Unsteady analysis of separated aerodynamic flows using an unstructured multigrid algorithm
Author(s) -
Juan Pelaez,
Dimitri J. Mavriplis,
Dimitri Kandil
Publication year - 2001
Publication title -
38th aerospace sciences meeting and exhibit
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2001-860
Subject(s) - aerodynamics , multigrid method , computer science , unstructured grid , computational fluid dynamics , algorithm , mechanics , physics , mathematics , partial differential equation , mathematical analysis
An implicit method for the computation of unsteady flows on unstructured grids is presented. The resulting nonlinear system of equations is solved at each time step using an agglomeration multigrid procedure. The method allows for arbitrarily large time steps and is efficient in terms of computational effort and storage. Validation of the code using a one-equation turbulence model is performed for the well-known case of flow over a cylinder. A Detached Eddy Simulation model is also implemented and its performance compared to the one equation Spalart-Allmaras Reynolds Averaged Navier-Stokes (RANS) turbulence model. Validation cases using DES and RANS include flow over a sphere and flow over a NACA 0012 wing including massive stall regimes. The project was driven by the ultimate goal of computing separated flows of aerodynamic interest, such as massive stall or flows over complex non-streamlined geometries.
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