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Effects of three-dimensional surface corrugations on electromagnetohydrodynamic flow through microchannel

机译:三维表面波纹对微通道电磁流动流动的影响

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This article deals with the electromagnetohydrodynamic (EMHD) flow through a microchannel with three-dimensional corrugated walls where the fluid is driven by non-uniform electric field and uniform magnetic field. The three-dimensional corrugations are depicted by the product of two sinusoid functions with small amplitude epsilon and wave numbers alpha and beta in two horizontal directions. The analytic expressions of the electric potentials, velocities and volume flow rates are deduced by utilizing the perturbation method. The impacts of the corrugations on the electric potentials, the EMHD velocities and volume flow rates are discussed. Moreover, the influences of relevant parameters, including Hartmann number Ha, aspect ratio chi (chi= beta/alpha) of the corrugations and the parameter R (R = beta-alpha) on the flow are analyzed. Furthermore, the comparisons of the flow rates with experimental data are performed. The results show that the maximum flow rate can be obtained by increasing magnetic field strength parameter Ha or adjusting the phases of the wavy walls.
机译:本文涉及电磁流体动力学(EMHD)流过微通道的微通道,其具有三维波纹壁,其中流体由非均匀电场和均匀的磁场驱动。三维波纹由两个正弦曲线函数的乘积描绘,其中两个水平方向上具有小幅度ε和波数α和β。通过利用扰动方法推导出电势,速度和体积流速的分析表达。讨论了波纹对电位,EMHD速度和体积流速的影响。此外,分析了在流动上的相关参数,包括Hartmann Number Ha,纵横比Chi(Chi =β/ alpha)的相关参数的影响。此外,执行利用实验数据的流速的比较。结果表明,通过增加磁场强度参数HA或调节波浪壁的相位,可以获得最大流速。

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