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Effects of shear rate and suspending viscosity on deformation and frequency of red blood cells tank-treading in shear flows

机译:剪切速率和悬浮粘度对剪切流中红细胞横切面变形和频率的影响

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摘要

The tank-treading rotation of red blood cells (RBCs) in shear flows has been studied extensively with experimental, analytical, and numerical methods. Even for this relatively simple system, complicated motion and deformation behaviors have been observed, and some of the underlying mechanisms are still not well understood. In this study, we attempt to advance our knowledge of the relationship among cell motion, deformation, and flow situations with a numerical model. Our simulation results agree well with experimental data, and confirm the experimental finding of the decrease in frequency/shear-rate ratio with shear rate and the increase of frequency with suspending viscosity. Moreover, based on the detailed information from our simulations, we are able to interpret the frequency dependency on shear rate and suspending viscosity using a simple two-fluid shear model. The information obtained in this study thus is useful for understanding experimental observations of RBCs in shear and other flow situations; the good agreement to experimental measurements also shows the potential usefulness of our model for providing reliable results for microscopic blood flows.
机译:已经用实验,分析和数值方法广泛研究了剪切流中的红细胞(RBC)的踩踏旋转。即使对于这种相对简单的系统,也已经观察到复杂的运动和变形行为,并且某些底层机制仍未得到很好的理解。在这项研究中,我们尝试通过数值模型来提高对细胞运动,变形和流动情况之间关系的了解。我们的仿真结果与实验数据吻合得很好,并证实了实验结果:频率/剪切率比随剪切率的降低而降低,频率随悬浮粘度的升高而提高。此外,基于来自仿真的详细信息,我们能够使用简单的两流体剪切模型来解释频率对剪切速率和悬浮粘度的依赖性。因此,从这项研究中获得的信息对于理解红细胞在剪切和其他流动情况下的实验观察是有用的。与实验测量结果的良好一致性也显示了我们的模型为微观血流提供可靠结果的潜在有用性。

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