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Effects of hall and ion slip on MHD peristaltic flow of Jeffrey fluid in a non-uniform rectangular duct

机译:霍尔和离子滑移对非均匀矩形管道中杰弗里流体MHD蠕动的影响

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Purpose - The purpose of this paper is to theoretically study the problem of the peristaltic flow of Jeffrey fluid in a non-uniform rectangular duct under the effects of Hall and ion slip. An incompressible and magnetohydrodynamics fluid is also taken into account. The governing equations are modelled under the constraints of low Reynolds number and long wave length. Recent development in biomedical engineering has enabled the use of the periastic flow in modem drug delivery systems with great utility. Design/methodology/approach - Numerical integration is used to analyse the novel features of volumetric flow rate, average volume flow rate, instantaneous flux and the pressure gradient. The impact of physical parameters is depicted with the help of graphs. The trapping phenomenon is presented through stream lines. Findings - The results of Newtonian fluid model can be obtained by taking out the effects of Jeffrey parameter from this model. No-slip case is a special case of the present work. The results obtained for the flow of Jeffrey fluid reveal many interesting behaviours that warrant further study on the non-Newtonian fluid phenomena, especially the shear-thinning phenomena. Shear-thinning reduces the wall shear stress. Originality/value - The results of this paper are new and original.
机译:目的-本文的目的是从理论上研究在霍尔和离子滑移的影响下,非均匀矩形管道中杰弗里流体的蠕动问题。还考虑了不可压缩的磁流体动力学流体。在低雷诺数和长波长的约束下对控制方程建模。生物医学工程学的最新发展已使蠕动血流在现代药物输送系统中得到了广泛的应用。设计/方法/方法-数值积分用于分析体积流量,平均体积流量,瞬时通量和压力梯度的新颖特征。借助图表描述了物理参数的影响。捕集现象通过流线呈现。结果-牛顿流体模型的结果可以通过从该模型中除去Jeffrey参数的影响而获得。防滑箱是本作品的特例。杰弗里流体流动所获得的结果揭示了许多有趣的行为,这些行为值得进一步研究非牛顿流体现象,尤其是剪切稀化现象。剪切稀化可减少壁面剪应力。原创性/价值-本文的结果是新的和原始的。

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