Mean velocities and Reynolds stress measurements around the valves in the Penn State LVAD

J. Maymir, S. Deutsch, D. Geselowitz, J. Tarbell
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Abstract

A laser Doppler anemometer (LDA) was used to measure two components of velocity at eight locations around the Bjork-Shiley monostrut artificial valves in a plexiglass model of the Penn State 70 cc electric left ventricular assist device (LVAD). The model was filled with a blood analog fluid which matched the kinematic viscosity of blood. The model was connected to a mock circulatory loop in order to generate physiologic conditions. Two hundred and fifty velocity realizations were obtained during six time windows in the regurgitant phase of the flow cycle. These data were then processed, and the mean velocities and Reynolds turbulent stresses were calculated. The results reveal that a significant regurgitant jet occurs in the minor orifice of both the mitral and aortic valves. The strength of the jet is large enough for hemolysis and blood damage to occur.<>
宾夕法尼亚州立大学左心室辅助装置阀门周围的平均速度和雷诺应力测量值
采用激光多普勒风速仪(LDA)测量了宾州州立大学70毫升电动左室辅助装置(LVAD)有机玻璃模型中Bjork-Shiley单支柱人工瓣膜周围8个位置的两种速度分量。模型中填充了与血液运动粘度相匹配的血液模拟流体。该模型连接到模拟循环回路,以产生生理条件。在流动循环的反流相的六个时间窗口内获得了250个速度实现。然后对这些数据进行处理,计算平均速度和雷诺湍流应力。结果表明,在二尖瓣和主动脉瓣的小孔中都有明显的反流射流。射流的强度大到足以发生溶血和血液损伤。
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