An Eulerian Immersed Boundary Method for flow simulations over stationary and moving rigid bodies

被引:0
|
作者
Corbalan Góis E.R. [1 ]
De Souza L.F. [2 ]
机构
[1] School of Engineering, São Carlos, University of São Paulo, 13566-590 São Carlos, SP
[2] Mathematics and Computing Sciences Institute, University of São Paulo, 13560-970 São Carlos, SP
关键词
High order finite difference schemes; Immersed Boundary Method; Lock-in phenomenon;
D O I
10.1590/s1678-58782010000500007
中图分类号
学科分类号
摘要
The fluid flow over bodies with complex geometry has been the subject of research of many scientists and widely explored experimentally and numerically. The present study proposes an Eulerian Immersed Boundary Method for flows simulations over stationary or moving rigid bodies. The proposed method allows the use of Cartesians Meshes. Here, two-dimensional simulations of fluid flow over stationary and oscillating circular cylinders were used for verification and validation. Four different cases were explored: the flow over a stationary cylinder, the flow over a cylinder oscillating in the flow direction, the flow over a cylinder oscillating in the normal flow direction, and a cylinder with angular oscillation. The time integration was carried out by a classical 4th order Runge-Kutta scheme, with a time step of the same order of distance between two consecutive points in x direction. High-order compact finite difference schemes were used to calculate spatial derivatives. The drag and lift coefficients, the lock-in phenomenon and vorticity contour plots were used for the verification and validation of the proposed method. The extension of the current method allowing the study of a body with different geometry and three-dimensional simulations is straightforward. The results obtained show a good agreement with both numerical and experimental results, encouraging the use of the proposed method. Copyright © 2010 by ABCM.
引用
收藏
页码:477 / 484
页数:7
相关论文
共 50 条
  • [1] An Eulerian Immersed Boundary Method for Flow Simulations over Stationary and Moving Rigid Bodies
    Corbalan Gois, Evelise R.
    de Souza, Leandro F.
    JOURNAL OF THE BRAZILIAN SOCIETY OF MECHANICAL SCIENCES AND ENGINEERING, 2010, 32 (05) : 477 - 484
  • [2] AN IMMERSED BOUNDARY METHOD FOR RIGID BODIES
    Kallemov, Bakytzhan
    Bhalla, Amneet Pal Singh
    Griffith, Boyce E.
    Donev, Aleksandar
    COMMUNICATIONS IN APPLIED MATHEMATICS AND COMPUTATIONAL SCIENCE, 2016, 11 (01) : 79 - 141
  • [3] A Variable Correction-Based Immersed Boundary Method for Compressible Flows over Stationary and Moving Bodies
    Wang, Junjie
    Li, Yadong
    Wu, Jie
    Qiu, Fusheng
    ADVANCES IN APPLIED MATHEMATICS AND MECHANICS, 2020, 12 (02) : 545 - 563
  • [4] A weighted shifted boundary method for immersed moving boundary simulations of Stokes' flow
    Xu, Danjie
    Colomes, Oriol
    Main, Alex
    Li, Kangan
    Atallah, Nabil M.
    Abboud, Nabil
    Scovazzi, Guglielmo
    JOURNAL OF COMPUTATIONAL PHYSICS, 2024, 510
  • [5] An efficient immersed boundary method for fluid flow simulations with moving boundaries
    Lo, D. C.
    Lee, C-P
    Lin, I-F
    APPLIED MATHEMATICS AND COMPUTATION, 2018, 328 : 312 - 337
  • [6] Application of immersed boundary method for flow over stationary and oscillating cylinders
    Lee, Dae Sung
    Ha, Man Yeong
    Kim, Sung Jin
    Yoon, Hyun Sik
    JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY, 2006, 20 (06) : 849 - 863
  • [7] Application of Immersed Boundary Method for flow over stationary and oscillating cylinders
    Dae Sung Lee
    Man Yeong Ha
    Sung Jin Kim
    Hyun Sik Yoon
    Journal of Mechanical Science and Technology, 2006, 20 : 849 - 863
  • [8] Benchmark simulations of flow past rigid bodies using an open-source, sharp interface immersed boundary method
    Senturk U.
    Brunner D.
    Jasak H.
    Herzog N.
    Rowley C.W.
    Smits A.J.
    Progress in Computational Fluid Dynamics, 2019, 19 (04): : 205 - 219
  • [9] Benchmark simulations of flow past rigid bodies using an open-source, sharp interface immersed boundary method
    Senturk, Utku
    Brunner, Daniel
    Jasak, Hrvoje
    Herzog, Nicoleta
    Rowley, Clarence W.
    Smits, Alexander J.
    PROGRESS IN COMPUTATIONAL FLUID DYNAMICS, 2019, 19 (04): : 205 - 219
  • [10] A Simple Immersed Boundary Method for Compressible Flow Simulation around a Stationary and Moving Sphere
    Mizuno, Yusuke
    Takahashi, Shun
    Nonomura, Taku
    Nagata, Takayuki
    Fukuda, Kota
    MATHEMATICAL PROBLEMS IN ENGINEERING, 2015, 2015