57 #ifndef FourNodeQuad_h 58 #define FourNodeQuad_h 60 #include "domain/mesh/element/plane/QuadBase4N.h" 61 #include "domain/mesh/element/utils/physical_properties/SolidMech2D.h" 62 #include "domain/mesh/element/utils/body_forces/BodyForces2D.h" 82 static double matrixData[64];
85 static double shp[3][4];
88 double shapeFunction(
const GaussPoint &gp)
const;
89 void setPressureLoadAtNodes(
void);
96 FourNodeQuad(
int tag,
int nd1,
int nd2,
int nd3,
int nd4,
NDMaterial &m,
const std::string &type,
double t,
double pressure = 0.0,
double rho = 0.0,
const BodyForces2D &bForces=
BodyForces2D());
115 inline double getRho(
void)
const 117 void setRho(
const double &r)
119 double getThickness(
void)
const 121 void setThickness(
const double &t)
133 void Print(std::ostream &s,
int flag =0);
145 double detJ(
const double &,
const double &)
const;
int addLoad(ElementalLoad *theLoad, double loadFactor)
Adds a load over element.
Definition: FourNodeQuad.cpp:336
Body forces over an element.
Definition: BodyForces2D.h:39
Float vector abstraction.
Definition: Vector.h:93
const Matrix & getTangentStiff(void) const
Return the tangent stiffness matrix.
Definition: FourNodeQuad.cpp:180
Element * getCopy(void) const
Virtual constructor.
Definition: FourNodeQuad.cpp:100
int getNumDOF(void) const
Return the number of element DOFs.
Definition: FourNodeQuad.cpp:118
int updateParameter(int parameterID, Information &info)
Updates the parameter identified by parameterID with info.
Definition: FourNodeQuad.cpp:664
Definition: Response.h:71
virtual ~FourNodeQuad(void)
Destructor.
Definition: FourNodeQuad.cpp:104
int setParameter(const std::vector< std::string > &argv, Parameter ¶m)
Sets the value param to the parameter argv.
Definition: FourNodeQuad.cpp:637
int sendData(CommParameters &)
Send object members through the channel being passed as parameter.
Definition: FourNodeQuad.cpp:492
bool check_material_type(const std::string &type) const
Checks the material type.
Definition: FourNodeQuad.cpp:114
Uniaxial p-y material that incorporates liquefaction effects.
Definition: PyLiq1.h:60
SolidMech2D physicalProperties
pointers to the material objects and physical properties.
Definition: ElemWithMaterial.h:43
3D position of Gauss points.
Definition: GaussPoint.h:37
Base class for 4 node quads.
Definition: QuadBase4N.h:44
Base class for the finite elements.
Definition: Element.h:109
const GaussModel & getGaussModel(void) const
Return the Gauss points of the element.
Definition: FourNodeQuad.cpp:332
void setDomain(Domain *theDomain)
Sets domain pointer and computes the consistent load vector due to pressure.
Definition: FourNodeQuad.cpp:122
int addInertiaLoadToUnbalance(const Vector &accel)
Adds inertia loads.
Definition: FourNodeQuad.cpp:343
Uniaxial t-z material that incorporates liquefaction effects.
Definition: TzLiq1.h:60
int sendSelf(CommParameters &)
Sends object through the channel being passed as parameter.
Definition: FourNodeQuad.cpp:512
Base class for Gauss integration models.
Definition: GaussModel.h:40
int recvSelf(const CommParameters &)
Receives object through the channel being passed as parameter.
Definition: FourNodeQuad.cpp:527
Response * setResponse(const std::vector< std::string > &argv, Information &eleInformation)
setResponse() is a method invoked to determine if the element will respond to a request for a certain...
Definition: FourNodeQuad.cpp:593
int getResponse(int responseID, Information &eleInformation)
Obtain information from an analysis.
Definition: FourNodeQuad.cpp:613
Base class for 2D and 3D materials.
Definition: NDMaterial.h:97
const Vector & getResistingForce(void) const
Return the element resisting force.
Definition: FourNodeQuad.cpp:388
const Vector & getResistingForceIncInertia(void) const
Return the resisting force of the element including inertia.
Definition: FourNodeQuad.cpp:439
const Matrix & getMass(void) const
Return the mass matrix.
Definition: FourNodeQuad.cpp:292
FourNodeQuad(void)
Constructor.
Definition: FourNodeQuad.cpp:94
int update(void)
Update the values of the state variables.
Definition: FourNodeQuad.cpp:134
Open source finite element program for structural analysis.
Definition: ContinuaReprComponent.h:34
int recvData(const CommParameters &)
Receives object members through the channel being passed as parameter.
Definition: FourNodeQuad.cpp:502
Communication parameters between processes.
Definition: CommParameters.h:65
Matrix of floats.
Definition: Matrix.h:108
Four node quad.
Definition: FourNodeQuad.h:73
Definition: Parameter.h:65
Base class for loads over elements.
Definition: ElementalLoad.h:77
void Print(std::ostream &s, int flag=0)
Prints element information.
Definition: FourNodeQuad.cpp:547
Domain (mesh and boundary conditions) of the finite element model.
Definition: Domain.h:116
const Matrix & getInitialStiff(void) const
Return the initial tangent stiffness matrix.
Definition: FourNodeQuad.cpp:238