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::MoveParticleUtilityPFEM2< TDim > Member List

This is the complete list of members for Kratos::MoveParticleUtilityPFEM2< TDim >, including all inherited members.

AccelerateParticlesWithoutMovingUsingDeltaVelocity()Kratos::MoveParticleUtilityPFEM2< TDim >inline
AddUniqueWeakPointer(GlobalPointersVector< TDataType > &v, const typename TDataType::WeakPointer candidate)Kratos::MoveParticleUtilityPFEM2< TDim >inline
AssignNodalVelocityUsingInletConditions(const double inlet_vel)Kratos::MoveParticleUtilityPFEM2< TDim >inline
CalculateDeltaVelocity()Kratos::MoveParticleUtilityPFEM2< TDim >inline
CalculateVelOverElemSize()Kratos::MoveParticleUtilityPFEM2< TDim >inline
Configure typedefKratos::MoveParticleUtilityPFEM2< TDim >
ContainerType typedefKratos::MoveParticleUtilityPFEM2< TDim >
CopyScalarVarToPreviousTimeStep(const Variable< double > &OriginVariable, ModelPart::NodesContainerType &rNodes)Kratos::MoveParticleUtilityPFEM2< TDim >inline
CopyVectorVarToPreviousTimeStep(const Variable< array_1d< double, 3 > > &OriginVariable, ModelPart::NodesContainerType &rNodes)Kratos::MoveParticleUtilityPFEM2< TDim >inline
ExecuteParticlesPritingTool(ModelPart &lagrangian_model_part, int input_filter_factor)Kratos::MoveParticleUtilityPFEM2< TDim >inline
ExecuteParticlesPritingToolForDroppletsOnly(ModelPart &lagrangian_model_part, int input_filter_factor)Kratos::MoveParticleUtilityPFEM2< TDim >inline
IntializeTransferTool(ModelPart *topographic_model_part, array_1d< double, 3 > initial_domains_offset, bool ovewrite_particle_data)Kratos::MoveParticleUtilityPFEM2< TDim >inline
IteratorType typedefKratos::MoveParticleUtilityPFEM2< TDim >
KRATOS_CLASS_POINTER_DEFINITION(MoveParticleUtilityPFEM2)Kratos::MoveParticleUtilityPFEM2< TDim >
MountBin()Kratos::MoveParticleUtilityPFEM2< TDim >inline
MoveParticles(const bool discriminate_streamlines)Kratos::MoveParticleUtilityPFEM2< TDim >inline
MoveParticleUtilityPFEM2(ModelPart &model_part, int maximum_number_of_particles)Kratos::MoveParticleUtilityPFEM2< TDim >inline
ParticlePointerVector typedefKratos::MoveParticleUtilityPFEM2< TDim >
PointType typedefKratos::MoveParticleUtilityPFEM2< TDim >
PostReseed(int minimum_number_of_particles, double mass_correction_factor)Kratos::MoveParticleUtilityPFEM2< TDim >inline
PreReseed(int minimum_number_of_particles)Kratos::MoveParticleUtilityPFEM2< TDim >inline
PreReseedUsingTopographicDomain(const int minimum_number_of_particles, array_1d< double, 3 > domains_added_displacement)Kratos::MoveParticleUtilityPFEM2< TDim >inline
ResetBoundaryConditions(bool fully_reset_nodes)Kratos::MoveParticleUtilityPFEM2< TDim >inline
ResetBoundaryConditionsSlip()Kratos::MoveParticleUtilityPFEM2< TDim >inline
ResultContainerType typedefKratos::MoveParticleUtilityPFEM2< TDim >
ResultIteratorType typedefKratos::MoveParticleUtilityPFEM2< TDim >
RotateParticlesAndDomainVelocities(array_1d< double, 3 > rotations)Kratos::MoveParticleUtilityPFEM2< TDim >inline
TransferLagrangianToEulerian()Kratos::MoveParticleUtilityPFEM2< TDim >inline
TransferLagrangianToEulerianImp()Kratos::MoveParticleUtilityPFEM2< TDim >inline
~MoveParticleUtilityPFEM2()Kratos::MoveParticleUtilityPFEM2< TDim >inline