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The Effect of Wall Properties on the Convective Peristaltic Transport of a Conducting Bingham Fluid through Porous Medium

机译:壁性能对宾厄姆流体通过多孔介质的对流蠕动传输的影响

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Objective: In the present paper the influence of heat transfer, wall slip conditions, and wall properties on the peristaltic transport of an incompressible conducting Bingham fluid in a non-uniform porous channel is studied. Methods/Statistical Analysis: Exact analytical solutions have been obtained for the axial velocity and the temperature by using the assumptions of long wavelength and low-Reynolds number. Findings: The effects of the essential parameters on the velocity and temperature distributions are demonstrated through graphs. It is noticed that the presence of porous medium reduces the velocity and temperature in the peristaltic channel. Further, the size of the trapped bolus gets reduced due to the presence of porous medium/magnetic field whereas opposite behaviour is noticed with the increasing slip at the walls. Application/Improvements: The results reveal that the presence of magnetic field/porous medium has remarkable effect on the peristaltic transport of yield stress fluids (such as blood) which may lead to possible technological applications in designing bio- medical instruments.
机译:目的:在本文中,研究了传热,壁滑条件和壁性能对不可压缩的导电宾厄姆流体在非均匀多孔通道中蠕动传输的影响。方法/统计分析:通过使用长波长和低雷诺数的假设,已经获得了有关轴向速度和温度的精确解析解。结果:基本参数对速度和温度分布的影响通过图形显示。注意到多孔介质的存在降低了蠕动通道中的速度和温度。此外,由于多孔介质/磁场的存在,捕获的团块的尺寸减小,而随着壁的滑动增加,注意到相反的行为。应用/改进:结果表明,磁场/多孔介质的存在对屈服应力流体(例如血液)的蠕动传输具有显着影响,这可能导致在设计生物医学仪器方面的可能技术应用。

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