Applied Mathematics and Mechanics (English Edition) ›› 1983, Vol. 4 ›› Issue (5): 779-789.

• Articles • 上一篇    下一篇

A HYDRODYNAMIC DESIGN OF THE FLOODING PORT OF CELL SEPARATOR BLOOD PROCESSOR AND THE PHYSICAL PARAMETERS AFFECTING THE BLOOD SEPARATION

朱月锐, 张效慈   

  1. Department of Engineering Mechanics, Shanghai Chiao-Tung University
  • 收稿日期:1982-06-08 出版日期:1983-09-18 发布日期:1983-09-18

A HYDRODYNAMIC DESIGN OF THE FLOODING PORT OF CELL SEPARATOR BLOOD PROCESSOR AND THE PHYSICAL PARAMETERS AFFECTING THE BLOOD SEPARATION

Zhu Yueh-rui, Zhang Xiao-ci   

  1. Department of Engineering Mechanics, Shanghai Chiao-Tung University
  • Received:1982-06-08 Online:1983-09-18 Published:1983-09-18

摘要: On the basis of "A Boundary Perturbation Solution for the Hydrodynamic Stability of Blood Flow-in a Cone-Type Blood Processor", this paper analyses the phenomenon of the stratified blood compositions being mixed again. This phenomenon occurs in the process of trial-producing with the blood processor. This paper puts forward a reasonable shape of the flooding port and analyses the various physical parameters affecting the blood separation.These theoretical analyses are verified by the results of the laboratory experiments which were made by Shanghai Medical Instruments Institute.

关键词: unit cell model, finite element method, MMCs, creep behavior, breakage of fiber, statistic model, fiber parameters and distribution

Abstract: On the basis of "A Boundary Perturbation Solution for the Hydrodynamic Stability of Blood Flow-in a Cone-Type Blood Processor", this paper analyses the phenomenon of the stratified blood compositions being mixed again. This phenomenon occurs in the process of trial-producing with the blood processor. This paper puts forward a reasonable shape of the flooding port and analyses the various physical parameters affecting the blood separation.These theoretical analyses are verified by the results of the laboratory experiments which were made by Shanghai Medical Instruments Institute.

Key words: unit cell model, finite element method, MMCs, creep behavior, breakage of fiber, statistic model, fiber parameters and distribution

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