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Electrical analogies applied on MMR micropump

机译:电气类比应用于MMR MicroPump

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Micropumps are among useful equipment in microsystems. The magnetically actuated mercury micropump, which has been introduced for less than a decade, is an innovative kind of micropumps which uses mercury droplets motion as a pumping agent. The equations governing this micropump are complex and their numerical solution is a time-consuming process, due to electromagnetic, hydrodynamic, and unsteady effects. In the present study, for the first time, using simplifying assumptions, the performance of a Magneto Mercury Reciprocating (MMR) micropump with electromagnetic actuation is studied through electrical analogy and then, the components and operational stages of the micropump are simulated using a lumped element method with an equivalent electric circuit, while calculating its currents and potentials. Then, the characteristic curves of this micropump are extracted as a function of head and the flow rate and the results of the proposed modeling are verified by laboratory results. Finally, the effect of geometric parameters and the actuation frequency on the micropump performance is studied. The results of modeling indicate that an increase in the volume of the liquid droplet chamber, as well the actuation frequency could improve the performance of this micropump. (C) 2019 Elsevier B.V. All rights reserved.
机译:MicroPumps是微系统中的有用设备。已经引入少于十年的磁动汞微泵是一种创新种类的微型泵,其使用汞液滴运动作为泵送剂。控制该微泵的方程是复杂的,并且由于电磁,流体动力学和不稳定效应,它们的数值解决方案是耗时的过程。在本研究中,首次使用简化假设,通过电气类比研究了具有电磁致动的磁汞往复运动(MMR)微泵的性能,然后使用集总元件模拟微泵的组件和操作级具有等效电路的方法,同时计算其电流和电位。然后,将该微泵的特征曲线作为头部的函数提取,并且通过实验室结果验证了所提出的建模的流速和结果。最后,研究了几何参数和致动频率对微泵性能的影响。建模结果表明液滴室的体积增加,以及致动频率可以提高该微泵的性能。 (c)2019 Elsevier B.v.保留所有权利。

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