OOFEM 3.0
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oofem::LIBeam2dNL Class Reference

#include <libeam2dnl.h>

Inheritance diagram for oofem::LIBeam2dNL:
Collaboration diagram for oofem::LIBeam2dNL:

Public Member Functions

 LIBeam2dNL (int n, Domain *d)
virtual ~LIBeam2dNL ()
void computeLumpedMassMatrix (FloatMatrix &answer, TimeStep *tStep) override
void computeMassMatrix (FloatMatrix &answer, TimeStep *tStep) override
bool computeGtoLRotationMatrix (FloatMatrix &answer) override
void computeInitialStressMatrix (FloatMatrix &answer, TimeStep *tStep) override
int computeGlobalCoordinates (FloatArray &answer, const FloatArray &lcoords) override
void computeStressVector (FloatArray &answer, const FloatArray &strain, GaussPoint *gp, TimeStep *tStep) override
void computeConstitutiveMatrixAt (FloatMatrix &answer, MatResponseMode rMode, GaussPoint *gp, TimeStep *tStep) override
void computeConstitutiveMatrix_dPdF_At (FloatMatrix &answer, MatResponseMode rMode, GaussPoint *gp, TimeStep *tStep) override
void computeStrainVectorInLayer (FloatArray &answer, const FloatArray &masterGpStrain, GaussPoint *masterGp, GaussPoint *slaveGp, TimeStep *tStep) override
InterfacegiveInterface (InterfaceType it) override
int computeNumberOfDofs () override
void giveDofManDofIDMask (int inode, IntArray &) const override
double computeVolumeAround (GaussPoint *gp) override
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, int priority) override
void drawRawGeometry (oofegGraphicContext &gc, TimeStep *tStep) override
void drawDeformedGeometry (oofegGraphicContext &gc, TimeStep *tStep, UnknownType) override
integrationDomain giveIntegrationDomain () const override
MaterialMode giveMaterialMode () override
Element_Geometry_Type giveGeometryType () const override
Public Member Functions inherited from oofem::NLStructuralElement
 NLStructuralElement (int n, Domain *d)
virtual ~NLStructuralElement ()
 Destructor.
int giveGeometryMode ()
void computeFirstPKStressVector (FloatArray &answer, GaussPoint *gp, TimeStep *tStep)
void computeCauchyStressVector (FloatArray &answer, GaussPoint *gp, TimeStep *tStep)
void computeStiffnessMatrix (FloatMatrix &answer, MatResponseMode rMode, TimeStep *tStep) override
void computeInitialStressMatrix (FloatMatrix &answer, TimeStep *tStep) override
void computeStiffnessMatrix_withIRulesAsSubcells (FloatMatrix &answer, MatResponseMode rMode, TimeStep *tStep)
void giveInternalForcesVector (FloatArray &answer, TimeStep *tStep, int useUpdatedGpRecord=0) override
void giveInternalForcesVector_withIRulesAsSubcells (FloatArray &answer, TimeStep *tStep, int useUpdatedGpRecord=0) override
virtual void computeDeformationGradientVector (FloatArray &answer, GaussPoint *gp, TimeStep *tStep)
double computeCurrentVolume (TimeStep *tStep)
void initializeFrom (InputRecord &ir, int priority) override
void giveInputRecord (DynamicInputRecord &input) override
const char * giveClassName () const override
Public Member Functions inherited from oofem::StructuralElement
 StructuralElement (int n, Domain *d)
virtual ~StructuralElement ()
 Destructor.
void giveCharacteristicMatrix (FloatMatrix &answer, CharType, TimeStep *tStep) override
void giveCharacteristicVector (FloatArray &answer, CharType type, ValueModeType mode, TimeStep *tStep) override
virtual void computeConsistentMassMatrix (FloatMatrix &answer, TimeStep *tStep, double &mass, const double *ipDensity=NULL)
virtual void giveMassMtrxIntegrationgMask (IntArray &answer)
void computeStiffnessMatrix_withIRulesAsSubcells (FloatMatrix &answer, MatResponseMode rMode, TimeStep *tStep)
virtual void computeLumpedInitialStressMatrix (FloatMatrix &answer, TimeStep *tStep)
void computeField (ValueModeType mode, TimeStep *tStep, const FloatArray &lcoords, FloatArray &answer) override
virtual void computeStrainVector (FloatArray &answer, GaussPoint *gp, TimeStep *tStep)
int giveIPValue (FloatArray &answer, GaussPoint *gp, InternalStateType type, TimeStep *tStep) override
virtual void computeResultingIPTemperatureAt (FloatArray &answer, TimeStep *tStep, GaussPoint *gp, ValueModeType mode)
virtual void computeResultingIPEigenstrainAt (FloatArray &answer, TimeStep *tStep, GaussPoint *gp, ValueModeType mode)
void updateBeforeNonlocalAverage (TimeStep *tStep) override
virtual void giveNonlocalLocationArray (IntArray &locationArray, const UnknownNumberingScheme &us)
virtual void addNonlocalStiffnessContributions (SparseMtrx &dest, const UnknownNumberingScheme &s, TimeStep *tStep)
int adaptiveUpdate (TimeStep *tStep) override
void updateInternalState (TimeStep *tStep) override
void updateYourself (TimeStep *tStep) override
int checkConsistency () override
void giveInputRecord (DynamicInputRecord &input) override
const char * giveClassName () const override
int giveInternalStateAtNode (FloatArray &answer, InternalStateType type, InternalStateMode mode, int node, TimeStep *tStep) override
void showSparseMtrxStructure (CharType mtrx, oofegGraphicContext &gc, TimeStep *tStep) override
 Shows sparse structure.
void showExtendedSparseMtrxStructure (CharType mtrx, oofegGraphicContext &gc, TimeStep *tStep) override
