Energy-momentum-entropy consistent numerical methods for large-strain thermoelasticity relying on the GENERIC formalism
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Publication:6553861
DOI10.1002/nme.6089zbMath1548.74022MaRDI QIDQ6553861
Publication date: 11 June 2024
Published in: International Journal for Numerical Methods in Engineering (Search for Journal in Brave)
Cites Work
- Unnamed Item
- Structure-preserving integrators in nonlinear structural dynamics and flexible multibody dynamics
- Formulation of thermoelastic dissipative material behavior using GENERIC
- Energy-entropy-momentum integration of discrete thermo-visco-elastic dynamics
- Galerkin-based energy-momentum consistent time-stepping algorithms for classical nonlinear thermo-elastodynamics
- A comparison of structure-preserving integrators for discrete thermoelastic systems
- Algorithms for coupled problems that preserve symmetries and the laws of thermodynamics: part I: Monolithic integrators and their application to finite strain thermoelasticity
- Thermodynamic model formulation for viscoplastic solids as general equations for non-equilibrium reversible-irreversible coupling
- The discrete energy-momentum method. Conserving algorithms for nonlinear elastodynamics
- Thermodynamics and stability
- Entropy elasticity of isotropic rubber-like solids at finite strains
- Entropic thermoelasticity at finite strains. Aspects of the formulation and numerical implementation
- On the formulation of continuum thermodynamic models for solids as general equations for non-equilibrium reversible-irreversible coupling
- Structure-preserving time integration of non-isothermal finite viscoelastic continua related to variational formulations of continuum dynamics
- A monolithic finite element approach using high-order schemes in time and space applied to finite strain thermo-viscoelasticity
- Numerical calculation of thermo-mechanical problems at large strains based on complex step derivative approximation of tangent stiffness matrices
- Time integration and discrete Hamiltonian systems
- Energy‐momentum consistent algorithms for dynamic thermomechanical problems—Application to mortar domain decomposition problems
- Thermodynamically consistent time-stepping algorithms for non-linear thermomechanical systems
- A First Course in Continuum Mechanics
- An energy‐entropy‐consistent time stepping scheme for nonlinear thermo‐viscoelastic continua
- An energy momentum consistent integration scheme using a polyconvexity-based framework for nonlinear thermo-elastodynamics
- Energy-entropy-momentum integration schemes for general discrete non-smooth dissipative problems in thermomechanics
Related Items (2)
A general thermodynamical model for finitely-strained continuum with inelasticity and diffusion, its GENERIC derivation in Eulerian formulation, and some application ⋮ Structure-preserving space-time discretization of large-strain thermo-viscoelasticity in the framework of GENERIC
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