Department of Mechanical and Manufacturing Engineering, University of Calgary, 2500 University Dr. N.W., Calgary, AB, T2N 1N4, Canada,
Ann Biomed Eng. 2014 Jan;42(1):97-109. doi: 10.1007/s10439-013-0893-4. Epub 2013 Aug 23.
Particle image velocimetry (PIV) was used to investigate the influence of a non-Newtonian blood analog of aqueous xanthan gum on flow separation in laminar and transitional environments and in both steady and pulsatile flow. Initial steady pressure drop measurements in laminar and transitional flow for a Newtonian analog showed an extension of laminar behavior to Reynolds number (Re) ~ 2900 for the non-Newtonian case. On a macroscale level, this showed good agreement with porcine blood. Subsequently, PIV was used to measure flow patterns and turbulent statistics downstream of an axisymmetric stenosis in the aqueous xanthan gum solution and for a Newtonian analog at Re ~ 520 and Re ~ 1250. The recirculation length for the non-Newtonian case was reduced at Re ~ 520 resultant from increased viscosity at low shear strain rates. At Re ~ 1250, peak turbulent intensities and turbulent shear stresses were dampened by the non-Newtonian fluid in close proximity to the blockage outlet. Although the non-Newtonian case's recirculation length was increased at peak pulsatile flow, turbulent shear stress was found to be elevated for the Newtonian case downstream from the blockage, suggesting shear layer fragmentation and radial transport. Our findings conclude that the xanthan gum elastic polymer prolongs flow stabilization, which in turn emphasizes the importance of non-Newtonian blood characteristics on the resulting flow patterns in such cardiovascular environments.
粒子图像测速(PIV)用于研究非牛顿血液类似物水黄原胶对层流和过渡环境以及稳定和脉动流中的流动分离的影响。牛顿类似物在层流和过渡流中的初始稳定压降测量表明,非牛顿情况下的层流行为扩展到雷诺数(Re)2900。在宏观水平上,这与猪血液吻合良好。随后,使用 PIV 测量了轴对称狭窄处下游的流动模式和湍流统计数据,以及水黄原胶水溶液和牛顿类似物在 Re520 和 Re1250 处的流动模式和湍流统计数据。在 Re520 时,由于低剪切应变速率下的粘度增加,非牛顿情况下的回流长度减小。在 Re~1250 时,非牛顿流体在靠近阻塞出口处的脉动流峰值时减弱了湍流强度和湍流剪切应力。尽管在脉动流峰值时非牛顿情况下的回流长度增加,但阻塞下游的牛顿情况下的剪切层分裂和径向输运导致湍流剪切应力升高。我们的研究结果表明,黄原胶弹性聚合物延长了流动稳定化,这反过来强调了心血管环境中血液非牛顿特性对流动模式的重要性。