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首页> 外文期刊>ASAIO journal >Design optimization of an axial blood pump with computational fluid dynamics.
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Design optimization of an axial blood pump with computational fluid dynamics.

机译:具有计算流体动力学的轴向血泵的设计优化。

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A fully implantable, axial flow blood pump has been developed in our hospital. Both in vitro and in vivo tests showed that the hemolysis and thrombus characteristics of the pump were in an acceptable but not in an ideal range. Computational fluid dynamics (CFD) and in vitro test results showed that the pump worked at off-design point with a low hydraulic efficiency; CFD analysis also showed regions of reverse flow in the diffuser, which not only decreases the pump's hydrodynamic efficiency, but also increases its overall potential for blood trauma and thrombosis. To make a blood pump atraumatic and nonthrombogenic, several methods were taken to reach a final model of the optimized blood pump using CFD, which decreased the rotational speed from 9,000 to 8,000 rpm, and the design flow rate from 11 to 6 L/min. More significantly, the flow separation and recirculation in the diffuser region were eliminated, which mitigated the traumatic and thrombus effect on blood. The acceptable results of the numerical simulations encourage additional in vitro and in vivo studies.
机译:我院已开发出一种完全可植入的轴向流血泵。体外和体内测试均显示泵的溶血和血栓特性在可接受范围内,但不在理想范围内。计算流体动力学(CFD)和体外测试结果表明,该泵在非设计点工作,水力效率低; CFD分析还显示了扩散器中的逆流区域,这不仅降低了泵的流体力学效率,而且还增加了其潜在的血液外伤和血栓形成的可能性。为了使血泵无损伤且无血栓形成,采用了几种方法来建立使用CFD的优化血泵的最终模型,该模型将转速从9,000 rpm降低至8,000 rpm,设计流速从11 L / min降低至6 L / min。更重要的是,消除了扩散区域中的流动分离和再循环,从而减轻了对血液的创伤和血栓作用。数值模拟的可接受结果鼓励了更多的体外和体内研究。

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