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首页> 外文期刊>International Journal Of Modelling & Simulation >A design analysis of piezoelectric-polymer composite-based valveless micropump
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A design analysis of piezoelectric-polymer composite-based valveless micropump

机译:基于压电聚合物复合材料的无阀微型泵的设计分析

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摘要

This paper presents the three-dimensional numerical simulation of a micropump, including diffuser and analytical modelling of the micropump flow rate. The numerical simulation of the diffuser is performed in all possible flow regimes to optimize its geometry for maximum efficiency. The deflection of the piezoelectric polymer composite circular actuator is analytically solved by theory of bending plates to determine the volumetric change and flow rate. The result is then extended for actuator bonded to diaphragm of the micropump considering it as bilaminar plates. From the simulation results, it is found that and the diffuser angle >30° results in flow recirculation and reduction in the efficiency. The flow rate of the micropump obtained from analytical model and the numerical simulation are found to be similar.
机译:本文介绍了微型泵的三维数值模拟,包括扩散器和微型泵流速的解析模型。在所有可能的流动状态下进行扩散器的数值模拟,以优化其几何形状以实现最大效率。压电聚合物复合材料圆形致动器的挠度通过弯曲板的理论解析地解决,以确定体积变化和流量。然后将结果扩展为将执行器结合到微型泵的隔膜上,并将其视为双层板。从模拟结果可以发现,扩散角大于30°会导致流体再循环并降低效率。从分析模型和数值模拟获得的微型泵的流量被发现是相似的。

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