 Shows extended sparse structure (for example, due to nonlocal interactions for tangent stiffness).
void computeLoadVector (FloatArray &answer, BodyLoad *load, CharType type, ValueModeType mode, TimeStep *tStep) override
void computeBoundarySurfaceLoadVector (FloatArray &answer, BoundaryLoad *load, int boundary, CharType type, ValueModeType mode, TimeStep *tStep, bool global=true) override
void computeBoundaryEdgeLoadVector (FloatArray &answer, BoundaryLoad *load, int boundary, CharType type, ValueModeType mode, TimeStep *tStep, bool global=true) override
virtual void computeEdgeNMatrix (FloatMatrix &answer, int boundaryID, const FloatArray &lcoords)
 computes edge interpolation matrix
virtual void computeSurfaceNMatrix (FloatMatrix &answer, int boundaryID, const FloatArray &lcoords)
StructuralCrossSectiongiveStructuralCrossSection ()
 Helper function which returns the structural cross-section for the element.
virtual void createMaterialStatus ()
Public Member Functions inherited from oofem::Element
 Element (int n, Domain *aDomain)
 Element (const Element &src)=delete
Elementoperator= (const Element &src)=delete
virtual ~Element ()
 Virtual destructor.
void giveLocationArray (IntArray &locationArray, const UnknownNumberingScheme &s, IntArray *dofIds=NULL) const
void giveLocationArray (IntArray &locationArray, const IntArray &dofIDMask, const UnknownNumberingScheme &s, IntArray *dofIds=NULL) const
virtual void giveBoundaryLocationArray (IntArray &locationArray, const IntArray &bNodes, const UnknownNumberingScheme &s, IntArray *dofIds=NULL)
virtual void giveBoundaryLocationArray (IntArray &locationArray, const IntArray &bNodes, const IntArray &dofIDMask, const UnknownNumberingScheme &s, IntArray *dofIds=NULL)
virtual int giveNumberOfDofs ()
virtual int giveNumberOfInternalDofManagers () const
virtual DofManagergiveInternalDofManager (int i) const
virtual void setInternalDofManager (int num, std::unique_ptr< DofManager > dm)
virtual double giveCharacteristicValue (CharType type, TimeStep *tStep)
virtual void computeTangentFromSurfaceLoad (FloatMatrix &answer, BoundaryLoad *load, int boundary, MatResponseMode rmode, TimeStep *tStep)
virtual void computeTangentFromEdgeLoad (FloatMatrix &answer, BoundaryLoad *load, int boundary, MatResponseMode rmode, TimeStep *tStep)
const IntArraygiveBodyLoadList () const
const IntArraygiveBoundaryLoadList () const
void computeVectorOf (ValueModeType u, TimeStep *tStep, FloatArray &answer)
void computeVectorOf (const IntArray &dofIDMask, ValueModeType u, TimeStep *tStep, FloatArray &answer, bool padding=false)
void computeBoundaryVectorOf (const IntArray &bNodes, const IntArray &dofIDMask, ValueModeType u, TimeStep *tStep, FloatArray &answer, bool padding=false)
void computeVectorOf (PrimaryField &field, const IntArray &dofIDMask, ValueModeType u, TimeStep *tStep, FloatArray &answer, bool padding=false)
void computeVectorOfPrescribed (ValueModeType u, TimeStep *tStep, FloatArray &answer)
void computeVectorOfPrescribed (const IntArray &dofIDMask, ValueModeType type, TimeStep *tStep, FloatArray &answer)
virtual int computeNumberOfGlobalDofs ()
int computeNumberOfPrimaryMasterDofs ()
virtual bool giveRotationMatrix (FloatMatrix &answer)
virtual bool computeDofTransformationMatrix (FloatMatrix &answer, const IntArray &nodes, bool includeInternal)
virtual void giveInternalDofManDofIDMask (int inode, IntArray &answer) const
virtual void giveElementDofIDMask (IntArray &answer) const
virtual double computeVolumeAreaOrLength ()
 Computes the volume, area or length of the element depending on its spatial dimension.
double computeMeanSize ()
virtual double computeVolume ()
virtual double computeArea ()
virtual IntArray giveBoundaryEdgeNodes (int boundary, bool includeHierarchical=false) const
virtual IntArray giveBoundarySurfaceNodes (int boundary, bool includeHierarchical=false) const
virtual IntArray giveBoundaryNodes (int boundary) const
virtual std::unique_ptr< IntegrationRulegiveBoundaryEdgeIntegrationRule (int order, int boundary)
virtual std::unique_ptr< IntegrationRulegiveBoundarySurfaceIntegrationRule (int order, int boundary)
int giveDofManagerNumber (int i) const
const IntArraygiveDofManArray () const
void addDofManager (DofManager *dMan)
DofManagergiveDofManager (int i) const
NodegiveNode (int i) const
virtual ElementSidegiveSide (int i) const
virtual FEInterpolationgiveInterpolation () const
virtual FEInterpolationgiveInterpolation (DofIDItem id) const
virtual const FEInterpolationgetGeometryInterpolation () const
virtual MaterialgiveMaterial ()
int giveMaterialNumber () const
CrossSectiongiveCrossSection ()
int getActivityTimeFunctionNumber ()
void setActivityTimeFunctionNumber (int funcIndx)
void setMaterial (int matIndx)
virtual void setCrossSection (int csIndx)
virtual int giveNumberOfDofManagers () const
void setNumberOfDofManagers (int i)
 Sets number of element dof managers.
virtual int giveNumberOfNodes () const
void setDofManagers (const IntArray &dmans)
void setDofManager (int id, int dm)
void setBodyLoads (const IntArray &bodyLoads)
void setIntegrationRules (std ::vector< std ::unique_ptr< IntegrationRule > > irlist)
