An efficient ADER-DG local time stepping scheme for 3D HPC simulation of seismic waves in poroelastic media
DOI10.1016/j.jcp.2021.110886OpenAlexW3193319350MaRDI QIDQ2133731
David Gregor, Martin Galis, Michael Bader, Sebastian Wolf, Carsten Uphoff, Peter Moczo, Alice-Agnes Gabriel
Publication date: 5 May 2022
Published in: Journal of Computational Physics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/2108.10565
wave propagationdiscontinuous Galerkincomputational seismologyporoelasticityhigh performance computing (HPC)ADER-DG
Numerical methods for partial differential equations, initial value and time-dependent initial-boundary value problems (65Mxx) Hyperbolic equations and hyperbolic systems (35Lxx) Waves in solid mechanics (74Jxx)
Uses Software
Cites Work
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- Tensor Decompositions and Applications
- Non-conforming high order approximations of the elastodynamics equation
- Explicit one-step time discretizations for discontinuous Galerkin and finite volume schemes based on local predictors
- A high-order discontinuous Galerkin method for wave propagation through coupled elastic-acoustic media
- Explicit local time-stepping methods for Maxwell's equations
- ADER: Arbitrary high-order Godunov approach
- A discontinuous Galerkin method for poroelastic wave propagation: the two-dimensional case
- Nodal high-order methods on unstructured grids. I: Time-domain solution of Maxwell's equations
- Full-anisotropic poroelastic wave modeling: a discontinuous Galerkin algorithm with a generalized wave impedance
- A new discontinuous Galerkin method for elastic waves with physically motivated numerical fluxes
- A nodal discontinuous Galerkin finite element method for the poroelastic wave equation
- Energy balance and fundamental relations in dynamic anisotropic poro-viscoelasticity
- SPEED: SPectral Elements in Elastodynamics with Discontinuous Galerkin: a non-conforming approach for 3D multi-scale problems
- Mechanics of Deformation and Acoustic Propagation in Porous Media
- Energy Conserving Explicit Local Time Stepping for Second-Order Wave Equations
- Riemann Solvers and Numerical Methods for Fluid Dynamics
- TVB Runge-Kutta Local Projection Discontinuous Galerkin Finite Element Method for Conservation Laws II: General Framework
- Finite Volume Methods for Hyperbolic Problems
- Yet Another Tensor Toolbox for Discontinuous Galerkin Methods and Other Applications
- Optimal Discontinuous Galerkin Methods for Wave Propagation
- Discontinuous Galerkin finite element methods for dynamic linear solid viscoelasticity problems
- An updated set of basic linear algebra subprograms (BLAS)
- A High-Order Discontinuous Galerkin Method for Viscoelastic Wave Propagation
- ExaHyPE: an engine for parallel dynamically adaptive simulations of wave problems
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