首页> 外文会议>8th Biennial Conference on Engineering Systems Design and Analysis 2006 vol.3 >A New Model for Dynamic Analysis of Side Mounted Diffuser Valve Micropumps
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A New Model for Dynamic Analysis of Side Mounted Diffuser Valve Micropumps

机译:侧装式扩散阀微型泵动态分析的新模型

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Valveless micropumps are widely used due to simple structure, durability and low maintenance. Understanding the fluid-membrane interaction and performance criteria is still a challenging problem for the scientists. In this work, a new model for side mounted valve micropumps is developed to obtain dynamic response of micropump with respect to piezoelectric actuation. The parameters of this model are obtained in terms of actuation frequency and geometrical dimensions of the micropump.rnBalancing elastic, inertial and damping forces result in the governing equation of the micropump system model. Analytical studies for the bottom mounted valve micropump indicate pump flux is independent of the chamber geometrical aspect ratio while, for the side mounted valve micropumps, geometric aspect ratio is an important factor in the net flux. Findings indicate there exists a peak excitation frequency at which the flux is maximum. As the excitation frequency increases beyond the peak frequency, the pump flux decreases sharply. This is due to enhancement of the fluid inertial forces. By increasing the aspect ratio of the chamber the maximum net flux raises considerably. While, increasing membrane to valve area ratio has adverse effect on the pump efficiency. Findings show that good agreement exists between the net flux response to actuation frequency obtained from modeling and experiment.
机译:无阀微型泵由于其结构简单,耐用且维护成本低而被广泛使用。对于科学家来说,了解液膜相互作用和性能标准仍然是一个充满挑战的问题。在这项工作中,开发了一种用于侧装阀微型泵的新模型,以获得微型泵相对于压电驱动的动态响应。该模型的参数是根据微型泵的致动频率和几何尺寸获得的。平衡弹性力,惯性力和阻尼力会导致微型泵系统模型的控制方程式。对底部安装的阀门微型泵的分析研究表明,泵流量与腔室的几何长宽比无关,而对于侧面安装的阀门微型泵,几何长宽比是净流量的重要因素。结果表明存在一个峰值励磁频率,在该频率处通量最大。当激励频率增加到超过峰值频率时,泵通量急剧下降。这是由于流体惯性力的增强。通过增加腔室的纵横比,最大净通量会大大提高。同时,增加膜与阀的面积比会对泵效率产生不利影响。结果表明,从建模和实验获得的净磁通量对驱动频率的响应之间存在良好的一致性。

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