virtual int giveIntegrationRuleLocalCodeNumbers (IntArray &answer, IntegrationRule &ie)
int giveRegionNumber ()
virtual void initializeYourself (TimeStep *timeStepWhenICApply)
virtual bool isActivated (TimeStep *tStep)
virtual bool isCast (TimeStep *tStep)
virtual void initForNewStep ()
virtual Element_Geometry_Type giveEdgeGeometryType (int id) const
 Returns the receiver edge geometry type.
virtual Element_Geometry_Type giveSurfaceGeometryType (int id) const
 Returns the receiver surface geometry type.
virtual int giveSpatialDimension ()
virtual int giveNumberOfBoundarySides ()
 Returns number of boundaries (entities of element_dimension-1: points, edges, surfaces).
virtual int giveNumberOfEdges () const
virtual int giveNumberOfSurfaces () const
virtual int giveDefaultIntegrationRule () const
virtual IntegrationRulegiveDefaultIntegrationRulePtr ()
int giveNumberOfIntegrationRules ()
virtual IntegrationRulegiveIntegrationRule (int i)
std::vector< std ::unique_ptr< IntegrationRule > > & giveIntegrationRulesArray ()
virtual int testElementExtension (ElementExtension ext)
int giveGlobalIPValue (FloatArray &answer, GaussPoint *gp, InternalStateType type, TimeStep *tStep)
virtual double giveLengthInDir (const FloatArray &normalToCrackPlane)
virtual double giveCharacteristicLength (const FloatArray &normalToCrackPlane)
double giveCharacteristicLengthForPlaneElements (const FloatArray &normalToCrackPlane)
double giveCharacteristicLengthForAxisymmElements (const FloatArray &normalToCrackPlane)
virtual double giveCharacteristicSize (GaussPoint *gp, FloatArray &normalToCrackPlane, ElementCharSizeMethod method)
virtual double giveParentElSize () const
virtual bool computeLocalCoordinates (FloatArray &answer, const FloatArray &gcoords)
virtual int giveLocalCoordinateSystem (FloatMatrix &answer)
virtual void giveLocalCoordinateSystemVector (InternalStateType isttype, FloatArray &answer)
virtual void computeMidPlaneNormal (FloatArray &answer, const GaussPoint *gp)
virtual int adaptiveMap (Domain *oldd, TimeStep *tStep)
virtual int mapStateVariables (Domain &iOldDom, const TimeStep &iTStep)
virtual int adaptiveFinish (TimeStep *tStep)
void updateLocalNumbering (EntityRenumberingFunctor &f) override
template<class T>
void ipEvaluator (T *src, void(T ::*f)(GaussPoint *gp))
 Integration point evaluator, loops over receiver IP's and calls given function (passed as f parameter) on them. The IP is parameter to function f.
template<class T, class S>
void ipEvaluator (T *src, void(T ::*f)(GaussPoint *, S &), S &_val)
 Integration point evaluator, loops over receiver IP's and calls given function (passed as f parameter) on them. The IP is parameter to function f as well as additional array.
virtual void drawYourself (oofegGraphicContext &gc, TimeStep *tStep)
virtual void drawAnnotation (oofegGraphicContext &gc, TimeStep *tStep)
virtual void drawScalar (oofegGraphicContext &gc, TimeStep *tStep)
virtual void drawSpecial (oofegGraphicContext &gc, TimeStep *tStep)
virtual void giveLocalIntVarMaxMin (oofegGraphicContext &gc, TimeStep *tStep, double &emin, double &emax)
virtual int giveInternalStateAtSide (FloatArray &answer, InternalStateType type, InternalStateMode mode, int side, TimeStep *tStep)
int giveLabel () const
int giveGlobalNumber () const
void setGlobalNumber (int num)
elementParallelMode giveParallelMode () const
void setParallelMode (elementParallelMode _mode)
 Sets parallel mode of element.
virtual elementParallelMode giveKnotSpanParallelMode (int) const
int packUnknowns (DataStream &buff, TimeStep *tStep)
int unpackAndUpdateUnknowns (DataStream &buff, TimeStep *tStep)
int estimatePackSize (DataStream &buff)
const IntArraygivePartitionList () const
void setPartitionList (IntArray &pl)
virtual double predictRelativeComputationalCost ()
virtual double giveRelativeSelfComputationalCost ()
virtual double predictRelativeRedistributionCost ()
IntArraygiveBodyLoadArray ()
 Returns array containing load numbers of loads acting on element.
IntArraygiveBoundaryLoadArray ()
 Returns array containing load numbers of boundary loads acting on element.
void initializeFinish () override
void postInitialize () override
 Performs post initialization steps.
void saveContext (DataStream &stream, ContextMode mode) override
void restoreContext (DataStream &stream, ContextMode mode) override
void printOutputAt (FILE *file, TimeStep *tStep) override
virtual const IntArray giveLocation ()
virtual void recalculateCoordinates (int nodeNumber, FloatArray &coords)
void setSharedEdgeID (int iedge, int globalID)
void setSharedSurfaceID (int isurf, int globalID)
const IntArraygiveSharedEdgeIDs () const
const IntArraygiveSharedSurfaceIDs () const
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 initializeFrom (InputRecord &ir)
virtual void printYourself ()
 Prints receiver state on stdout. Useful for debugging.
std::string errorInfo (const char *func) const
 Returns string for prepending output (used by error reporting macros).
Public Member Functions inherited from oofem::LayeredCrossSectionInterface
 LayeredCrossSectionInterface ()
Public Member Functions inherited from oofem::Interface
 Interface ()
 Constructor.
virtual ~Interface ()

