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Flow Evaluation and Hemolysis Analysis of BVAD Centrifugal Blood Pump by Computational Fluids Dynamics

机译:基于计算流体力学的BVAD离心血泵流量评估和溶血分析

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Computational fluid dynamics (CFD) and particle image velocimetry (PIV) are commonly used techniques to evaluate the flow characteristics in the development stage of blood pumps. CFD technique allows rapid change to pump parameters to optimize the pump performance without having to construct a costly prototype model. These techniques are used in the construction of a bi-ventricular assist device (BVAD) which combines the functions of LVAD and RVAD in a compact unit. The BVAD construction consists of two separate chambers with similar impellers, volutes, inlet and output sections. To achieve the required flow characteristics of an average flow rate of 5 l/min and different pressure heads (left – 100mmHg and right – 20mmHg), the impellers were set at different rotating speeds. From the CFD results, a six-blade impeller design was adopted for the development of the BVAD. It was also observed that the fluid can flow smoothly through the pump with minimum shear stress and area of stagnation which are related to haemolysis and thrombosis. Based on the compatible Reynolds number the flow through the model was calculated for the left and the right pumps. As it was not possible to have both the left and right chambers in the experimental model, the left and right pumps were tested separately.
机译:计算流体动力学(CFD)和粒子图像测速(PIV)是评估血泵发展阶段的流动特性的常用技术。 CFD技术允许快速更改泵参数以优化泵性能,而无需构建昂贵的原型模型。这些技术用于双心室辅助设备(BVAD)的构造,该设备在一个紧凑的单元中结合了LVAD和RVAD的功能。 BVAD结构由两个独立的腔室组成,它们具有相似的叶轮,蜗壳,入口和出口部分。为了获得所需的平均流量为5 l / min的流量特性和不同的压头(左– 100mmHg和右– 20mmHg),叶轮设置为不同的转速。根据CFD结果,BVAD的开发采用了六叶片叶轮设计。还观察到,流体可以以最小的切应力和停滞面积平稳地流过泵,这与溶血和血栓形成有关。基于兼容的雷诺数,计算出左右泵的通过模型的流量。由于不可能在实验模型中同时设置左右腔室,因此分别测试了左右泵。

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