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Parallel adaptive Cartesian upwind methods for shock-driven multiphysics simulation...

by Ralf Deiterding
Publication Type
Conference Paper
Book Title
CNMAC 2010 - 33th Congresso Nacional de Matemática Aplicada e Computacional
Publication Date
Page Numbers
1048 to 1057
Volume
3
Conference Name
CNMAC 2010 - 33th Congresso Nacional de Matemática Aplicada e Computacional
Conference Location
Águas de Lindóia, Brazil
Conference Sponsor
SBMAC
Conference Date
-

The multiphysics fluid-structure interaction simulation of shock-loaded thin-walled structures requires the dynamic coupling of a shock-capturing flow solver to a solid mechanics solver for large deformations. By combining a Cartesian embedded boundary approach with dynamic mesh adaptation a generic software framework for such flow solvers has been constructed that allows easy exchange of the specific hydrodynamic finite volume upwind scheme and coupling to various explicit finite element solid dynamics solvers. The paper gives an overview of the computational approach and presents first simulations that couple the software to the general purpose solid dynamics code DYNA3D.