首页> 外文期刊>The European physical journal: Special topics >Effect of heat and mass transfer on the peristaltic flow of a Jeffrey nanofluid in a tapered flexible channel in the presence of aligned magnetic field
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Effect of heat and mass transfer on the peristaltic flow of a Jeffrey nanofluid in a tapered flexible channel in the presence of aligned magnetic field

机译:对准磁场存在下锥形柔性通道中杰弗里纳米流体蠕动流动的影响

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摘要

In this paper, we have studied the influence of wall properties and aligned magnetic field on the peristaltic transport and heat and mass transfer of a Jeffrey/Newtonian nanofluid in a tapered channel. The analytical solutions are obtained for the stream function, the temperature and the concentration. Further, we obtained the Nusselt and Sherwood numbers at the wall. The effects of all important parameters on the physical quantities of the flow for both Jeffrey and Newtonian fluids are investigated through graphs and deliberated in detail. The velocity and temperatures are high for Newtonian fluid than Jeffrey fluid and the opposite situation is observed for concentration field. The large values of the magnetic parameter suppress the velocity and temperature fields but the reverse situation is seen in the case of concentration field. Also observed that the inclination angle of magnetic field and wall parameters have shown a significant effect on this investigation.
机译:在本文中,我们研究了墙壁性质的影响,并对准磁场对锥形通道中Jeffrey / Newtonian纳米流体的蠕动运输和热量和传质。 获得分析溶液,用于流函数,温度和浓度。 此外,我们在墙上获得了Nusselt和Sherwood数量。 通过图表和详细刻想,研究了所有重要参数对杰弗里和牛顿流体的流量的物理量的影响。 牛顿流体的速度和温度高于jeffrey液体,并且观察到浓度场的相反情况。 磁性参数的大值抑制了速度和温度场,但在浓度场的情况下看到了反向情况。 还观察到磁场和壁参数的倾斜角度对该研究显示了显着影响。

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