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Interaction of nanoparticles for the peristaltic flow in an asymmetric channel with the induced magnetic field

机译:纳米粒子在非对称通道中蠕动流与感应磁场的相互作用

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摘要

In the present investigation, we examined the interaction of nanoparticle copper with the base fluid water in an asymmetric channel in the presence of an induced magnetic field. The complexity of equations describing the flow of the nanofluid is reduced by applying the low-Reynolds number and long-wavelength approximations. The resulting equations are solved exactly. The obtained expressions for the velocity and temperature phenomenon are sketched in graphs. The resulting relations for pressure gradient and pressure rise are plotted for various pertinent parameters. The streamlines are drawn for some physical quantities to discuss the trapping phenomenon.
机译:在本研究中,我们在存在感应磁场的情况下,研究了非对称通道中纳米粒子铜与基础流体水之间的相互作用。通过应用低雷诺数和长波近似,降低了描述纳米流体流动的方程式的复杂性。所得方程精确求解。所获得的速度和温度现象的表达式绘制在图中。针对各种相关参数绘制了压力梯度和压力上升的最终关系。绘制了一些物理量的流线以讨论捕获现象。

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