MODELING AND SIMULATION OF A CIRCULAR VALVELESS MICROPUMP

IF 0.5 Q4 ENGINEERING, MULTIDISCIPLINARY Journal of the Serbian Society for Computational Mechanics Pub Date : 2018-12-31 DOI:10.24874/JSSCM.2018.12.02.07
Toufik Barkat, Fatima Yohra Kadid, M. Aggoune, R. Abdessemed
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引用次数: 2

Abstract

In this paper, the behavior of a valveless, diaphragm-founded, piezoelectric micropump is studied and simulated. The nature of the piezoelectric actuator is a PZT-5H piezo-disk and the diaphragm is made of Silicon dioxide (SiO2). Applying Fluid-Structure Interaction (FSI) approach, the simulation for the valveless micropump is carried out in COMSOL 3.5 Multiphysics. Also, electro-structure mating between deformation of a piezoelectric disk due to an applied voltage and resulting displacement of the membrane is considered. From the obtained results, the optimum design required a 0.5 mm membrane and 0.5mm piezo actuator. Numerical simulations are reported to study respectively the effects of the voltage on the diaphragm deflection and the nature of the fluid on the net flow rate.
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圆形无阀微泵的建模与仿真
本文对一种无阀膜片式压电微泵的性能进行了研究和仿真。压电驱动器的性质是PZT-5H压电盘,膜片由二氧化硅(SiO2)制成。采用流固耦合(FSI)方法,在COMSOL 3.5 Multiphysics中对无阀微泵进行了仿真。此外,考虑了由于外加电压引起的压电片变形和由此引起的薄膜位移之间的电结构匹配。从得到的结果来看,优化设计需要0.5mm的薄膜和0.5mm的压电致动器。通过数值模拟,分别研究了电压对隔膜挠度的影响和流体性质对净流量的影响。
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