central line of the channel.
机译:已经解决了Johnson-Segalman流体通过弯曲通道蠕动传输的滑移效应。还分析了墙体性能的影响。长波长和低雷诺数假设已用于问题的数学表述中。通过计算软件Mathematica 8通过射击方法对这样形成的方程进行了数值求解。此外,还通过常规的摄动方法来计算小Weissenberg数(弹性参数)的解析解。两种解决方案之间都达成了极好的协议。结果表明,随着滑动效果的增强,速度的幅度增加。此外,被捕获的弹丸的尺寸和循环随着滑移参数的增加而增加。与平面通道不同,轴向速度的轮廓关于通道的中心线不对称。

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