OOFEM 3.0
Loading...
Searching...
No Matches
oofem::IsotropicHeatTransferMaterial Class Reference

#include <isoheatmat.h>

Inheritance diagram for oofem::IsotropicHeatTransferMaterial:
Collaboration diagram for oofem::IsotropicHeatTransferMaterial:

Public Member Functions

 IsotropicHeatTransferMaterial (int n, Domain *d)
FloatArrayF< 3 > computeFlux3D (const FloatArrayF< 3 > &grad, double field, GaussPoint *gp, TimeStep *tStep) const override
FloatMatrixF< 3, 3 > computeTangent3D (MatResponseMode mode, GaussPoint *gp, TimeStep *tStep) const override
virtual double giveIsotropicConductivity (GaussPoint *gp, TimeStep *tStep) const
double giveCharacteristicValue (MatResponseMode mode, GaussPoint *gp, TimeStep *tStep) const override
virtual double giveMaturityT0 () const
int giveIPValue (FloatArray &answer, GaussPoint *gp, InternalStateType type, TimeStep *tStep) override
const char * giveInputRecordName () const override
const char * giveClassName () const override
void initializeFrom (InputRecord &ir) override
double giveProperty (int aProperty, GaussPoint *gp, TimeStep *tStep) const
double giveTemperature (GaussPoint *gp) const
Public Member Functions inherited from oofem::TransportMaterial
 TransportMaterial (int n, Domain *d)
virtual void giveFluxVector (FloatArray &answer, GaussPoint *gp, const FloatArray &grad, const FloatArray &field, TimeStep *tStep) const
FloatArrayF< 2 > computeFlux2D (const FloatArrayF< 2 > &grad, double field, GaussPoint *gp, TimeStep *tStep) const
FloatArrayF< 1 > computeFlux1D (const FloatArrayF< 1 > &grad, double field, GaussPoint *gp, TimeStep *tStep) const
virtual std::pair< FloatArrayF< 3 >, FloatArrayF< 3 > > computeHeMoFlux3D (const FloatArrayF< 3 > &grad_t, const FloatArrayF< 3 > &grad_w, double t, double h, GaussPoint *gp, TimeStep *tStep) const
std::pair< FloatArrayF< 2 >, FloatArrayF< 2 > > computeHeMoFlux2D (const FloatArrayF< 2 > &grad_t, const FloatArrayF< 2 > &grad_w, double t, double h, GaussPoint *gp, TimeStep *tStep) const
std::pair< FloatArrayF< 1 >, FloatArrayF< 1 > > computeHeMoFlux1D (const FloatArrayF< 1 > &grad_t, const FloatArrayF< 1 > &grad_w, double t, double h, GaussPoint *gp, TimeStep *tStep) const
virtual void giveCharacteristicMatrix (FloatMatrix &answer, MatResponseMode mode, GaussPoint *gp, TimeStep *tStep) const override
FloatMatrixF< 2, 2 > computeTangent2D (MatResponseMode mode, GaussPoint *gp, TimeStep *tStep) const
FloatMatrixF< 1, 1 > computeTangent1D (MatResponseMode mode, GaussPoint *gp, TimeStep *tStep) const
virtual void updateInternalState (const FloatArray &state, GaussPoint *gp, TimeStep *tStep)
virtual bool hasInternalSource () const
virtual void computeInternalSourceVector (FloatArray &val, GaussPoint *gp, TimeStep *tStep, ValueModeType mode) const
virtual double giveHumidity (GaussPoint *gp, ValueModeType mode) const
int giveIPValue (FloatArray &answer, GaussPoint *gp, InternalStateType type, TimeStep *tStep) override
std::unique_ptr< MaterialStatusCreateStatus (GaussPoint *gp) const override
Public Member Functions inherited from oofem::Material
 Material (int n, Domain *d)
virtual ~Material ()=default
 Destructor.
virtual bool isCharacteristicMtrxSymmetric (MatResponseMode rMode) const
virtual void giveCharacteristicVector (FloatArray &answer, FloatArray &flux, MatResponseMode type, GaussPoint *gp, TimeStep *tStep) const
 Returns characteristic vector of the receiver.
virtual double give (int aProperty, GaussPoint *gp) const
virtual bool hasProperty (int aProperty, GaussPoint *gp) const
virtual void modifyProperty (int aProperty, double value, GaussPoint *gp)
double giveCastingTime () const
virtual bool isActivated (TimeStep *tStep) const
virtual bool hasMaterialModeCapability (MaterialMode mode) const
virtual bool hasCastingTimeSupport () const
virtual int setIPValue (const FloatArray &value, GaussPoint *gp, InternalStateType type)
void initializeFrom (InputRecord &ir) override
void giveInputRecord (DynamicInputRecord &input) override
void printYourself () override
 Prints receiver state on stdout. Useful for debugging.
virtual void saveIPContext (DataStream &stream, ContextMode mode, GaussPoint *gp)
virtual void restoreIPContext (DataStream &stream, ContextMode mode, GaussPoint *gp)
int checkConsistency () override
virtual void restoreConsistency (GaussPoint *gp)
virtual int initMaterial (Element *element)
virtual MaterialStatusgiveStatus (GaussPoint *gp) const
virtual int packUnknowns (DataStream &buff, TimeStep *tStep, GaussPoint *ip)
virtual int unpackAndUpdateUnknowns (DataStream &buff, TimeStep *tStep, GaussPoint *ip)
virtual int estimatePackSize (DataStream &buff, GaussPoint *ip)
virtual double predictRelativeComputationalCost (GaussPoint *gp)
virtual double predictRelativeRedistributionCost (GaussPoint *gp)
virtual void initTempStatus (GaussPoint *gp) const
void saveContext (DataStream &stream, ContextMode mode) override
void restoreContext (DataStream &stream, ContextMode mode) override
Public Member Functions inherited from oofem::FEMComponent
 FEMComponent (int n, Domain *d)
virtual ~FEMComponent ()=default
 Virtual destructor.
DomaingiveDomain () const
virtual void setDomain (Domain *d)
int giveNumber () const
void setNumber (int num)
virtual void updateLocalNumbering (EntityRenumberingFunctor &f)
virtual void initializeFrom (InputRecord &ir, int priority)
virtual void initializeFinish ()
virtual void postInitialize ()
 Performs post initialization steps. Called after all components are created and initialized.
virtual void printOutputAt (FILE *file, TimeStep *tStep)
virtual InterfacegiveInterface (InterfaceType t)
std::string errorInfo (const char *func) const
 Returns string for prepending output (used by error reporting macros).