Protected Member Functions

void giveEdgeDofMapping (IntArray &answer, int) const override
double computeEdgeVolumeAround (GaussPoint *, int) override
int computeLoadLEToLRotationMatrix (FloatMatrix &, int, GaussPoint *) override
int computeLoadGToLRotationMtrx (FloatMatrix &answer) override
void computeBodyLoadVectorAt (FloatArray &answer, Load *load, TimeStep *tStep, ValueModeType mode) override
void computeBmatrixAt (GaussPoint *gp, FloatMatrix &answer, int=1, int=ALL_STRAINS) override
void computeNLBMatrixAt (FloatMatrix &answer, GaussPoint *gp, int)
void computeNmatrixAt (const FloatArray &iLocCoord, FloatMatrix &answer) override
void computeGaussPoints () override
double computeLength () override
double givePitch ()
Protected Member Functions inherited from oofem::NLStructuralElement
int checkConsistency () override
virtual void computeBHmatrixAt (GaussPoint *gp, FloatMatrix &answer)
virtual void computePointLoadVectorAt (FloatArray &answer, Load *load, TimeStep *tStep, ValueModeType mode, bool global=true)
virtual void giveSurfaceDofMapping (IntArray &answer, int iSurf) const
virtual double computeSurfaceVolumeAround (GaussPoint *gp, int iSurf)
virtual int computeLoadLSToLRotationMatrix (FloatMatrix &answer, int iSurf, GaussPoint *gp)
virtual int giveNumberOfIPForMassMtrxIntegration ()
void condense (FloatMatrix *stiff, FloatMatrix *mass, FloatArray *load, IntArray *what)
virtual void setupIRForMassMtrxIntegration (IntegrationRule &iRule)

Protected Attributes

double pitch
double length
Protected Attributes inherited from oofem::NLStructuralElement
int nlGeometry =0
 Flag indicating if geometrical nonlinearities apply.
Protected Attributes inherited from oofem::StructuralElement
std::unique_ptr< FloatArrayinitialDisplacements
 Initial displacement vector, describes the initial nodal displacements when element has been casted.
Protected Attributes inherited from oofem::Element
int numberOfDofMans
 Number of dofmanagers.
IntArray dofManArray
 Array containing dofmanager numbers.
int material
 Number of associated material.
int crossSection
 Number of associated cross section.
IntArray bodyLoadArray
IntArray boundaryLoadArray
std::vector< std ::unique_ptr< IntegrationRule > > integrationRulesArray
FloatMatrix elemLocalCS
 Transformation material matrix, used in orthotropic and anisotropic materials, global->local transformation.
int activityTimeFunction
 Element activity time function. If defined, nonzero value indicates active receiver, zero value inactive element.
int globalNumber
int numberOfGaussPoints
elementParallelMode parallel_mode
 Determines the parallel mode of the element.
IntArray partitions
IntArray globalEdgeIDs
IntArray globalSurfaceIDs
Protected Attributes inherited from oofem::FEMComponent
int number
 Component number.
Domaindomain
 Link to domain object, useful for communicating with other FEM components.

