Numerical Simulation of Flow Over Two Side-By-Side Circular Cylinders

被引:0
|
作者
Hesam Sarvghad-Moghaddam
Navid Nooredin
Behzad Ghadiri-Dehkordi
机构
[1] Islamic Azad University,Department of Mechanical Engineering, Neyshabur Branch
[2] Tarbiat Modares University,Department of Mechanical Engineering, School of Engineering
来源
Journal of Hydrodynamics | 2011年 / 23卷
关键词
side-by-side cylinders; vortex shedding; flow induced forces; finite volume method; turbulent flow;
D O I
暂无
中图分类号
学科分类号
摘要
In the present paper, the unsteady, viscous, incompressible and 2-D flow around two side-by-side circular cylinders was simulated using a Cartesian-staggered grid finite volume based method. A great-source term technique was employed to identify the solid bodies (cylinders) located in the flow field and boundary conditions were enforced by applying the ghost-cell technique. Finally, the characteristics of the flow around two side-by-side cylinders were comprehensively obtained through several computational simulations. The computational simulations were performed for different transverse gap ratios (1.5 =≤T /D =≤4) in laminar (Re =100, 200 and turbulent (Re =104) regimes, where T and D are the distance between the centers of cylinders and the diameter of cylinders, respectively. The Reynolds number is based on the diameter of cylinders, D. The pressure field and vorticity distributions along with the associated streamlines and the time histories of hydrodynamic forces were also calculated and analyzed for different gap ratios. Generally, different flow patterns were observed as the gap ratio and Reynolds number varied. Accordingly, the hydrodynamic forces showed irregular variations for small gaps while they took a regular pattern at higher spacing ratios.
引用
收藏
页码:792 / 805
页数:13
相关论文
共 50 条
  • [11] Numerical Simulation on Flow Past Two Side-by-Side Inclined Circular Cylinders at Low Reynolds Number
    Liu Cai
    Gao Yang-yang
    Qu Xin-chen
    Wang Bin
    Zhang Bao-feng
    CHINA OCEAN ENGINEERING, 2019, 33 (03) : 344 - 355
  • [12] Numerical Simulation on Flow Past Two Side-by-Side Inclined Circular Cylinders at Low Reynolds Number
    Cai Liu
    Yang-yang Gao
    Xin-chen Qu
    Bin Wang
    Bao-feng Zhang
    China Ocean Engineering, 2019, 33 : 344 - 355
  • [13] Numerical simulation of fluid flow of two rotating side-by-side circular cylinders by Lattice Boltzmann method
    Nemati, Hasan
    Sedighi, Kurosh
    Farhadi, Mousa
    Pirouz, Mohammad Mohammadi
    Fattahi, Ehsan
    International Journal of Computational Fluid Dynamics, 2010, 24 (10) : 83 - 94
  • [14] Numerical Study of Turbulent Flow Over Two Side-by-Side Rotating Cylinders
    Khalil, Md Ibrahim
    Anwar, Shoaib
    Saha, Sumon
    Islam, Md Quamrul
    PROCEEDINGS OF THE 12TH INTERNATIONAL CONFERENCE ON MECHANICAL ENGINEERING (ICME 2017), 2018, 1980
  • [15] STABILITY OF FLOW PAST TWO SIDE-BY-SIDE CIRCULAR CYLINDERS
    Liu, Kun
    Ma, Dong-Jun
    Sun, De-Jun
    Yin, Xie-Yuan
    MODERN PHYSICS LETTERS B, 2009, 23 (03): : 269 - 272
  • [16] Numerical study of unsteady viscoelastic flow past two side-by-side circular cylinders
    Peng, Sai
    Xiong, Yong-Liang
    Xu, Xiao-Yang
    Yu, Peng
    PHYSICS OF FLUIDS, 2020, 32 (08)
  • [17] A large-eddy simulation of two side-by-side circular cylinders in cross flow
    Chen, L
    Tu, JY
    COMPUTATIONAL FLUID DYNAMICS 2002, 2003, : 433 - 438
  • [18] Numerical simulation of flow past two circular cylinders in tandem and side-by-side arrangement at low Reynolds numbers
    Huy Cong Vu
    Jungkyu Ahn
    Jin Hwan Hwang
    KSCE Journal of Civil Engineering, 2016, 20 : 1594 - 1604
  • [19] Numerical simulation of flow past two circular cylinders in tandem and side-by-side arrangement at low Reynolds numbers
    Huy Cong Vu
    Ahn, Jungkyu
    Hwang, Jin Hwan
    KSCE JOURNAL OF CIVIL ENGINEERING, 2016, 20 (04) : 1594 - 1604
  • [20] Lattice-Boltzmann simulation of two-dimensional flow over two vibrating side-by-side circular cylinders
    Xu, Yousheng
    Liu, Yang
    Xia, Yong
    Wu, Fengmin
    PHYSICAL REVIEW E, 2008, 78 (04):