Benchmark for Numerical Models of Stented Coronary Bifurcation Flow

被引:1
|
作者
Garcia Carrascal, P. [1 ]
Garcia Garcia, J. [2 ]
Sierra Pallares, J. [1 ]
Castro Ruiz, F. [1 ]
Manuel Martin, F. J. [2 ]
机构
[1] Univ Valladolid, Escuela Ingn Ind, Dept Ingn Energet & Fluidomecan, Paseo Cauce 59, E-47011 Valladolid, Spain
[2] Univ Politecn Madrid, Escuela Tecn Super Ind, Dept Ingn Energet, C Jose Gutierrez Abascal 2, E-28006 Madrid, Spain
关键词
WALL SHEAR-STRESS; FLUID-DYNAMICS; BOUNDARY-CONDITIONS; CAROTID-ARTERY; IN-VITRO; MECHANICS; DESIGN; IMPACT;
D O I
10.1115/1.4039676
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
In-stent restenosis ails many patients who have undergone stenting. When the stented artery is a bifurcation, the intervention is particularly critical because of the complex stent geometry involved in these structures. Computational fluid dynamics (CFD) has been shown to be an effective approach when modeling blood flow behavior and understanding the mechanisms that underlie in-stent restenosis. However, these CFD models require validation through experimental data in order to be reliable. It is with this purpose in mind that we performed particle image velocimetry (NV) measurements of velocity fields within flows through a simplified coronary bifurcation. Although the flow in this simplified bifurcation differs from the actual blood flow, it emulates the main fluid dynamic mechanisms found in hemodynamic flow. Experimental measurements were performed for several stenting techniques in both steady and unsteady flow conditions. The test conditions were strictly controlled, and uncertainty was accurately predicted. The results obtained in this research represent readily accessible, easy to emulate, detailed velocity fields and geometry, and they have been successfully used to validate our numerical model. These data can be used as a benchmark for further development of numerical CFD modeling in terms of comparison of the main flow pattern characteristics.
引用
收藏
页数:10
相关论文
共 50 条
  • [11] Numerical simulations of blood flow in arterial bifurcation models
    Taewon Seo
    Korea-Australia Rheology Journal, 2013, 25 : 153 - 161
  • [12] PRESSURE AND FLOW IN 2 DIMENSIONAL NUMERICAL BIFURCATION MODELS
    WILLE, SO
    APPLIED MATHEMATICAL MODELLING, 1980, 4 (05) : 351 - 356
  • [14] Numerical simulation of restenosis in a stented coronary artery
    The Warsaw University of Technology, Institute of Aeronautics and Applied Mechanics, Poland
    World Acad. Sci. Eng. Technol., 2009, (42-46):
  • [15] Numerical Study of Hemodynamics at Coronary Bifurcation with and without Swirling Flow
    Sun, Anqiang
    Fan, Yubo
    Deng, Xiaoyan
    6TH WORLD CONGRESS OF BIOMECHANICS (WCB 2010), PTS 1-3, 2010, 31 : 1428 - 1430
  • [16] Numerical study of blood flow in stented arteries: comparison of stent designs and viscosity models
    Lopes, D.
    Puga, H.
    Teixeira, J.
    2019 6TH IEEE PORTUGUESE MEETING IN BIOENGINEERING (ENBENG), 2019,
  • [17] Fluid Dynamics in Simplified pre and post-Stented Coronary Bifurcation
    Totorean, Alin-Florin
    Hudrea, Iuliana-Claudia
    Sandor, Bernad
    ACOUSTICS AND VIBRATION OF MECHANICAL STRUCTURES (AVMS-2017), 2018, 198 : 173 - 180
  • [18] Numerical simulation of the urine flow in a stented ureter
    Tong, Jimmy C. K.
    Sparrow, Ephraim M.
    Abraham, John P.
    JOURNAL OF BIOMECHANICAL ENGINEERING-TRANSACTIONS OF THE ASME, 2007, 129 (02): : 187 - 192
  • [19] Numerical of the urine flow in a stented ureter with no peristalsis
    Kim, Hyoung-Ho
    Choi, Young Ho
    Lee, Seung Bae
    Baba, Yasutaka
    Kim, Kyung-Wuk
    Suh, Sang-Ho
    BIO-MEDICAL MATERIALS AND ENGINEERING, 2015, 26 : S215 - S223
  • [20] A steady flow analysis on the stented and non-stented sidewall aneurysm models
    Yu, SCM
    Zhao, JB
    MEDICAL ENGINEERING & PHYSICS, 1999, 21 (03) : 133 - 141