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A NUMERICAL STUDY ON MECHANICAL PERFORMANCE AND HEMOLYSIS FOR DIFFERENT TYPES OF CENTRIFUGAL BLOOD PUMPS

机译:不同类型离心泵的力学性能和溶血作用的数值研究

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Centrifugal blood pumps have to be considered from both mechanical and biomechanical aspects. While, evaluations of mechanical factors, such as performance curve, are straightforward, biomechanical parameters, such as hemolysis indices, are still indistinct. Hence, different mathematical models and computational methods have been employed for the evaluation of hemolysis indices. This article aims to investigate four different types of centrifugal blood pumps from both mechanical and biomechanical aspects. The pumps are cone-type impeller (Type-A), channel-type impeller with shroud (Type-B), open impeller without shroud (Type-C) and shrouded impeller-type (Type-D). The CFD simulations are conducted using standard k-e turbulence model in multiple reference frame (MRF) method. Various values for rotational speed and flow rate are studied. The streamlines clearly show the effects of impeller geometry on flow patterns. It is also demonstrated that in all of the models, the areas of the recirculation have high value of von Mises stress. In addition, the effect of the volute in the Type-D on the pressure distribution and streamline smoothness is clearly observed. In another part, the modified index of hemolysis (MIH) calculated based on Eulerian approach is investigated for three predefined conditions of extracorporeal membrane oxygenation (ECMO), ventricular assist device (VAD), and full-load. The results reveal that the Type-A and Type-D have the highest and lowest MIH values, respectively in all of the predefined conditions. In addition, all of the pumps generate lower amount of hemolysis when they are operated in VAD condition.
机译:从机械和生物力学两个方面都必须考虑离心式血泵。虽然对机械因素(例如性能曲线)的评估很简单,但生物力学参数(例如溶血指数)仍然不清楚。因此,已经采用了不同的数学模型和计算方法来评估溶血指数。本文旨在从机械和生物力学两个方面研究四种不同类型的离心血泵。泵为锥型叶轮(A型),带护罩的通道型叶轮(B型),无护罩的敞开叶轮(C型)和带罩叶轮(D型)。 CFD仿真是在多参考系(MRF)方法中使用标准k-e湍流模型进行的。研究了转速和流速的各种值。流线清楚地显示了叶轮几何形状对流型的影响。还表明,在所有模型中,回流区域具有很高的冯·米塞斯应力值。此外,清楚地观察到D型蜗壳对压力分布和流线平滑度的影响。在另一部分中,针对体外膜氧合(ECMO),心室辅助装置(VAD)和满负荷的三个预定条件,研究了基于欧拉方法计算的修正溶血指数(MIH)。结果表明,在所有预定义条件下,Type-A和Type-D分别具有最高和最低的MIH值。此外,所有泵在VAD条件下运行时产生的溶血量均较少。

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