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A Numerical Analysis of Pressure Pulsation Characteristics Induced by Unsteady Blood Flow in a Bileaflet Mechanical Heart Valve

机译:Bileaflet机械性心脏瓣膜中不稳定血流引起的压力脉动特性的数值分析

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The leaflet vibration phenomenon in bileaflet mechanical heart valves (BMHVs) can cause complications such as hemolysis, leaflet damage, and valve fracture. One of the main reasons for leaflet vibration is the unsteady blood flow pressure pulsation induced by turbulent flow instabilities. In this study, we performed numerical simulations of unsteady flow through a BMHV and observed pressure pulsation characteristics under different flow rates and leaflet fully opening angle conditions. The pressure pulsation coefficient and the low-Reynolds k-ω model in CFD (Computational Fluid Dynamics) software were employed to solve these problems. Results showed that the level of pressure pulsation was highly influenced by velocity distribution, and that the higher coefficient of pressure pulsation was associated with the lower flow velocity along the main flow direction. The influence of pressure pulsation near the trailing edges was much larger than the data obtained near the leading edges of the leaflets. In addition, considering the level of pressure pulsation and the flow uniformity, the recommended setting of leaflet fully opening angle was about 80°.
机译:双叶机械心脏瓣膜(BMHV)中的小叶振动现象会引起诸如溶血,小叶损伤和瓣膜破裂等并发症。小叶振动的主要原因之一是由湍流不稳定引起的不稳定的血压压力脉动。在这项研究中,我们对通过BMHV的非恒定流进行了数值模拟,并观察了在不同流速和小叶完全打开角度条件下的压力脉动特性。解决了这些问题,采用了CFD(计算流体力学)软件中的压力脉动系数和低雷诺k-ω模型。结果表明,压力脉动的水平受速度分布的影响很大,并且压力脉动的系数越高,沿主流动方向的流速越低。后缘附近的压力脉动的影响远大于小叶前缘附近的数据。另外,考虑到压力脉动的水平和流动的均匀性,建议的小叶完全张开角的设置约为80°。

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