Protected Attributes

ScalarFunction conductivity
 Conductivity (k in input file).
ScalarFunction capacity
 Capacity (c in input file).
ScalarFunction density
 Density (td in input file).
double maturityT0 = 0.
 Baseline for maturity mathod.
Protected Attributes inherited from oofem::Material
Dictionary propertyDictionary
double castingTime
int preCastingTimeMat
 Material existing before casting time - optional parameter, zero by default.
Protected Attributes inherited from oofem::FEMComponent
int number
 Component number.
Domaindomain
 Link to domain object, useful for communicating with other FEM components.

Detailed Description

This class implements an isotropic linear heat material. A material is an attribute of a domain. It is usually also attribute of many elements.

Definition at line 59 of file isoheatmat.h.

Constructor & Destructor Documentation

◆ IsotropicHeatTransferMaterial()

oofem::IsotropicHeatTransferMaterial::IsotropicHeatTransferMaterial ( int n,
Domain * d )

Member Function Documentation

◆ computeFlux3D()

FloatArrayF< 3 > oofem::IsotropicHeatTransferMaterial::computeFlux3D ( const FloatArrayF< 3 > & grad,
double field,
GaussPoint * gp,
TimeStep * tStep ) const
overridevirtual
Todo
Shouldn't the conductivity typically depend on the primary field and/or its gradient?

Reimplemented from oofem::TransportMaterial.

Definition at line 77 of file isoheatmat.C.

References giveIsotropicConductivity(), oofem::Material::giveStatus(), and oofem::TransportMaterialStatus::setTempField().

◆ computeTangent3D()

FloatMatrixF< 3, 3 > oofem::IsotropicHeatTransferMaterial::computeTangent3D ( MatResponseMode mode,
GaussPoint * gp,
TimeStep * tStep ) const
overridevirtual

Implements oofem::TransportMaterial.

Definition at line 92 of file isoheatmat.C.

References oofem::eye(), and giveIsotropicConductivity().

◆ giveCharacteristicValue()

double oofem::IsotropicHeatTransferMaterial::giveCharacteristicValue ( MatResponseMode mode,
GaussPoint * gp,
TimeStep * tStep ) const
overridevirtual

Computes the characteristic value of receiver in given integration point, respecting its history. The algorithm should use temporary or equilibrium history variables stored in integration point status to compute and return required result.

Parameters
modeMaterial response mode.
gpIntegration point.
tStepTime step (most models are able to respond only when tStep is current time step).

Implements oofem::TransportMaterial.

Definition at line 106 of file isoheatmat.C.

