KratosMultiphysics
KRATOS Multiphysics (Kratos) is a framework for building parallel, multi-disciplinary simulation software, aiming at modularity, extensibility, and high performance. Kratos is written in C++, and counts with an extensive Python interface.
Kratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType > Member List

This is the complete list of members for Kratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType >, including all inherited members.

AdvCLutils typedefKratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType >
BaseType typedefKratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType >
CalculateDamageParameter(ConstitutiveLaw::Parameters &rValues, double &rAParameter, const double CharacteristicLength)Kratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType >inlinestatic
CalculateEquivalentStress(const array_1d< double, VoigtSize > &rStressVector, const Vector &rStrainVector, double &rEquivalentStress, ConstitutiveLaw::Parameters &rValues)Kratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType >inlinestatic
CalculatePlasticPotentialDerivative(const array_1d< double, VoigtSize > &rStressVector, const array_1d< double, VoigtSize > &rDeviator, const double J2, array_1d< double, VoigtSize > &GFlux, ConstitutiveLaw::Parameters &rValues)Kratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType >inlinestatic
CalculateYieldSurfaceDerivative(const array_1d< double, VoigtSize > &rStressVector, const array_1d< double, VoigtSize > &rDeviator, const double J2, array_1d< double, VoigtSize > &rFFlux, ConstitutiveLaw::Parameters &rValues)Kratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType >inlinestatic
Check(const Properties &rMaterialProperties)Kratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType >inlinestatic
DimensionKratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType >static
GetInitialUniaxialThreshold(ConstitutiveLaw::Parameters &rValues, double &rThreshold)Kratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType >inlinestatic
GetScaleFactorTension(const Properties &rMaterialProperties)Kratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType >inlinestatic
IsWorkingWithTensionThreshold()Kratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType >inlinestatic
KRATOS_CLASS_POINTER_DEFINITION(ThermalModifiedMohrCoulombYieldSurface)Kratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType >
operator=(ThermalModifiedMohrCoulombYieldSurface const &rOther)Kratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType >inline
PlasticPotentialType typedefKratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType >
ThermalModifiedMohrCoulombYieldSurface()Kratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType >inline
ThermalModifiedMohrCoulombYieldSurface(ThermalModifiedMohrCoulombYieldSurface const &rOther)Kratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType >inline
toleranceKratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType >static
VoigtSizeKratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType >static
~ThermalModifiedMohrCoulombYieldSurface()Kratos::ThermalModifiedMohrCoulombYieldSurface< TPlasticPotentialType >inlinevirtual