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首页> 外文期刊>Communications in Theoretical Physics >Magnetohydrodynamic Electroosmotic Flow with Patterned Charged Surface and Modulated Wettability in a Parallel Plate Microchannel
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Magnetohydrodynamic Electroosmotic Flow with Patterned Charged Surface and Modulated Wettability in a Parallel Plate Microchannel

机译:磁力流体动力学电渗流量与图案化的带电表面和平行板微通道中的调制润湿性

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This paper investigates the magnetohydrodynamic (MHD) electroosmotic flow (EOF) of Newtonian fluid through a zeta potential modulated parallel plate microchannel with patterned hydrodynamic slippage. The driven mechanism of the flow originates from the Lorentz force generated by the interaction of externally imposed lateral electric field E-y and vertical magnetic field B-z and electric field force produced by an externally applied electric field E-x. It is assumed that the wall zeta potential and the slip length are periodic functions of axial coordinate x, an analytical solution of the stream function is achieved by utilizing the method of separation of variables and perturbation expansion. The pictures of streamlines are plotted and the vortex configurations produced in flow field due to patterned wall potential and hydrodynamic slippage are discussed. Based on the stream function, the velocity field and volume flow rate are obtained, which are greatly depend on some dimensionless parameters, such as slip length l(s), electrokinetic width lambda, the amplitude delta of the patterned slip length, the amplitude m of the modulated zeta potential and Hartmann number Ha. The variations of velocity and volume flow rate with these dimensionless parameters are discussed in details. These theoretical results may provide some guidance effectively operating micropump in practical nanofluidic applications.
机译:本文通过Zeta电位调制平行板微通道研究了牛顿流体的磁力动力学(MHD)电渗流(EOF),其具有图案化的流体动力滑动。流量的驱动机构来自由外部施加的横向电场E-y和垂直磁场B-z和由外部施加的电场E-x产生的垂直磁场B-Z和电场力产生的洛伦兹力。假设壁ζ电位和滑动长度是轴向坐标X的周期性函数,通过利用变量分离和扰动膨胀的方法来实现流功能的分析解决方案。绘制了流线的图片,并且讨论了由于图案化的壁电位和流体动力滑动引起的流场中产生的涡流配置。基于流功能,获得速度场和体积流量,这大大取决于一些无量纲参数,例如滑动长度L(S),电动宽度Lambda,图案化滑动长度的幅度Δ,幅度m调制Zeta电位和Hartmann号HA。详细讨论了具有这些无量纲参数的速度和体积流速的变化。这些理论结果可以在实际纳米流体应用中有效地操作微泵。

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