References giveProperty(), and OOFEM_ERROR.

◆ giveClassName()

const char * oofem::IsotropicHeatTransferMaterial::giveClassName ( ) const
inlineoverridevirtual
Returns
Class name of the receiver.

Implements oofem::FEMComponent.

Definition at line 84 of file isoheatmat.h.

◆ giveInputRecordName()

const char * oofem::IsotropicHeatTransferMaterial::giveInputRecordName ( ) const
inlineoverridevirtual
Returns
Input record name of the receiver.

Implements oofem::FEMComponent.

Definition at line 83 of file isoheatmat.h.

References _IFT_IsotropicHeatTransferMaterial_Name.

◆ giveIPValue()

int oofem::IsotropicHeatTransferMaterial::giveIPValue ( FloatArray & answer,
GaussPoint * gp,
InternalStateType type,
TimeStep * tStep )
overridevirtual

Returns the integration point corresponding value in Reduced form.

Parameters
answerContain corresponding ip value, zero sized if not available.
gpIntegration point to which the value refers.
typeDetermines the type of internal variable.
tStepDetermines the time step.
Returns
Nonzero if the assignment can be done, zero if this type of variable is not supported.

Reimplemented from oofem::Material.

Definition at line 121 of file isoheatmat.C.

References oofem::FloatArray::at(), giveProperty(), giveTemperature(), and oofem::FloatArray::resize().

◆ giveIsotropicConductivity()

double oofem::IsotropicHeatTransferMaterial::giveIsotropicConductivity ( GaussPoint * gp,
TimeStep * tStep ) const
virtual

Reimplemented in oofem::CemhydMat, and oofem::HydratingConcreteMat.

Definition at line 100 of file isoheatmat.C.

References giveProperty().

Referenced by computeFlux3D(), and computeTangent3D().

◆ giveMaturityT0()

virtual double oofem::IsotropicHeatTransferMaterial::giveMaturityT0 ( ) const
inlinevirtual

Definition at line 79 of file isoheatmat.h.

References maturityT0.

Referenced by oofem::HydratingConcreteMatStatus::updateYourself().

◆ giveProperty()

◆ giveTemperature()

double oofem::IsotropicHeatTransferMaterial::giveTemperature ( GaussPoint * gp) const

◆ initializeFrom()

void oofem::IsotropicHeatTransferMaterial::initializeFrom ( InputRecord & ir)
overridevirtual

Initializes receiver according to object description stored in input record. This function is called immediately after creating object using constructor. Input record can be imagined as data record in component database belonging to receiver. Receiver may use value-name extracting functions to extract particular field from record. Note that initializeFrom may be called mutiple times.

See also
IR_GIVE_FIELD
IR_GIVE_OPTIONAL_FIELD
Parameters
irInput record to initialize from.
priorityPriority of the input record. This is used to determine the order of initialization

Reimplemented from oofem::FEMComponent.

Definition at line 49 of file isoheatmat.C.

References _IFT_IsotropicHeatTransferMaterial_c, _IFT_IsotropicHeatTransferMaterial_d, _IFT_IsotropicHeatTransferMaterial_k, _IFT_IsotropicHeatTransferMaterial_maturityT0, capacity, conductivity, density, IR_GIVE_FIELD, IR_GIVE_OPTIONAL_FIELD, and maturityT0.

Member Data Documentation

◆ capacity

ScalarFunction oofem::IsotropicHeatTransferMaterial::capacity
protected

Capacity (c in input file).

Definition at line 63 of file isoheatmat.h.

Referenced by giveProperty(), and initializeFrom().

◆ conductivity

ScalarFunction oofem::IsotropicHeatTransferMaterial::conductivity
protected

Conductivity (k in input file).

Definition at line 62 of file isoheatmat.h.

Referenced by giveProperty(), and initializeFrom().

◆ density

ScalarFunction oofem::IsotropicHeatTransferMaterial::density
protected

Density (td in input file).

Definition at line 64 of file isoheatmat.h.

Referenced by giveProperty(), and initializeFrom().

◆ maturityT0

double oofem::IsotropicHeatTransferMaterial::maturityT0 = 0.
protected

Baseline for maturity mathod.

Definition at line 65 of file isoheatmat.h.

Referenced by giveMaturityT0(), and initializeFrom().


The documentation for this class was generated from the following files:

This page is part of the OOFEM-3.0 documentation. Copyright Copyright (C) 1994-2025 Borek Patzak Bořek Patzák
Project e-mail: oofem@fsv.cvut.cz
Generated at for OOFEM by doxygen 1.15.0 written by Dimitri van Heesch, © 1997-2011