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Study on the influence of dynamic/static interface processing methods on CFD simulation results of the axial-flow blood pump

机译:动态/静态接口处理方法对轴流血泵CFD仿真结果影响的研究

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摘要

Computational fluid dynamics is an essential tool for the flow field analysis of the blood pump. The interface processing method between the dynamic/static regions will affect the accuracy of simulation results, but its influence on the simulation results is still unclear. In this study, the axial-flow blood pump was taken as the research object, and the effects of the mixing plane, frozen rotor, and sliding mesh methods on the following results were compared: flux conservation at the interface, hydraulic characteristics, and velocity field distribution. In parallel, the particle image velocimetry experiment was carried out to measure the velocity field of the impeller, the inlet, and the outlet area of the blood pump. The results show that the above methods have significant differences in flux conservation between the impeller and the back vane. The average surface energy flux's error of frozen rotor and sliding mesh are 0.7% and 0.72%, respectively, while the mixing plane method reaches 3.6%. This nonconservative transfer affects the distribution of the downstream velocity field, and the velocity field predicted by the mixing plane at the outlet is quite different. It is suggested to use the frozen rotor method and the sliding mesh method in the simulation of the blood pump.
机译:计算流体动力学是血液泵的流场分析的重要工具。动态/静态区域之间的接口处理方法将影响模拟结果的准确性,但其对模拟结果的影响尚不清楚。在本研究中,轴向流动血液泵作为研究对象,以及混合平面,冷冻转子和滑动网格方法对以下结果的影响:界面,液压特性和速度下的助熔剂现场分布。并行地,进行粒子图像速度实验以测量血液泵的叶轮,入口和出口区域的速度场。结果表明,上述方法具有叶轮和后叶片之间的磁通保存的显着差异。冷冻转子和滑动网格的平均表面能量通量分别为0.7%和0.72%,而混合平面法达到3.6%。该非运动改移影响下游速度场的分布,并且在出口处的混合平面预测的速度场非常不同。建议使用冷冻转子方法和滑动网格法在血液泵的模拟中。

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