首页> 外文期刊>Journal of medical engineering & technology >Computational fluid dynamics verified the advantages of streamlined impeller design in improving flow patterns and anti-haemolysis properties of centrifugal pump.
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Computational fluid dynamics verified the advantages of streamlined impeller design in improving flow patterns and anti-haemolysis properties of centrifugal pump.

机译:计算流体动力学证实了流线型叶轮设计在改善离心泵的流型和抗溶血性能方面的优势。

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摘要

Computational fluid dynamics (CFD) technology was applied to predict the flow patterns in the authors' streamlined blood pump and an American bio-pump with straight vanes and shroud, respectively. Meanwhile, haemolysis comparative tests of the two pumps were performed to verify the theoretical analysis. The results revealed that the flow patterns in the streamlined impeller are coincident with its logarithmic vanes and parabolic shroud, and there is neither separate flow nor impact in the authors' pump. In the bio-pump, the main flow has the form of logarithmic spiral in vertical section and parabola in cross section, thus there are both stagnation and swirl between the main flow and the straight vanes and shroud. Haemolysis comparative tests demonstrated that the authors' pump has an index of haemolysis of 0.030, less than that of the bio-pump (0.065).
机译:应用计算流体动力学(CFD)技术来预测作者的流线型血泵和带有直叶片和导流罩的美国生物泵中的流态。同时,对两个泵进行了溶血对比试验,以验证理论分析。结果表明,流线型叶轮中的流型与其对数叶片和抛物线形护罩相吻合,并且在泵中既没有分离的流,也没有影响。在生物泵中,主流在垂直截面上呈对数螺旋形,在截面上呈抛物线形,因此在主流与直叶片和导流罩之间既有停滞也有涡旋。溶血比较试验表明,作者的泵的溶血指数为0.030,低于生物泵的溶血指数(0.065)。

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