In this paper, two complex critical-state models are implemented in a displacement finite element code. The two models are used for structured clays and sands, and are characterized by multiple yield surfaces, plastic yielding within the yield surface, and complex kinematic and isotropic hardening laws. The consistent tangent operators - which lead to a quadratic convergence when used in a fully implicit algorithm - are difficult to derive or may even not exist. The stress integration scheme used in this paper is based on the explicit Euler method with automatic substepping and error control. This scheme employs the classical elastoplastic stiffness matrix and requires only the first derivatives of the yield function and plastic potential. ...
An explicit algorithm for integrating Generalized Plasticity constitutive models is presented. This ...
International audienceThe critical state concept has been widely used in soil mechanics. The purpose...
none3The paper presents the implicit numerical integration by a Generalised Backward Euler algorithm...
In this paper, two complex critical-state models are implemented in a displacement finite element co...
This paper presents numerical treatments of elastoplasticity relations for a previously developed cr...
none3In recent years, a number of constitutive models have been proposed to describe mathematically ...
The mathematical formulation of the constitutive equations is expressed through a set of differentia...
The mechanical response of natural clays is characterised by highly non-linear behaviour, memory of ...
With the increased availability of computers of various sizes, it is becoming more common to predict...
This thesis is concerned with the theoretical development and numerical implementation of efficient ...
Standard integration schemes for rate constitutive equations were designed within the classical theo...
This paper presents the complete set of incremental equations for the numerical integration of the G...
Two integration algorithms, namely the implicit return mapping and explicit sub-stepping schemes, ar...
AbstractThis paper investigates the computational performance of S-CLAY1S constitutive model by vary...
-This paper investigates the computational performance of S-CLAY1S constitutive model by varying its...
An explicit algorithm for integrating Generalized Plasticity constitutive models is presented. This ...
International audienceThe critical state concept has been widely used in soil mechanics. The purpose...
none3The paper presents the implicit numerical integration by a Generalised Backward Euler algorithm...
In this paper, two complex critical-state models are implemented in a displacement finite element co...
This paper presents numerical treatments of elastoplasticity relations for a previously developed cr...
none3In recent years, a number of constitutive models have been proposed to describe mathematically ...
The mathematical formulation of the constitutive equations is expressed through a set of differentia...
The mechanical response of natural clays is characterised by highly non-linear behaviour, memory of ...
With the increased availability of computers of various sizes, it is becoming more common to predict...
This thesis is concerned with the theoretical development and numerical implementation of efficient ...
Standard integration schemes for rate constitutive equations were designed within the classical theo...
This paper presents the complete set of incremental equations for the numerical integration of the G...
Two integration algorithms, namely the implicit return mapping and explicit sub-stepping schemes, ar...
AbstractThis paper investigates the computational performance of S-CLAY1S constitutive model by vary...
-This paper investigates the computational performance of S-CLAY1S constitutive model by varying its...
An explicit algorithm for integrating Generalized Plasticity constitutive models is presented. This ...
International audienceThe critical state concept has been widely used in soil mechanics. The purpose...
none3The paper presents the implicit numerical integration by a Generalised Backward Euler algorithm...