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一种用于狭窄血管中血液流动的两相模型,该模型中血管壁附近有效粘度增加。

A two-phase model for flow of blood in narrow tubes with increased effective viscosity near the wall.

作者信息

Sharan M, Popel A S

机构信息

Centre for Atmospheric Sciences, Indian Institute of Technology, Hauz Khas, New Delhi 110016, India.

出版信息

Biorheology. 2001;38(5-6):415-28.

Abstract

A two-phase model for the flow of blood in narrow tubes is described. The model consists of a central core of suspended erythrocytes and a cell-free layer surrounding the core. It is assumed that the viscosity in the cell-free layer differs from that of plasma as a result of additional dissipation of energy near the wall caused by the red blood cell motion near the cell-free layer. A consistent system of nonlinear equations is solved numerically to estimate: (i) the effective dimensionless viscosity in the cell-free layer (beta), (ii) thickness of the cell-free layer (1-lambda) and (iii) core hematocrit (H(c)). We have taken the variation of apparent viscosity (mu(app)) and tube hematocrit with the tube diameter (D) and the discharge hematocrit (H(D)) from in vitro experimental studies [16]. The thickness of the cell-free layer computed from the model is found to be in agreement with the observations [3,21]. Sensitivity analysis has been carried out to study the behavior of the parameters 1-lambda, beta, H(c), B (bluntness of the velocity profile) and mu(app) with the variation of D and H(D).

摘要

描述了一种用于狭窄血管中血液流动的两相模型。该模型由悬浮红细胞的中央核心和围绕该核心的无细胞层组成。假定由于无细胞层附近红细胞运动导致壁面附近能量的额外耗散,无细胞层中的粘度与血浆粘度不同。通过数值求解一组一致的非线性方程来估计:(i)无细胞层中的有效无量纲粘度(β),(ii)无细胞层的厚度(1-λ),以及(iii)核心血细胞比容(H(c))。我们采用了体外实验研究[16]中表观粘度(μ(app))和血管血细胞比容随血管直径(D)和排出血细胞比容(H(D))的变化关系。从模型计算得到的无细胞层厚度与观测结果[3,21]一致。进行了敏感性分析,以研究参数1-λ、β、H(c)、B(速度分布的钝度)和μ(app)随D和H(D)变化的行为。

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