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首页> 外文期刊>Journal of artificial organs: The official journal of the Japanese Society for Artificial Organs >Flow study on a newly developed impeller for a left ventricular assist device.
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Flow study on a newly developed impeller for a left ventricular assist device.

机译:左心室辅助装置新开发叶轮的流量研究。

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Nowadays, left ventricular assist devices are usually designed as high-speed, electric, rotary blood pumps. The pump drains blood from the left ventricular apex via an inlet cannula and ejects into the aortic root via an outlet conduit. To develop a high-performance pump, the present study utilizes partial differential equations to generate a surface representation of the impeller of the blood pump. Flow analysis around the impeller is performed by using the finite volume method to solve the fully incompressible three-dimensional Navier-Stokes equations along with the k-epsilon turbulence model. The numerical results highlight flow features in the end-wall region of the pump, namely the clearance leakage cross-flow, and the vortex associated with this leakage. These secondary flows induce major energy losses in the pumping device. On the test study, a test loop was proposed to measure the performance characteristics. It was shown that the design would provide a flow rate of 4.4 l/min with a pressure head of 122 mmHg. The DC motor power under these conditions was about 6 W and the rotational speed was 4500 rpm. Both the flow rate and head can satisfy the demand for the left artificial heart to work normally.
机译:如今,左心室辅助设备通常设计为高速,电动,旋转式血泵。泵通过入口套管从左心尖排出血液,并通过出口导管排入主动脉根。为了开发高性能的泵,本研究利用偏微分方程来生成血泵叶轮的表面表示。通过使用有限体积方法对叶轮周围的流动进行分析,以求解完全不可压缩的三维Navier-Stokes方程以及k-ε湍流模型。数值结果突出了泵端壁区域中的流动特征,即间隙泄漏横流以及与此泄漏相关的涡流。这些次级流在泵送装置中引起大量的能量损失。在测试研究中,提出了一个测试环路来测量性能特征。结果表明,该设计可提供4.4 l / min的流速,压头为122 mmHg。在这些条件下,直流电动机的功率约为6 W,转速为4500 rpm。流量和扬程都可以满足左人工心脏正常工作的需求。

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