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Analysis on flow field of the valveless piezoelectric system with a rotating unsymmetrical slopes element

机译:具有非对称旋转斜面单元的无阀压电系统的流场分析

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A new valveless piezoelectric pump, which integrates mixer and pump, is proposed, based on the theory of the piezoelectric pump with the Unsymmetrical Slopes Element(USE). It is designed not only two inlets and one outlet, but a Rotatable Unsymmetrical Slopes Element(RUSE). When the pump works, two fluids flow into the inlet channels, respectively. The RUSE can be rotated to adjust the flow resistances of the two inlet channels and varies their flows. It can realize the ratio control of the two flows. The fluids form a net flow due to the USE principle, while they are mixed into a homogeneous solution due to strong turbulence flow field and complex vortexes generated by RUSE in the chamber. And then the solution is exhaust out of the outlet. All of these processes realize the integration of mixing and pumping functions. Firstly, theoretical analysis on this pump is performed. Meanwhile, the flow field in the chamber is calculated and simulated. And then, the relationship between the flow of the pump and the rotating angle of the RUSE is established and analyzed. Finally, experiment on this pump is carried on. It shows that the empirical data and the theoretical data share the same tend. On condition of 20° RUSE, the maximum error between the theoretical flow and the empirical flow is 11.14%, and the maximum error between the theoretical flow ratio of the two inlets and the experimental one is 2.5%. All of these verify the theoretical analysis.
机译:基于具有非对称斜率元素的压电泵的理论,提出了一种新型的无阀压电泵,将混合器和泵集成在一起。它不仅设计有两个入口和一个出口,而且还设计有可旋转的不对称斜面元件(RUSE)。当泵工作时,两种流体分别流入入口通道。 RUSE可以旋转以调节两个入口通道的流阻并改变它们的流量。可以实现两种流量的比例控制。由于USE原理,流体形成净流,而由于强大的湍流场和RUSE在腔室内产生的复杂涡流,它们混合成均匀的溶液。然后溶液从出口排出。所有这些过程实现了混合和泵送功能的集成。首先,对该泵进行理论分析。同时,对室内的流场进行了计算和模拟。然后,建立并分析了泵的流量与RUSE的旋转角度之间的关系。最后,对该泵进行实验。结果表明,经验数据和理论数据具有相同的趋势。在20°RUSE的条件下,理论流量和经验流量之间的最大误差为11.14%,两个入口的理论流量比与实验流量之间的最大误差为2.5%。所有这些都验证了理论分析。

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