轴向间隙对离心式血泵效率及溶血性能分析
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1.上海理工大学能源与动力工程学院;2.张家港海陆热能设备有限公司

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Analysis of efficiency and hemolysis performance of centrifugal blood pump with axial gap
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1.School of Energy and Power Engineering, University of Shanghai for Science and Technology;2.Zhangjiagang sea land thermal energy equipment Co., LTD

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    摘要:

    目的 在离心式血泵中,叶轮与蜗壳之间的间隙是血泵的关键区域之一,对血泵的水力性能及血液损伤产生都有着显著影响。探究三种不同间隙情况(上下轴向间隙相等、上下轴向间隙其一变化和叶轮轴向偏移)对血泵效率、溶血性能影响。方法 通过计算流体力学对三种间隙情况的血泵进行数值模拟。结果 对于效率,上下轴向间隙相等、下轴间隙不变及叶轮轴向偏移时减小上轴间隙可提高血泵效率,分别提高0.85%、1.71%、2.90%。上轴间隙不变下轴间隙减小呈现相反趋势,减小1.18%。对于溶血,在前两种间隙情况下增大间隙均可减小溶血指数,而叶轮轴向偏移会增大溶血指数,其中上轴间隙不变下轴间隙为0.3mm时溶血指数最大,为8.65×10^(-4);上下轴向间隙为0.7mm时溶血指数最小,为4.51×10^(-4)。结论 改进血泵间隙有助于优化血泵性能。研究结果可为血泵间隙结构设计与优化提供一定参考。

    Abstract:

    Objective In centrifugal blood pump, the gap between impeller and volute is one of the key areas of the blood pump, which has significant influence on the hydraulic performance of the blood pump and blood damage. The effects of three different clearance conditions (equal upper and lower axial clearance, change of upper and lower axial clearance and axial displacement of blades) on blood pump efficiency and hemolysis performance were investigated. Methods The blood pumps with three kinds of gap conditions were numerically simulated by computational fluid dynamics. Results For efficiency, when the upper and lower axial clearance is equal, the lower axial clearance is unchanged and the upper axial clearance is reduced, the blood pump efficiency can be respectively improved by 0.85%, 1.71% and 2.90%. While the upper shaft clearance remains unchanged, the lower shaft clearance decreases by 1.18%. For hemolysis, the increase of the clearance can reduce the hemolysis index under the first two clearance conditions, while the axial migration of the blade wheel will increase the hemolysis index. When the upper axial clearance is unchanged and the lower axial clearance is 0.3mm, the hemolysis index is the largest, which is 8.65×10^(-4);When the upper and lower axial gap is 0.7mm, the hemolytic index is the smallest, which is 4.51×10^(-4).Conclusions Improving blood pump space is helpful to optimize blood pump performance. The results can provide some reference for the design and optimization of blood pump interstitial structure.

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  • 收稿日期:2024-07-31
  • 最后修改日期:2024-11-05
  • 录用日期:2024-11-05
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