Shock capturing with entropy-based artificial viscosity for staggered grid discontinuous spectral element method

From MaRDI portal
Publication:1641436

DOI10.1016/j.compfluid.2014.01.022zbMath1391.76506OpenAlexW1964184823MaRDI QIDQ1641436

Farzad Mashayek, Hesam Abbassi, Gustaaf B. Jacobs

Publication date: 19 June 2018

Published in: Computers and Fluids (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1016/j.compfluid.2014.01.022




Related Items

Flux reconstruction using Jacobi correction functions in discontinuous spectral element methodA data-driven high order sub-cell artificial viscosity for the discontinuous Galerkin spectral element methodOscillation-free nodal discontinuous spectral element method for the simulation of compressible multicomponent flowsA Space-Time Discontinuous Galerkin Spectral Element Method for Nonlinear Hyperbolic ProblemsA class of new high-order finite-volume TENO schemes for hyperbolic conservation laws with unstructured meshesNew multi-implicit space-time spectral element methods for advection-diffusion-reaction problemsAn adaptive viscosity regularization approach for the numerical solution of conservation laws: application to finite element methodsImplicit hybridized discontinuous Galerkin methods for compressible magnetohydrodynamicsDiscontinuous Galerkin spectral element method for shock capturing with summation by parts propertiesExplicit discontinuous spectral element method with entropy generation based artificial viscosity for shocked viscous flowsA Study of Several Artificial Viscosity Models within the Discontinuous Galerkin FrameworkA hierarchical space-time spectral element and moment-of-fluid method for improved capturing of vortical structures in incompressible multi-phase/multi-material flowsThe flux reconstruction method with Lax-Wendroff type temporal discretization for hyperbolic conservation lawsControlling oscillations in high-order discontinuous Galerkin schemes using artificial viscosity tuned by neural networks



Cites Work