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mmacontainingelementprojection.h
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34 
35 #ifndef mmacontainingelementprojection_h
36 #define mmacontainingelementprojection_h
37 
39 
40 namespace oofem {
41 class Domain;
42 class Element;
43 class TimeStep;
44 
51 {
52 protected:
54 
55 public:
58 
59  virtual void __init(Domain *dold, IntArray &type, const FloatArray &coords, Set &sourceElemSet, TimeStep *tStep, bool iCohesiveZoneGP = false);
60 
61  virtual void finish(TimeStep *tStep) { }
62 
63  virtual int __mapVariable(FloatArray &answer, const FloatArray &coords, InternalStateType type, TimeStep *tStep);
64 
65  virtual int mapStatus(MaterialStatus &oStatus) const;
66 
67  virtual const char *giveClassName() const { return "MMAContainingElementProjection"; }
68 };
69 } // end namespace oofem
70 #endif // mmacontainingelementprojection_h
InternalStateType
Type representing the physical meaning of element or constitutive model internal variable.
Class and object Domain.
Definition: domain.h:115
The class representing the general material model mapping algorithm.
virtual void finish(TimeStep *tStep)
Finishes the mapping for given time step.
Class implementing an array of integers.
Definition: intarray.h:61
virtual const char * giveClassName() const
Returns class name of the receiver.
Set of elements, boundaries, edges and/or nodes.
Definition: set.h:66
Abstract base class representing a material status information.
Definition: matstatus.h:84
Class representing vector of real numbers.
Definition: floatarray.h:82
The class implements the transfer of internal variables based on containing element The element conta...
the oofem namespace is to define a context or scope in which all oofem names are defined.
Class representing integration point in finite element program.
Definition: gausspoint.h:93
Class representing solution step.
Definition: timestep.h:80

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