Additional Inherited Members

Static Public Attributes inherited from oofem::Element
static ParamKey IPK_Element_mat
static ParamKey IPK_Element_crosssect
static ParamKey IPK_Element_nodes
static ParamKey IPK_Element_bodyload
static ParamKey IPK_Element_boundaryload
static ParamKey IPK_Element_lcs
static ParamKey IPK_Element_partitions
static ParamKey IPK_Element_remote
static ParamKey IPK_Element_activityTimeFunction
static ParamKey IPK_Element_nip
Static Protected Attributes inherited from oofem::NLStructuralElement
static ParamKey IPK_NLStructuralElement_nlgeoflag

Detailed Description

This class implements a 2-dimensional Linear Isoparametric Mindlin theory beam element, with reduced integration. Geometric nonlinearities are taken into account.

Definition at line 49 of file libeam2dnl.h.

Constructor & Destructor Documentation

◆ LIBeam2dNL()

◆ ~LIBeam2dNL()

virtual oofem::LIBeam2dNL::~LIBeam2dNL ( )
inlinevirtual

Definition at line 56 of file libeam2dnl.h.

Member Function Documentation

◆ computeBmatrixAt()

void oofem::LIBeam2dNL::computeBmatrixAt ( GaussPoint * gp,
FloatMatrix & answer,
int lowerIndx = 1,
int upperIndx = ALL_STRAINS )
overrideprotectedvirtual

Computes the geometrical matrix of receiver in given integration point. The product of this matrix (assembled at given integration point) and element displacement vector is element strain vector. If lowerIndx and upperIndx parameters are specified, answer is formed only for strains within this interval. This will affects the size of answer.

Parameters
gpIntegration point for which answer is computed.
answerGeometric matrix of receiver.
lowerIndxIf specified, answer is formed only for strain with index equal and greater than lowerIndx. This parameter has default value 1 (answer is formed from first strain).
upperIndxIf specified, answer is formed only for strain with index less and equal than upperIndx. This parameter has default value ALL_STRAINS (answer is formed for all strains).

Implements oofem::StructuralElement.

Definition at line 74 of file libeam2dnl.C.

References oofem::FloatMatrix::at(), computeLength(), oofem::GaussPoint::giveNaturalCoordinate(), oofem::FloatMatrix::resize(), and oofem::FloatMatrix::zero().

◆ computeBodyLoadVectorAt()

void oofem::LIBeam2dNL::computeBodyLoadVectorAt ( FloatArray & answer,
Load * load,
TimeStep * tStep,
ValueModeType mode )
overrideprotectedvirtual

Computes the load vector due to body load acting on receiver, at given time step. Default implementation computes body load vector numerically as \( l=\int_V N^{\mathrm{T}} f \rho\;\mathrm{d}V \) using default integration rule. Result is transformed to global c.s.

Parameters
answerComputed load vector due to body load
loadBody load which contribution is computed.
tStepTime step.
modedetermines the response mode

Reimplemented from oofem::StructuralElement.

Definition at line 580 of file libeam2dnl.C.

References oofem::StructuralElement::computeBodyLoadVectorAt(), oofem::CS_Area, oofem::Element::giveCrossSection(), and oofem::FloatArray::times().

◆ computeConstitutiveMatrix_dPdF_At()

void oofem::LIBeam2dNL::computeConstitutiveMatrix_dPdF_At ( FloatMatrix & answer,
MatResponseMode rMode,
GaussPoint * gp,
TimeStep * tStep )
overridevirtual

Computes large strain constitutive matrix of receiver. Default implementation uses element cross section giveCharMaterialStiffnessMatrix service.

Parameters
answerConstitutive matrix.
rModeMaterial response mode of answer.
gpIntegration point for which constitutive matrix is computed.
tStepTime step.

Implements oofem::NLStructuralElement.

Definition at line 407 of file libeam2dnl.C.

References OOFEM_ERROR.

◆ computeConstitutiveMatrixAt()

void oofem::LIBeam2dNL::computeConstitutiveMatrixAt ( FloatMatrix & answer,
MatResponseMode rMode,
GaussPoint * gp,
TimeStep * tStep )
overridevirtual

Computes constitutive matrix of receiver. Default implementation uses element cross section giveCharMaterialStiffnessMatrix service.

Parameters
answerConstitutive matrix.
rModeMaterial response mode of answer.
gpIntegration point for which constitutive matrix is computed.
tStepTime step.

Implements oofem::StructuralElement.

Definition at line 401 of file libeam2dnl.C.

References oofem::StructuralCrossSection::give2dBeamStiffMtrx(), and oofem::StructuralElement::giveStructuralCrossSection().

◆ computeEdgeVolumeAround()

double oofem::LIBeam2dNL::computeEdgeVolumeAround ( GaussPoint * gp,
int iEdge )
overrideprotectedvirtual

Computes volume related to integration point on local edge.

Parameters
gpedge integration point
iEdgeedge number

Reimplemented from oofem::StructuralElement.

Definition at line 526 of file libeam2dnl.C.

References computeLength(), oofem::GaussPoint::giveWeight(), and OOFEM_ERROR.

◆ computeGaussPoints()

void oofem::LIBeam2dNL::computeGaussPoints ( )
overrideprotectedvirtual

Initializes the array of integration rules member variable. Element can have multiple integration rules for different tasks. For example structural element family class uses this feature to implement transparent support for reduced and selective integration of some strain components. Must be defined by terminator classes.

