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Discontinuous Galerkin method for frictional interface dynamics
Timothy J. Truster
,
Arif Masud
Civil and Environmental Engineering
Aerospace Engineering
National Center for Supercomputing Applications (NCSA)
Biomedical and Translational Sciences
Mechanical Science and Engineering
Center for South Asian and Middle Eastern Studies
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Keyphrases
Interface Dynamics
100%
Discontinuous Galerkin Method
100%
Frictional Interface
100%
Contact Interface
66%
Numerical Flux
66%
Numerical Results
33%
Friction
33%
Stress Field
33%
Physical Response
33%
Quasi-static
33%
Small Deformation
33%
Non-matching Meshes
33%
Friction Model
33%
Transient Problems
33%
Geological Faults
33%
Nonsmooth
33%
Variational multiscale Method
33%
Bolted Lap Joint
33%
Contact Problem
33%
Mesh Materials
33%
Artificial Features
33%
Primal Formulation
33%
Stratified Materials
33%
Static Context
33%
Engineering
Transients
100%
Discontinuous Galerkin
100%
Multiscale
33%
Stress Field
33%
Small Deformation
33%
Friction Model
33%
Galerkin Formulation
33%
Lap Joint
33%
Contact Problem
33%
Earth and Planetary Sciences
Geological Fault
100%
Galerkin Method
100%
Lap Joint
100%
Material Science
Stress Field
100%
Small Deformation
100%