NUMERICAL SIMULATION OF UNSTEADY LID DRIVEN CAVITY FLOW WITH MOVING BOUNDARIES USING CMSIP

被引:0
|
作者
Akyuzlu, K. M. [1 ]
Antoniou, A. [1 ]
机构
[1] Univ New Orleans, Dept Mech Engn, New Orleans, LA 70148 USA
关键词
unsteady compressible flow; lid driven cavity flow; moving boundary; CMSIP; NAVIER-STOKES EQUATIONS; VISCOUS-FLOW;
D O I
暂无
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A two-dimensional, mathematical model is adopted to investigate the development of circulation patterns for compressible lid driven flows inside a rectangular cavity where the bottom of the cavity is free to move at a specified speed. A time and space dependent transformation is applied to the governing equations to obtain a rigid (non-moving) solution domain. The transformed equations are discretized for a uniform and orthogonal computational mesh using second order in space and first order in time finite difference schemes. The resulting nonlinear equations are then linearized using Newton's linearization method. Finally, the set of algebraic equations that result from this process are put into a matrix form and solved using the Coupled Modified Strongly Implicit Procedure (CMSIP). Numerical experiments are carried out for various Reynolds numbers to verify the accuracy of the solution algorithm. Then the numerical simulations of lid driven flow inside the cavity is carried out for the unsteady case where the aspect ratio of the cavity is changed from 1 to 1.5 at a constant speed. It is concluded that the proposed model is successful in predicting the unsteady characteristics of the primary vortex and the secondary vortices inside a cavity with moving bottom.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] Mesh adaptation for simulation of unsteady flow with moving immersed boundaries
    Zhou, C. H.
    Ai, J. Q.
    INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN FLUIDS, 2013, 72 (04) : 453 - 477
  • [22] Digital physics simulation of lid-driven cavity flow
    Teixeira, CM
    INTERNATIONAL JOURNAL OF MODERN PHYSICS C, 1997, 8 (04): : 685 - 696
  • [23] Numerical Simulation of High Reynolds Number Flow Structure in a Lid-Driven Cavity Using MRT-LES
    Jahanshaloo, Leila
    Sidik, Nor Azwadi Che
    Mechanical and Materials Engineering, 2014, 554 : 665 - 669
  • [24] Numerical simulation of viscous flow in a 3D lid-driven cavity using lattice Boltzmann method
    Dong, Dibo
    Shi, Shengjun
    Hou, Zhenxiu
    Chen, Weishan
    ADVANCES IN COMPUTATIONAL MODELING AND SIMULATION, PTS 1 AND 2, 2014, 444-445 : 395 - +
  • [25] Numerical Simulation of Unsteady Channel Flow with a Moving Indentation
    Sonawane, C. R.
    More, Y. B.
    Pandey, Anand
    XII INTERNATIONAL CONFERENCE ON COMPUTATIONAL HEAT, MASS AND MOMENTUM TRANSFER (ICCHMT 2019), 2019, 128
  • [26] Numerical approximations for flow of viscoplastic fluids in a lid-driven cavity
    dos Santos, Daniel Dall'Onder
    Frey, Sergio
    Naccache, Monica F.
    de Souza Mendes, P. R.
    JOURNAL OF NON-NEWTONIAN FLUID MECHANICS, 2011, 166 (12-13) : 667 - 679
  • [27] Flow-field in a lid driven cavity with slip boundaries: An investigation using lattice Boltzmann modelling
    Samanta, Runa
    Sultan, Md
    Chattopadhyay, Himadri
    CHEMICAL ENGINEERING SCIENCE, 2023, 273
  • [28] Numerical Investigation of Rotating Lid-driven Cubical Cavity Flow
    Kumar, Jitendra
    Panchapakesan, N. R.
    DEFENCE SCIENCE JOURNAL, 2017, 67 (03) : 233 - 239
  • [29] Numerical stability analysis and flow simulation of lid-driven cavity subjected to high magnetic field
    Marioni, L.
    Bay, F.
    Hachem, E.
    PHYSICS OF FLUIDS, 2016, 28 (05)
  • [30] Comparative Numerical Simulation of Lid-Driven Cavity Flow Problem With Pressure Term Handling Methods
    Shobha, A.
    Lakshmi, C. Venkata
    Venkatadri, K.
    Prasad, V. Ramachandra
    INTERNATIONAL CONFERENCE ON MATHEMATICAL SCIENCES AND APPLICATIONS (ICMSA-2019), 2020, 2246