See also
IntegrationRule

Reimplemented from oofem::Element.

Definition at line 283 of file libeam2dnl.C.

References oofem::Element::giveCrossSection(), oofem::Element::integrationRulesArray, and oofem::CrossSection::setupIntegrationPoints().

◆ computeGlobalCoordinates()

int oofem::LIBeam2dNL::computeGlobalCoordinates ( FloatArray & answer,
const FloatArray & lcoords )
overridevirtual

Computes the global coordinates from given element's local coordinates.

Parameters
answerRequested global coordinates.
lcoordsLocal coordinates.
Returns
Nonzero if successful, zero otherwise.

Reimplemented from oofem::Element.

Definition at line 442 of file libeam2dnl.C.

References oofem::FloatArray::at(), oofem::DofManager::giveCoordinate(), oofem::Element::giveNode(), and oofem::FloatArray::resize().

◆ computeGtoLRotationMatrix()

bool oofem::LIBeam2dNL::computeGtoLRotationMatrix ( FloatMatrix & answer)
overridevirtual

Returns transformation matrix from global c.s. to local element c.s., i.e. \( r_l =T r_g \). If no transformation is necessary then answer is empty matrix and zero value is returned.

Parameters
answerComputed rotation matrix.
Returns
Nonzero if transformation is necessary, zero otherwise.

Reimplemented from oofem::Element.

Definition at line 342 of file libeam2dnl.C.

References oofem::FloatMatrix::at(), givePitch(), pitch, oofem::FloatMatrix::resize(), and oofem::FloatMatrix::zero().

◆ computeInitialStressMatrix()

void oofem::LIBeam2dNL::computeInitialStressMatrix ( FloatMatrix & answer,
TimeStep * tStep )
overridevirtual

Computes initial stress matrix for linear stability problem. Default implementation is not provided. Please note, that initial stress matrix depends on normal forces of element, corresponding engineering model must take this into account.

Parameters
answerComputed initial stress matrix.
tStepTime step.

Reimplemented from oofem::StructuralElement.

Definition at line 256 of file libeam2dnl.C.

References oofem::FloatMatrix::add(), oofem::FloatArray::at(), computeNLBMatrixAt(), computeVolumeAround(), oofem::Element::giveDefaultIntegrationRulePtr(), oofem::FloatArray::giveSize(), oofem::StructuralMaterialStatus::giveStressVector(), oofem::FloatMatrix::isNotEmpty(), oofem::FloatMatrix::resize(), oofem::FloatMatrix::times(), and oofem::FloatMatrix::zero().

◆ computeLength()

double oofem::LIBeam2dNL::computeLength ( )
overrideprotectedvirtual

Computes the length (zero for all but 1D geometries)

Returns
Element length.

Reimplemented from oofem::Element.

Definition at line 458 of file libeam2dnl.C.

References oofem::DofManager::giveCoordinate(), oofem::Element::giveNode(), and length.

Referenced by computeBmatrixAt(), computeEdgeVolumeAround(), computeLumpedMassMatrix(), computeNLBMatrixAt(), computeNmatrixAt(), and computeVolumeAround().

◆ computeLoadGToLRotationMtrx()

int oofem::LIBeam2dNL::computeLoadGToLRotationMtrx ( FloatMatrix & answer)
overrideprotectedvirtual

Returns transformation matrix from global coordinate system to local element coordinate system for element load vector components. If no transformation is necessary, answer is empty matrix (default);

Parameters
answerTransformation matrix.
Returns
Nonzero if transformation matrix is not empty matrix, zero otherwise.

Reimplemented from oofem::StructuralElement.

Definition at line 538 of file libeam2dnl.C.

References oofem::FloatMatrix::at(), givePitch(), pitch, oofem::FloatMatrix::resize(), and oofem::FloatMatrix::zero().

◆ computeLoadLEToLRotationMatrix()

int oofem::LIBeam2dNL::computeLoadLEToLRotationMatrix ( FloatMatrix & answer,
int iEdge,
GaussPoint * gp )
overrideprotectedvirtual

Returns transformation matrix from local edge c.s to element local coordinate system of load vector components. Necessary, because integration must be done in local coordinate system of entity (edge or surface). If no transformation is necessary, answer is empty matrix (default);

Parameters
answerComputed rotation matrix.
iEdgeEdge number.
gpIntegration point (point, where transformation is computed, useful for curved edges).
Returns
Nonzero if transformation matrix is not empty matrix, zero otherwise.

Reimplemented from oofem::StructuralElement.

Definition at line 565 of file libeam2dnl.C.

References oofem::FloatMatrix::clear().

◆ computeLumpedMassMatrix()

void oofem::LIBeam2dNL::computeLumpedMassMatrix ( FloatMatrix & answer,
TimeStep * tStep )
overridevirtual

Computes lumped mass matrix of receiver. Default implementation returns lumped consistent mass matrix. Then returns lumped mass transformed into nodal coordinate system. The lumping procedure zeroes all off-diagonal members and zeroes also all diagonal members corresponding to non-displacement DOFs. Such diagonal matrix is then rescaled, to preserve the element mass. Requires the computeNmatrixAt and giveMassMtrxIntegrationgMask services to be implemented.

