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CFD在人工器官设计中的应用 被引量:2

Application of CFD in Artificial Organs Design
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摘要 计算流体力学 (computationalfluiddynamics,CFD)是一种基于计算机并行技术的数值模拟工具 ,它能预测人工器官内部的流体流动和传质现象 ,并能提供可视化结果 ,近来常用于辅助人工器官的设计和性能优化。本文从Navier Stokes方程组出发 ,阐述了CFD的原理、方法和特点 ,分析了它在人工器官设计中的应用现状和重要作用。 As a numerical simulation tool based on parallel computational technology,CFD can predict the flow and mass transport phenomena in artificial organs and provide visualized results ,which is assisting the design and optimizing their performance for artificial organs recently. In this paper, by means of the Navier-Stokes equation groups, the theory ,method and characters of CFD are presented in detail,and its application and important role in artificial organ design are analysed.
出处 《北京生物医学工程》 2005年第1期60-63,共4页 Beijing Biomedical Engineering
关键词 人工器官 辅助 重要作用 分析 预测 应用现状 现象 计算机 性能优化 并行技术 CFD numerical simulation design for artificial organs
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参考文献10

  • 1Verdonck Pas. The role of computational fluid dynamics for artificial organ design. Artificial Organs, 2002, 26 (7): 569-570.
  • 2Eloot S, Wachter DD, Tricht IV, et al. Computational flow modeling in hollow-fiber dialyzers. artificial organs, 2002, 26(7): 590- 599.
  • 3Chan WK, Wong YW, Yu SCM, et al. A computational study of the effects of inlet guide vanes on the performance of a centrifugal blood pump. Artificial Organs, 2002, 26 (6): 534-542.
  • 4Krueger UL, Zanow J, Scholz H. Computational fluid dynamics and vascular acess. Artificial Organs, 2002, 26 (7): 571 - 575.
  • 5Frank Andreas O, Walsh Peter W, Moore Jr James E.Computational fluid dynamics and stent design. Artificial Organs,2002, 26 (7): 614- 621.
  • 6Wachter DD, Verdock P. Numerical calculation of hemolysis levels in peripheral hemodialysis cannulas. Artificial Organs, 2002, 26(7): 576 - 582.
  • 7Apel J, Neudel F, and Reul H. Computational fluid dynamics and experimental validation of a micreaxial blood pump. ASAIO, 2001,47 (5): 552-557.
  • 8Nishida M, Asztlos B, Yamane TT, et al. Flow visualization study to improve hemocompatibility of a centrifugal blood Pump.Artificial Organs, 1999, 23 (8): 697-703.
  • 9SukumarR, Athavale MM, Makhijani VB, et al. Application of computational fluid dynamics techniques to blood pumps. Artificial Organs, 1996, 20 (6): 529-533.
  • 10Nishida M, Asztalos B, Yamane T, et al. Flow visualization study to improve hemocompatibility of a centrifugal blood Pump. Artificial Organs, 1999, 23 (8): 697 - 703.

同被引文献16

  • 1赵春章,张锡文,白净.可植入式微型轴流血泵流场的数值模拟[J].机械工程学报,2005,41(7):19-23. 被引量:7
  • 2蔺嫦燕,侯晓彤,吴广辉,李冰一,王景,潘红九.XZ-Ⅱ型轴流血泵的流场分析[J].北京生物医学工程,2005,24(6):405-409. 被引量:11
  • 3侯晓彤,蔺嫦燕,吴广辉,李冰一.计算流体力学分析评价XZ-Ⅱ型血泵的血液破坏[J].北京生物医学工程,2005,24(6):452-453. 被引量:6
  • 4姜华,席光.心脏泵的研究进展[J].医疗卫生装备,2006,27(8):33-35. 被引量:11
  • 5Z. J. Wu, ect.. Investigation of fluid dynamics within a miniature mixed flow blood pump[J]. Experiments in Fluids, 2001,31:615-629.
  • 6Cheung-Hwa Hsu. Flow study on a newly developed impeller for a left ventricular assist device [J]. J. Artif. Organs,2003,6: 92 - 100.
  • 7S. C. M. Yu, etc.. The flow patterns within the impeller passages of a centrifugal bloat pump model[J]. Medical Engineering & physics,2000,22:383 - 391.
  • 8Song XW,Wood HG.基于计算流体力学的第四代连续流动式心室辅助装置研究[J].美国机械师工程学会传热学会刊,2004,126(4):180-187.
  • 9陶文铨.计算流体力学[M].北京:清华大学出版社,1984.
  • 10Yamane T,Miyamoto Y,Tajima K.基于计算流体力学的Sun离心式血泵的流量可视化分析的比较研究.人造器官,2004,28:458-466.

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