Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5012008 | Computers & Fluids | 2017 | 30 Pages |
Abstract
A parallel formulation of a Jacobian-free all Mach numbers solver on unstructured hybrid meshes is proposed. The Finite Element formulation is edge-based with flow stabilization obtained with either AUSM+-up or Roe scheme. The linear system is solved via a Jacobian-Free Newton-Krylov (JFNK) method with Lower-Upper Symmetric Gauss-Seidel (LU-SGS) used as matrix-free preconditioner. The traditional formulation of LU-SGS is enriched by including the contributions from viscous fluxes and boundary conditions. The accuracy and efficiency of the proposed approach are demonstrated over cases ranging from low to high Mach numbers: subsonic flow over the Trap Wing, transonic flow over the ONERA M6 wing, supersonic flow over a sphere, supersonic flow over a waverider and finally hypersonic flow over a sphere.
Related Topics
Physical Sciences and Engineering
Engineering
Computational Mechanics
Authors
Song Gao, Wagdi G. Habashi, Dario Isola, Guido S. Baruzzi, Marco Fossati,