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采用计算流体动力学对轴流血泵的扩散器叶片进行形状优化。

Shape optimization of the diffuser blade of an axial blood pump by computational fluid dynamics.

机构信息

School of Aerospace, Tsinghua University, Beijing, China.

出版信息

Artif Organs. 2010 Mar;34(3):185-92. doi: 10.1111/j.1525-1594.2009.00799.x.

Abstract

Computational fluid dynamics (CFD) has been a viable and effective way to predict hydraulic performance, flow field, and shear stress distribution within a blood pump. We developed an axial blood pump with CFD and carried out a CFD-based shape optimization of the diffuser blade to enhance pressure output and diminish backflow in the impeller-diffuser connecting region at a fixed design point. Our optimization combined a computer-aided design package, a mesh generator, and a CFD solver in an automation environment with process integration and optimization software. A genetic optimization algorithm was employed to find the pareto-optimal designs from which we could make trade-off decisions. Finally, a set of representative designs was analyzed and compared on the basis of the energy equation. The role of the inlet angle of the diffuser blade was analyzed, accompanied by its relationship with pressure output and backflow in the impeller-diffuser connecting region.

摘要

计算流体动力学(CFD)已经成为一种可行且有效的方法,可以预测血泵内的水力性能、流场和切应力分布。我们开发了一种带有 CFD 的轴流血泵,并对扩散器叶片进行了基于 CFD 的形状优化,以在固定设计点提高压力输出并减少叶轮-扩散器连接区域内的回流。我们的优化将计算机辅助设计软件包、网格生成器和 CFD 求解器结合在自动化环境中,并集成了过程优化软件。遗传优化算法用于从帕累托最优设计中找到折衷设计方案。最后,根据能量方程对一组有代表性的设计进行了分析和比较。分析了扩散器叶片入口角的作用,并研究了其与叶轮-扩散器连接区域内的压力输出和回流之间的关系。

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