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Minimization of Hemolysis and Improvement of the Hydrodynamic Efficiency of a Circulatory Support Pump by Optimizing the Pump Flowpath

机译:通过优化泵流路优化循环支撑泵的溶血和改善循环支撑泵的流体动力学效率

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摘要

The present study focuses on the development of methods for design calculation and optimization of the circulatory support pump flowpath. The object of this study is the flowpath of an axial flow pump consisting of a straightener, an impeller, and a diffuser. The working fluid has constant density and viscosity that are close to the physiological parameters of blood of a healthy human. The fluid is considered to be incompressible; the flow is considered steady. Red blood cells in the stream are simulated with non-interacting spherical particles whose trajectories are considered as the trajectories of movement of red blood cells. Equivalent shear stress is calculated at each point of the particle trajectory. The damage parameter is calculated based on the current level of the equivalent shear stress and the time of exposure to shear stress. The criteria of maximum efficiency and minimal hemolysis are used as the optimization criteria. The flowpath is optimized according to these two criteria and local optimum parameters for the suggested initial geometry are determined.
机译:本研究致力于开发循环支撑泵流路的设计计算和优化方法。本研究的目的是由矫直器,叶轮和漫射器组成的轴流泵的流动路径。工作流体具有恒定的密度和粘度,接近健康人的血液的生理参数。液体被认为是不可压缩的;流量被认为是稳定的。流中的红细胞与非相互作用的球形颗粒模拟,其轨迹被认为是红细胞运动的轨迹。在颗粒轨迹的每个点计算等效的剪切应力。基于等效剪切应力的电流水平和剪切应力的曝光时间来计算损伤参数。最大效率和最小溶血的标准用作优化标准。根据这两个标准和局部最佳参数进行了优化了流路,确定了建议的初始几何形状。

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