Velocity profiles of slow blood flow in a narrow tube | |
J. Y. Chen; Z. Q. Huang; F. Y. Zhuang; H. Zhang | |
1998 | |
Source Publication | Communications in Theoretical Physics
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ISSN | 0253-6102 |
Volume | 29Issue:3Pages:463-468 |
Abstract | A fractal model is introduced into the slow blood motion. When blood flows slowly in a narrow tube, red cell aggregation results in the formation of an approximately cylindrical core of red cells. By introducing the fractal model and using the power law relation between area fraction phi and distance from tube axis rho, rigorous velocity profiles of the fluid in and outside the aggregated core and of the core itself are obtained analytically for different fractal dimensions. It shows a blunted velocity distribution for a relatively large fractal dimension (D similar to 2), which can be observed in normal blood; a pathological velocity profile for moderate dimension (D = I), which is similar to the Segre-Silberberg effect; and a parabolic profile for negligible red cell concentration (D = 0), which likes in the Poiseuille flow. |
description.department | beijing normal univ, inst low energy nucl phys, beijing 100875, peoples r china. china japan friendship hosp, res inst, biorheol dept, beijing 100029, peoples r china. shenyang teachers coll, shenyang 110031, peoples r china.;chen, jy (reprint author), acad sinica, inst met res, lab 5, shenyang 110015, peoples r china |
Keyword | Slow Blood Motion Fractal Model |
URL | 查看原文 |
Document Type | 期刊论文 |
Identifier | http://ir.imr.ac.cn/handle/321006/37637 |
Collection | 中国科学院金属研究所 |
Recommended Citation GB/T 7714 | J. Y. Chen,Z. Q. Huang,F. Y. Zhuang,et al. Velocity profiles of slow blood flow in a narrow tube[J]. Communications in Theoretical Physics,1998,29(3):463-468. |
APA | J. Y. Chen,Z. Q. Huang,F. Y. Zhuang,&H. Zhang.(1998).Velocity profiles of slow blood flow in a narrow tube.Communications in Theoretical Physics,29(3),463-468. |
MLA | J. Y. Chen,et al."Velocity profiles of slow blood flow in a narrow tube".Communications in Theoretical Physics 29.3(1998):463-468. |
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