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Optimization and Numerical Flow Analysis of a Valveless Micropump

机译:无阀微型泵的优化和数值流分析

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This paper presents thermal and flow analyses and optimization of a bi-directional valve-less micropump. The bi-directional pump does not use mechanical check valves but takes advantage of the viscosity variation according to temperature. When there is a viscosity difference between two outlet chokes, the flow rate of one choke becomes greater than that of the other, which results in flow rectification in one direction. The benefits of this type of micropump are: its structure is simple, and it allows bidirectional pumping. In order to investigate the behavior of the micropump, an FEA model is made for the whole physical domains, and coupled thermal and fluid flow analyses are conducted using a commercial code throughout the entire working cycle. The rectification efficiency and fluid flow rate are designated as the objective function for optimization. To improve the performance of the pump, important thermal parameters - heat flux, preheating time and heating time - are selected and optimized.
机译:本文介绍了双向无阀微型泵的热和流量分析以及优化。双向泵不使用机械止回阀,而是利用了粘度随温度变化的优势。当两个出口节流阀之间存在粘度差时,一个节流阀的流量会变得大于另一个节流阀的流量,这会导致一个方向的流量整流。这种微型泵的好处是:它的结构简单,并且可以双向泵送。为了研究微型泵的行为,针对整个物理域创建了FEA模型,并在整个工作周期中使用商业代码进行了热力和流体流耦合分析。精馏效率和流体流速被指定为优化的目标函数。为了提高泵的性能,选择并优化了重要的热参数-热通量,预热时间和加热时间。

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