The paper presents a new computational framework for the numerical simulation of fast large strain solid dynamics, with particular emphasis on the treatment of near incompressibility. A complete set of first order hyperbolic conservation equations expressed in terms of the linear momentum and the minors of the deformation (namely the deformation gradient, its co-factor and its Jacobian), in conjunction with a polyconvex nearly incompressible constitutive law, is presented. Taking advantage of this elegant formalism, alternative implementations in terms of entropy-conjugate variables are also possible, through suitable symmetrisation of the original system of conservation variables. From the spatial discretisation standpoint, modern Computat...
This paper presents a novel Smooth Particle Hydrodynamics computational framework for the simulation...
This paper introduces a new computational framework for the analysis of large strain fast solid dyna...
This work introduces a new Arbitrary Lagrangian Eulerian mixed formulation based on a hyperbolic sys...
The paper presents a new computational framework for the numerical simulation of fast large strain s...
This paper presents an explicit vertex centred finite volume method for the solution of fast transie...
This paper builds on recent work developed by the authors for the numerical analysis of large strain...
In Part I of this series, Bonet et al. (2015) introduced a new computational framework for the analy...
A vertex centred Jameson–Schmidt–Turkel (JST) finite volume algorithm was recently introduced by the...
A novel computational methodology is presented for the numerical analysis of fast transient dynamics...
This paper introduces a new computational framework for the analysis of large strain fast solid dyna...
This paper builds on recent work developed by the authors for the numerical analysis of large strain...
Over the past few decades, dynamic solid mechanics has become a major field of interest in industria...
In Part I of this series, Bonet et al. [1] introduced a new computational framework for the analysis...
In previous work (Lee et al., 2016, 2017), Lee et al. introduced a new Smooth Particle Hydrodynamics...
A vertex centred Jameson–Schmidt–Turkel (JST) finite volume algorithm was recently introduced by the...
This paper presents a novel Smooth Particle Hydrodynamics computational framework for the simulation...
This paper introduces a new computational framework for the analysis of large strain fast solid dyna...
This work introduces a new Arbitrary Lagrangian Eulerian mixed formulation based on a hyperbolic sys...
The paper presents a new computational framework for the numerical simulation of fast large strain s...
This paper presents an explicit vertex centred finite volume method for the solution of fast transie...
This paper builds on recent work developed by the authors for the numerical analysis of large strain...
In Part I of this series, Bonet et al. (2015) introduced a new computational framework for the analy...
A vertex centred Jameson–Schmidt–Turkel (JST) finite volume algorithm was recently introduced by the...
A novel computational methodology is presented for the numerical analysis of fast transient dynamics...
This paper introduces a new computational framework for the analysis of large strain fast solid dyna...
This paper builds on recent work developed by the authors for the numerical analysis of large strain...
Over the past few decades, dynamic solid mechanics has become a major field of interest in industria...
In Part I of this series, Bonet et al. [1] introduced a new computational framework for the analysis...
In previous work (Lee et al., 2016, 2017), Lee et al. introduced a new Smooth Particle Hydrodynamics...
A vertex centred Jameson–Schmidt–Turkel (JST) finite volume algorithm was recently introduced by the...
This paper presents a novel Smooth Particle Hydrodynamics computational framework for the simulation...
This paper introduces a new computational framework for the analysis of large strain fast solid dyna...
This work introduces a new Arbitrary Lagrangian Eulerian mixed formulation based on a hyperbolic sys...