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圆柱管中球形颗粒的非对称流动。

Asymmetric flows of spherical particles in a cylindrical tube.

作者信息

Sugihara-Seki M, Skalak R

机构信息

Faculty of Engineering, Kansai University, Japan.

出版信息

Biorheology. 1997 May-Jun;34(3):155-69. doi: 10.1016/S0006-355X(97)00023-1.

Abstract

To study the rheological behavior of blood cells in various flow patterns through narrow vessels, we analyzed numerically the motion of blood cells arranged in one row or two rows in tube flow, at low Reynolds numbers. The particles are assumed to be identical rigid spheres placed periodically along the vessel axis at off-axis positions with equal spacings. The flow field of the suspending fluid in a circular cylindrical tube is analyzed by a finite element method applied to the Stokes equations, and the motion of each particle is simultaneously determined by a force-free and torque-free condition. In both cases of single- and two-file arrangements of the particles, their longitudinal and angular velocities are largely affected by the radial position and the axial spacing between neighboring particles. The apparent viscosity of the asymmetric flows in higher than that of the symmetric flow where particles are located on the tube centerline, and this is more pronounced when particles are placed farther from the tube centerline and when the axial distance between neighboring particles is reduced.

摘要

为了研究血细胞在通过狭窄血管的各种流动模式下的流变行为,我们在低雷诺数下对管流中排成一排或两排的血细胞运动进行了数值分析。假定粒子为相同的刚性球体,沿血管轴线周期性地放置在离轴位置,间距相等。通过应用于斯托克斯方程的有限元方法分析圆柱管中悬浮流体的流场,并通过无力和无扭矩条件同时确定每个粒子的运动。在粒子单排和双排排列的两种情况下,它们的纵向和角速度在很大程度上受径向位置和相邻粒子之间轴向间距的影响。非对称流动的表观粘度高于粒子位于管中心线时的对称流动,当粒子离管中心线更远且相邻粒子之间的轴向距离减小时,这种情况更为明显。

相似文献

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Asymmetric flows of spherical particles in a cylindrical tube.圆柱管中球形颗粒的非对称流动。
Biorheology. 1997 May-Jun;34(3):155-69. doi: 10.1016/S0006-355X(97)00023-1.
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