Numerical Modeling of the Flow around a Cylinder using FEATool Multiphysics

被引:0
作者
Ali, Binahi M. A. Said [1 ]
Suleimany, Jehan M. Sheikh [1 ]
Ibrahim, Safa S. [2 ]
机构
[1] Salahaddin Univ, Coll Engn, Dept Water Resources Engn, Erbil, Iraq
[2] Univ Zakho, Fac Sci, Chem Dept, Duhok, Iraq
关键词
drag coefficient; cylinder; FEATool Multiphysics in MATLAB (R2019b); CIRCULAR-CYLINDER; SIMULATION;
D O I
10.48084/etasr.6053
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The current study examines the numerical analysis of the laminar flow around a cylinder at various Reynolds numbers (0.1, 1.1, 20, 26, 50, 100, and 195). The research found that a steady state can exist for Reynolds number values of 0.1, 1.1, 20, and 26. However, the flow pattern becomes unstable at Reynolds numbers 50, 100, and 195, leading to the development of the Karman vortex street. The FEATool Multiphysics software in MATLAB (R2019b) was utilized to numerically solve the steady 2D Navier-Stokes equation. The study compared the estimated drag coefficient to previous experimental and analytical studies in Abaqus/CFD. The lift and pressure coefficients were also calculated, and their results were found to be in strong agreement with earlier investigations in terms of predicting pressure and velocity distribution. The analysis provided insight into how the flow field changes with increasing Reynolds numbers.
引用
收藏
页码:11290 / 11297
页数:8
相关论文
共 33 条
  • [1] Ageorges V., 2019, 24 FRENCH C MECH, P1
  • [2] Flow characteristics of two in-phase oscillating cylinders in side-by-side arrangement
    Bao, Yan
    Zhou, Dai
    Tu, Jiahuang
    [J]. COMPUTERS & FLUIDS, 2013, 71 : 124 - 145
  • [3] Baracu T., 2019, SCI B NAV ACAD, V22, P256, DOI [10.21279/1454-864X-19-I2-031, DOI 10.21279/1454-864X-19-I2-031]
  • [4] NUMERICAL STUDY AND PHYSICAL ANALYSIS OF THE PRESSURE AND VELOCITY-FIELDS IN THE NEAR WAKE OF A CIRCULAR-CYLINDER
    BRAZA, M
    CHASSAING, P
    MINH, HH
    [J]. JOURNAL OF FLUID MECHANICS, 1986, 165 : 79 - 130
  • [5] Numerical simulation of the flow around a circular cylinder at high Reynolds numbers
    Catalano, P
    Wang, M
    Iaccarino, G
    Moin, P
    [J]. INTERNATIONAL JOURNAL OF HEAT AND FLUID FLOW, 2003, 24 (04) : 463 - 469
  • [6] Chakraborty N., 2021, SIMULATION FLOW CYLI
  • [7] Clift R., 2005, BUBBLES DROPS PARTIC
  • [8] Simulation of incompressible viscous flows past a circular cylinder by hybrid FD scheme and meshless least square-based finite difference method
    Ding, H
    Shu, C
    Yeo, KS
    Xu, D
    [J]. COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING, 2004, 193 (9-11) : 727 - 744
  • [9] Dragan V, 2017, ENG TECHNOL APPL SCI, V7, P1387
  • [10] Farhoud R., 2012, J CIVIL ENG URBANISM, V2, P63