Parameters
answerLumped mass matrix.
tStepTime step.

Reimplemented from oofem::StructuralElement.

Definition at line 295 of file libeam2dnl.C.

References oofem::FloatMatrix::at(), computeLength(), oofem::CS_Area, oofem::CrossSection::give(), oofem::Element::giveCrossSection(), oofem::StructuralElement::giveStructuralCrossSection(), oofem::Element::integrationRulesArray, oofem::FloatMatrix::resize(), and oofem::FloatMatrix::zero().

Referenced by computeMassMatrix().

◆ computeMassMatrix()

void oofem::LIBeam2dNL::computeMassMatrix ( FloatMatrix & answer,
TimeStep * tStep )
inlineoverridevirtual

Computes mass matrix of receiver. Default implementation returns consistent mass matrix and uses numerical integration. Returns result of this->computeConsistentMassMatrix service, transformed into nodal coordinate system. Requires the computeNmatrixAt and giveMassMtrxIntegrationgMask services to be implemented.

Parameters
answerMass matrix.
tStepTime step.

Reimplemented from oofem::StructuralElement.

Definition at line 59 of file libeam2dnl.h.

References computeLumpedMassMatrix().

◆ computeNLBMatrixAt()

void oofem::LIBeam2dNL::computeNLBMatrixAt ( FloatMatrix & answer,
GaussPoint * gp,
int i )
protected

◆ computeNmatrixAt()

void oofem::LIBeam2dNL::computeNmatrixAt ( const FloatArray & iLocCoord,
FloatMatrix & answer )
overrideprotectedvirtual

Computes interpolation matrix for element unknowns. The order and meaning of unknowns is element dependent.

Parameters
iLocCoordLocal coordinates.
answerInterpolation matrix evaluated at gp.

Reimplemented from oofem::StructuralElement.

Definition at line 312 of file libeam2dnl.C.

References oofem::FloatArray::at(), oofem::FloatMatrix::at(), computeLength(), oofem::FloatMatrix::resize(), and oofem::FloatMatrix::zero().

◆ computeNumberOfDofs()

int oofem::LIBeam2dNL::computeNumberOfDofs ( )
inlineoverridevirtual

Computes or simply returns total number of element's local DOFs. Must be defined by particular element.

Returns
Number of local DOFs of element.

Reimplemented from oofem::Element.

Definition at line 76 of file libeam2dnl.h.

◆ computeStrainVectorInLayer()

void oofem::LIBeam2dNL::computeStrainVectorInLayer ( FloatArray & answer,
const FloatArray & masterGpStrain,
GaussPoint * masterGp,
GaussPoint * slaveGp,
TimeStep * tStep )
overridevirtual

Computes full 3D strain vector in element layer. This function is necessary if layered cross section is specified..

Parameters
answerFull layer strain vector.
masterGpStrainGeneralized strain at master gauss point.
masterGpElement integration point.
slaveGpSlave integration point representing particular layer.
tStepTime step.

Implements oofem::LayeredCrossSectionInterface.

Definition at line 414 of file libeam2dnl.C.

References oofem::FloatArray::at(), oofem::CS_BottomZCoord, oofem::CS_TopZCoord, oofem::CrossSection::give(), oofem::Element::giveCrossSection(), oofem::GaussPoint::giveNaturalCoordinate(), and oofem::FloatArray::resize().

◆ computeStressVector()

void oofem::LIBeam2dNL::computeStressVector ( FloatArray & answer,
const FloatArray & strain,
GaussPoint * gp,
TimeStep * tStep )
overridevirtual

Computes the stress vector of receiver at given integration point, at time step tStep. The nature of these stresses depends on the element's type.

Parameters
answerStress vector.
strainStrain vector.
gpIntegration point.
tStepTime step.

Implements oofem::StructuralElement.

Definition at line 394 of file libeam2dnl.C.

References oofem::StructuralCrossSection::giveGeneralizedStress_Beam2d(), and oofem::StructuralElement::giveStructuralCrossSection().

◆ computeVolumeAround()

double oofem::LIBeam2dNL::computeVolumeAround ( GaussPoint * gp)
overridevirtual

Returns volume related to given integration point. Used typically in subroutines, that perform integration over element volume. Should be implemented by particular elements.

See also
GaussPoint
Parameters
gpIntegration point for which volume is computed.
Returns
Volume for integration point.

Reimplemented from oofem::Element.

Definition at line 367 of file libeam2dnl.C.

References computeLength(), and oofem::GaussPoint::giveWeight().

Referenced by computeInitialStressMatrix().

◆ drawDeformedGeometry()

void oofem::LIBeam2dNL::drawDeformedGeometry ( oofegGraphicContext & gc,
TimeStep * tStep,
UnknownType type )
overridevirtual

◆ drawRawGeometry()

void oofem::LIBeam2dNL::drawRawGeometry ( oofegGraphicContext & gc,
TimeStep * tStep )
overridevirtual

◆ giveClassName()

const char * oofem::LIBeam2dNL::giveClassName ( ) const
inlineoverridevirtual
Returns
Class name of the receiver.

