Accelerating the discontinuous Galerkin method for seismic wave propagation simulations using the graphic processing unit (GPU)—single-GPU implementation

Author:

Mu Dawei,Chen Po,Wang Liqiang

Publisher

Elsevier BV

Subject

Computers in Earth Sciences,Information Systems

Reference31 articles.

1. Abdelkhalek, R., Calandra, H., Coulaud, O., Roman, J., Latu, G., 2009. Fast seismic modeling and reverse time migration on a GPU cluster. High Performance Computing & Simulation, 2009. HPCS'09. International Conference on, 36–43.

2. A variational finite element method for source inversion for convective–diffusive transport;Akçelik;Finite Elements in Analysis and Design,2003

3. General purpose molecular dynamics simulations fully implemented on graphics processing units;Anderson;Journal of Computational Physics,2008

4. Back, A., Crestetto, A., Helluy, P., Ratnani, A., Sonnendrücker, E., 2012. Solving Vlasov–Maxwell with iso-geometric analysis, finite elements or discontinuous Galerkin methods on GPU, 7th Workshop on Advanced Computational Electromagnetics.

5. Automatic mesh generation for complex three-dimensional regions using a constrained Delaunay triangulation;Baker;Engineering with Computers,1989

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