首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Design and Numerical Simulation of Complex Flow Generation in a Microchannel by Magnetohydrodynamic (MHD) Actuation
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Design and Numerical Simulation of Complex Flow Generation in a Microchannel by Magnetohydrodynamic (MHD) Actuation

机译:磁流体动力学(MHD)驱动微通道内复杂流产生的设计和数值模拟

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摘要

In this paper, we present a design methodology for the generation of magnetohydrodynamic (MHD) complex flows in a simple straight microchannel inside which electrodes are patterned on the two side walls and the bottom wall. The Lorentz force, a driving force for the MHD flow, can be variously induced in the microchannel by changing the applied voltages at the patterned electrodes and the magnetic field. The design methodology for determining the required condition for the applied voltage at each electrode is discussed for generating axial, transverse, sinusoidal, and multi-vortical flows under a given magnetic field. Three-dimensional CFD (computational fluid dynamics) simulations demonstrate the successful generation of the designed complex flows in a microchannel. The mixing performances of axial, sinusoidal, and multi-vorticalflows were evaluated as an application example of the present MHD complex flows. The present design methodology may be also applied for the precise control of the fluid flow inside a microchannel, not to mention the micromixing.
机译:在本文中,我们提出了一种在简单的直线微通道中生成磁流体动力学(MHD)复杂流的设计方法,该通道内部在两个侧壁和底壁上都形成了电极图案。通过改变图案化电极上的施加电压和磁场,可以在微通道中以多种方式感应洛伦兹力(MHD流动的驱动力)。讨论了用于确定在每个电极上施加电压的所需条件的设计方法,以在给定磁场下产生轴向,横向,正弦和多重涡流。三维CFD(计算流体动力学)仿真演示了在微通道中成功生成设计复杂流的过程。评价了轴向,正弦和多涡流的混合性能,作为本MHD复杂流的一个应用实例。本设计方法还可以用于精确控制微通道内的流体流动,更不用说微混合了。

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