首页> 外文会议>International Conference on Modeling and Simulation of Microsystems Mar 27-29, 2000, San Diego, CA, USA >Numerical Simulation of Pulse-Width-Modulated Micropumps with Diffuser/Nozzle Elements
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Numerical Simulation of Pulse-Width-Modulated Micropumps with Diffuser/Nozzle Elements

机译:带有扩散器/喷嘴元件的脉宽调制微泵的数值模拟

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This paper presents the numerical simulation of a new control method for dynamic micropumps with diffuserozzle elements: the pulse-width-modulation (PWM) of the drive signal. A piezo disk with a square wave signal actuates the pump, the square-wave-like deflection of the membrane causes velocity pulses in opposite directions. Because of the inertia of the fluid in the pump chamber, the time distance between these velocity pulses controls the generated flow rate. The paper compares results of models with different boundary conditions of the pump membrane: time-dependent velocity and time-dependent deflection. This paper also describes the fabrication of pump prototype based on laser micromachining. Simulation results are then compared to experimental results.
机译:本文介绍了一种具有扩散器/喷嘴元件的动态微型泵新控制方法的数值模拟:驱动信号的脉宽调制(PWM)。带有方波信号的压电盘驱动泵,隔膜的方波状偏转会引起相反方向的速度脉冲。由于泵室内流体的惯性,这些速度脉冲之间的时间距离控制着所产生的流量。本文比较了具有不同边界条件的泵膜模型的结果:随时间变化的速度和随时间变化的挠度。本文还描述了基于激光微加工的泵原型的制造。然后将模拟结果与实验结果进行比较。

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