An entropy-stable smooth particle hydrodynamics algorithm for large strain thermo-elasticity
DOI10.1016/j.cma.2021.113736zbMath1506.74011OpenAlexW3135640968MaRDI QIDQ2021883
Ataollah Ghavamian, Thomas Heuzé, Chun Hean Lee, Antonio J. Gil, Javier Bonet, Laurent Stainier
Publication date: 27 April 2021
Published in: Computer Methods in Applied Mechanics and Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.cma.2021.113736
Thermodynamics in solid mechanics (74A15) Probabilistic methods, particle methods, etc. for initial value and initial-boundary value problems involving PDEs (65M75) Stochastic and other probabilistic methods applied to problems in solid mechanics (74S60)
Related Items (7)
Cites Work
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- A vertex centred finite volume Jameson-Schmidt-Turkel (JST) algorithm for a mixed conservation formulation in solid dynamics
- Analysis of adiabatic shear bands in elasto-thermo-viscoplastic materials by modified smoothed-particle hydrodynamics (MSPH) method
- Development of a stabilised Petrov-Galerkin formulation for conservation laws in Lagrangian fast solid dynamics
- Smoothed particle hydrodynamics (SPH): an overview and recent developments
- Associative coupled thermoplasticity at finite strains: Formulation, numerical analysis and implementation
- SPH for high velocity impact computations
- Smoothed particle hydrodynamics: Some recent improvements and applications
- Introduction to the thermodynamics of solids.
- A stabilised Petrov-Galerkin formulation for linear tetrahedral elements in compressible, nearly incompressible and truly incompressible fast dynamics
- A first order hyperbolic framework for large strain computational solid dynamics. I: Total Lagrangian isothermal elasticity
- A computational framework for polyconvex large strain elasticity
- An hourglass control algorithm for Lagrangian smooth particle hydrodynamics
- Quasilinear hyperbolic systems with involutions
- Entropic thermoelasticity at finite strains. Aspects of the formulation and numerical implementation
- Variational and momentum preservation aspects of smooth particle hydrodynamic formulations
- SPH without a tensile stability
- Reformulation of elasticity theory for discontinuities and long-range forces
- An upwind cell centred total Lagrangian finite volume algorithm for nearly incompressible explicit fast solid dynamic applications
- Thermomechanical total Lagrangian SPH formulation for solid mechanics in large deformation problems
- A total Lagrangian upwind smooth particle hydrodynamics algorithm for large strain explicit solid dynamics
- Peridynamic Petrov-Galerkin method: a generalization of the peridynamic theory of correspondence materials
- A first order hyperbolic framework for large strain computational solid dynamics. III: Thermo-elasticity
- A new energy-momentum time integration scheme for non-linear thermo-mechanics
- A total-Lagrangian material point method for solid mechanics problems involving large deformations
- Mixed peridynamic formulations for compressible and incompressible finite deformations
- A new Jameson-Schmidt-Turkel smooth particle hydrodynamics algorithm for large strain explicit fast dynamics
- A variationally consistent streamline upwind Petrov-Galerkin smooth particle hydrodynamics algorithm for large strain solid dynamics
- An upwind vertex centred finite volume solver for Lagrangian solid dynamics
- A first order hyperbolic framework for large strain computational solid dynamics. II: Total Lagrangian compressible, nearly incompressible and truly incompressible elasticity
- Restoring particle consistency in smoothed particle hydrodynamics
- Peridynamic Theory and Its Applications
- A uniform nodal strain tetrahedron with isochoric stabilization
- Stabilized updated Lagrangian corrected SPH for explicit dynamic problems
- Dynamic refinement and boundary contact forces in SPH with applications in fluid flow problems
- Meshfree and finite element nodal integration methods
- SYMMETRIC-HYPERBOLIC EQUATIONS OF MOTION FOR A HYPERELASTIC MATERIAL
- A new unconditionally stable fractional step method for non‐linear coupled thermomechanical problems
- Remarks on tension instability of Eulerian and Lagrangian corrected smooth particle hydrodynamics (CSPH) methods
- An approach for tension instability in smoothed particle hydrodynamics (SPH)
- Node-based uniform strain elements for three-node triangular and four-node tetrahedral meshes
- Normalized SPH with stress points
- Dual-Support Smoothed Particle Hydrodynamics for Elastic Mechanics
- Peridynamics review
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