suanPan
T3D2S.h
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29 #ifndef T3D2S_H
30 #define T3D2S_H
31 
32 #include <Element/SectionElement.h>
33 
34 class Orientation;
35 
36 class T3D2S final : public SectionElement1D {
37  static constexpr unsigned t_node = 2, t_dof = 3, t_size = t_dof * t_node;
38 
39  const double length = 0.; // length of the element
40 
41  unique_ptr<Section> t_section; // section model
42  unique_ptr<Orientation> t_trans; // transformation
43 
44  const bool log_strain;
45 
46 public:
47  T3D2S(unsigned, // tag
48  uvec&&, // node tag
49  unsigned, // material tag
50  bool = false, // nonlinear geometry switch
51  bool = true // log strain switch
52  );
53 
54  int initialize(const shared_ptr<DomainBase>&) override;
55 
56  int update_status() override;
57 
58  int commit_status() override;
59  int clear_status() override;
60  int reset_status() override;
61 
62  vector<vec> record(OutputType) override;
63 
64  void print() override;
65 
66 #ifdef SUANPAN_VTK
67  void Setup() override;
68  void GetData(vtkSmartPointer<vtkDoubleArray>&, OutputType) override;
69  void SetDeformation(vtkSmartPointer<vtkPoints>&, double) override;
70 #endif
71 };
72 
73 #endif
74 
OutputType
Definition: OutputType.h:21
A Orientation class.
Definition: Orientation.h:40
Definition: SectionElement.h:50
The T3D2S class handles both linear and nonlinear problems by using a corotational transformation.
Definition: T3D2S.h:36
int initialize(const shared_ptr< DomainBase > &) override
Definition: T3D2S.cpp:28
void print() override
Definition: T3D2S.cpp:86
int update_status() override
Definition: T3D2S.cpp:42
int clear_status() override
Definition: T3D2S.cpp:72
vector< vec > record(OutputType) override
Definition: T3D2S.cpp:84
T3D2S(unsigned, uvec &&, unsigned, bool=false, bool=true)
Definition: T3D2S.cpp:23
int reset_status() override
Definition: T3D2S.cpp:78
int commit_status() override
Definition: T3D2S.cpp:66