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[双出口离心式圆盘血泵流动特性的研究]

[Research on flow characteristics of dual-outlet centrifugal disk blood pumps].

作者信息

Lian Qilong, Xiao Yuan, Xiao Yiping, Cao Zhanshuo, Cui Guomin

机构信息

Shanghai Key Laboratory of Multiphase Flow and Heat Transfer in Power Engineering, School of Energy and Power Engineering, University of Shanghai for Science and Technology, Shanghai 200093, P. R. China.

出版信息

Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2025 Apr 25;42(2):374-381. doi: 10.7507/1001-5515.202408031.

Abstract

Tesla blood pumps demonstrate a reduced propensity for hemolysis and thrombosis compared with vane blood pumps. Considering the restricted driving force within the secondary flow channel of vane blood pumps, along with the low hydraulic efficiency of conventional Tesla blood pumps and their internal flow characteristics that significantly contribute to hemolysis and thrombosis, this study introduces a set of vanes atop the rotor of the Tesla blood pump. This forms a dual-fluid domain rotor, and an axial dual-outlet volute shell structure is adopted to realize the separation of the fluid domains. Through numerical simulations of the new structure, a comparative analysis was conducted in this study on the internal flow characteristics of double-outlet and single-outlet volute shells, and symmetric and asymmetric cross-sections of the same rotor. The results indicate that the flow field distribution is more uniform under the double-outlet volute shell structure, and overall energy dissipation is decreased. After implementing the double-outlet design, in the asymmetric cross-section, compared with the symmetric cross-section, the fluid velocity gradient and turbulent kinetic energy at the tongue of the septum are reduced, and the fluid velocity gradient at the convergence of the diffuser tube outlets are also decreased. The maximum scalar stress is lower, and the decline in head and efficiency is mitigated. Moreover, compared with the single-outlet volute shell, the hemolysis index in the asymmetric cross-section is reduced. In summary, this paper proposes a novel dual-outlet centrifugal disk blood pumps, which can provide a reference for the structural design and performance optimization of magnetically levitated centrifugal blood pumps.

摘要

与叶片式血泵相比,特斯拉血泵表现出较低的溶血和血栓形成倾向。考虑到叶片式血泵二次流道内驱动力受限,以及传统特斯拉血泵的低水力效率及其内部流动特性对溶血和血栓形成有显著影响,本研究在特斯拉血泵的转子顶部引入了一组叶片。这形成了双流体域转子,并采用轴向双出口蜗壳结构来实现流体域的分离。通过对新结构的数值模拟,本研究对双出口和单出口蜗壳以及同一转子的对称和非对称横截面的内部流动特性进行了对比分析。结果表明,双出口蜗壳结构下的流场分布更均匀,整体能量耗散降低。实施双出口设计后,在非对称横截面中,与对称横截面相比,隔膜舌部的流体速度梯度和湍动能降低,扩散管出口汇合处的流体速度梯度也降低。最大标量应力较低,扬程和效率的下降得到缓解。此外,与单出口蜗壳相比,非对称横截面中的溶血指数降低。总之,本文提出了一种新型双出口离心盘式血泵,可为磁悬浮离心血泵的结构设计和性能优化提供参考。

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[Research on flow characteristics of dual-outlet centrifugal disk blood pumps].[双出口离心式圆盘血泵流动特性的研究]
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