Reimplemented from oofem::Element.

Definition at line 84 of file libeam2dnl.h.

◆ giveDofManDofIDMask()

void oofem::LIBeam2dNL::giveDofManDofIDMask ( int inode,
IntArray & answer ) const
overridevirtual

Returns dofmanager dof mask for node. This mask defines the dofs which are used by element in node. Mask influences the code number ordering for particular node. Code numbers are ordered according to node order and dofs belonging to particular node are ordered according to this mask. If element requests dofs using node mask which are not in node then error is generated. This masking allows node to be shared by different elements with different dofs in same node. Elements local code numbers are extracted from node using this mask. Must be defined by particular element.

Parameters
inodeMask is computed for local dofmanager with inode number.
answerMask for node.

Reimplemented from oofem::Element.

Definition at line 435 of file libeam2dnl.C.

◆ giveEdgeDofMapping()

void oofem::LIBeam2dNL::giveEdgeDofMapping ( IntArray & answer,
int iEdge ) const
overrideprotectedvirtual

Assembles edge dof mapping mask, which provides mapping between edge local DOFs and "global" element DOFs. Mask can be imagined as local edge code numbers used to localize local edge DOFs to element DOFs.

Parameters
answerEdge DOF mapping.
iEdgeEdge number.

Reimplemented from oofem::StructuralElement.

Definition at line 504 of file libeam2dnl.C.

References oofem::IntArray::at(), OOFEM_ERROR, and oofem::IntArray::resize().

◆ giveGeometryType()

Element_Geometry_Type oofem::LIBeam2dNL::giveGeometryType ( ) const
inlineoverridevirtual

Returns the element geometry type. This information is assumed to be of general interest, but it is required only for some specialized tasks.

Returns
Geometry type of element.

Implements oofem::Element.

Definition at line 94 of file libeam2dnl.h.

◆ giveInputRecordName()

const char * oofem::LIBeam2dNL::giveInputRecordName ( ) const
inlineoverridevirtual
Returns
Input record name of the receiver.

Implements oofem::FEMComponent.

Definition at line 83 of file libeam2dnl.h.

References _IFT_LIBeam2dNL_Name.

◆ giveIntegrationDomain()

integrationDomain oofem::LIBeam2dNL::giveIntegrationDomain ( ) const
inlineoverridevirtual

Returns integration domain for receiver, used to initialize integration point over receiver volume. Default behavior is taken from the default interpolation.

Returns
Integration domain of element.

Reimplemented from oofem::Element.

Definition at line 92 of file libeam2dnl.h.

References oofem::_Line.

◆ giveInterface()

Interface * oofem::LIBeam2dNL::giveInterface ( InterfaceType t)
overridevirtual

Interface requesting service.

See also
InterfaceType
Returns
Requested interface if implemented, otherwise NULL.

Reimplemented from oofem::FEMComponent.

Definition at line 63 of file libeam2dnl.C.

References oofem::LayeredCrossSectionInterface::LayeredCrossSectionInterface(), and oofem::LayeredCrossSectionInterfaceType.

◆ giveIPValue()

int oofem::LIBeam2dNL::giveIPValue ( FloatArray & answer,
GaussPoint * gp,
InternalStateType type,
TimeStep * tStep )
overridevirtual

Returns the integration point corresponding value in full form.

Parameters
answerContain corresponding integration point value, zero sized if not available.
gpIntegration point to check.
typeDetermines the type of internal variable.
tStepTime step.
Returns
Nonzero if o.k, zero otherwise.
Todo
This should be a common inheritance for all 3d beams (and a similar one for 2D beams) to support all the sensible moment/force tensors.
Todo
Which "error type" should be used? Why are there several? I don't see the point of this enum when there could be different function calls just as well (and different IST values)

Reimplemented from oofem::Element.

Definition at line 377 of file libeam2dnl.C.

References oofem::StructuralElement::giveIPValue(), oofem::GaussPoint::giveMaterialStatus(), oofem::StructuralMaterialStatus::giveStrainVector(), and oofem::StructuralMaterialStatus::giveStressVector().

◆ giveMaterialMode()

MaterialMode oofem::LIBeam2dNL::giveMaterialMode ( )
inlineoverridevirtual

Returns material mode for receiver integration points. Should be specialized.

Returns
Material mode of element.

Reimplemented from oofem::Element.

Definition at line 93 of file libeam2dnl.h.

◆ givePitch()

double oofem::LIBeam2dNL::givePitch ( )
protected

◆ initializeFrom()

void oofem::LIBeam2dNL::initializeFrom ( InputRecord & ir,
int priority )
overridevirtual

Reimplemented from oofem::Element.

Definition at line 497 of file libeam2dnl.C.

References oofem::NLStructuralElement::initializeFrom().

Member Data Documentation

◆ length

double oofem::LIBeam2dNL::length
protected

Definition at line 52 of file libeam2dnl.h.

Referenced by computeLength(), and LIBeam2dNL().

◆ pitch

double oofem::LIBeam2dNL::pitch
protected

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

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