[1] | 1 | /*! \file Penta.h
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| 2 | * \brief: header file for penta object
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| 3 | */
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| 4 |
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| 5 | #ifndef _PENTA_H
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| 6 | #define _PENTA_H
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| 7 |
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| 8 | #include "./Object.h"
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| 9 | #include "./Element.h"
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| 10 | #include "./Matpar.h"
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| 11 | #include "./Matice.h"
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| 12 | #include "./Node.h"
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[96] | 13 | #include "./Tria.h"
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[1] | 14 |
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| 15 | class Penta: public Element{
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| 16 |
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| 17 | private:
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| 18 | int id;
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| 19 |
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| 20 | /*nodes: */
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| 21 | int node_ids[6]; //node ids
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| 22 | Node* nodes[6]; //node pointers
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| 23 | int node_offsets[6]; //node offsets in nodes dataset
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| 24 |
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| 25 | /*materials: */
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| 26 | int mid;
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| 27 | Matice* matice;
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| 28 | int matice_offset;
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| 29 |
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| 30 | int mparid;
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| 31 | Matpar* matpar;
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| 32 | int matpar_offset;
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| 33 |
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| 34 |
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| 35 | double h[6];
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| 36 | double s[6];
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| 37 | double b[6];
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| 38 | double k[6];
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[128] | 39 | double melting[6];
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| 40 | double accumulation[6];
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[1] | 41 | int friction_type;
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| 42 | double p;
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| 43 | double q;
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| 44 | int shelf;
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| 45 | int onbed;
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| 46 | int onsurface;
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| 47 | double meanvel;/*!scaling ratio for velocities*/
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| 48 | double epsvel; /*!minimum velocity to avoid infinite velocity ratios*/
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| 49 | int collapse;
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| 50 | double geothermalflux[6];
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| 51 | int artdiff;
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| 52 | int thermal_steadystate;
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[111] | 53 | double viscosity_overshoot;
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[1] | 54 |
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| 55 | public:
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| 56 |
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| 57 | Penta();
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[96] | 58 | Penta( int id, int mid, int mparid, int node_ids[6], double h[6], double s[6], double b[6], double k[6], int friction_type,
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[46] | 59 | double p, double q, int shelf, int onbed, int onsurface, double meanvel,double epsvel,
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| 60 | int collapse, double melting[6], double accumulation[6], double geothermalflux[6],
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[111] | 61 | int artdiff, int thermal_steadystate,double viscosity_overshoot);
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[1] | 62 | ~Penta();
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| 63 |
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| 64 | void Echo();
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| 65 | void Marshall(char** pmarshalled_dataset);
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| 66 | int MarshallSize();
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| 67 | char* GetName();
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| 68 | void Demarshall(char** pmarshalled_dataset);
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| 69 | int Enum();
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| 70 | int GetId();
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| 71 | int MyRank();
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| 72 | void Configure(void* loads,void* nodes,void* materials);
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| 73 | void CreateKMatrix(Mat Kgg,ParameterInputs* inputs,int analysis_type);
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[96] | 74 | void CreateKMatrixDiagnosticHoriz( Mat Kgg, ParameterInputs* inputs, int analysis_type);
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[128] | 75 | void CreateKMatrixDiagnosticVert( Mat Kgg, ParameterInputs* inputs, int analysis_type);
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[1] | 76 | void CreatePVector(Vec pg, ParameterInputs* inputs, int analysis_type);
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| 77 | void UpdateFromInputs(ParameterInputs* inputs);
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[96] | 78 | void GetDofList(int* doflist,int* pnumberofdofs);
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[1] | 79 | Matpar* GetMatPar();
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| 80 | int GetShelf();
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| 81 | void GetNodes(Node** nodes);
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| 82 | int GetOnBed();
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| 83 | void Du(Vec du_g,double* u_g,double* u_g_obs,ParameterInputs* inputs,int analysis_type);
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| 84 | void Gradj(Vec grad_g,double* u_g,double* lambda_g,ParameterInputs* inputs,int analysis_type,char* control_type);
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| 85 | void GradjDrag(Vec grad_g,double* u_g,double* lambda_g,ParameterInputs* inputs,int analysis_type);
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| 86 | void GradjB(Vec grad_g,double* u_g,double* lambda_g,ParameterInputs* inputs,int analysis_type);
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| 87 | double Misfit(double* u_g,double* u_g_obs,ParameterInputs* inputs,int analysis_type);
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| 88 |
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| 89 | void GetThicknessList(double* thickness_list);
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| 90 | void GetBedList(double* bed_list);
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| 91 | Object* copy();
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[96] | 92 | Tria* SpawnTria(int g0, int g1, int g2);
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[1] | 93 |
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[96] | 94 | void GetStrainRate(double* epsilon, double* velocity, double* xyz_list, double* gauss_l1l2l3l4);
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| 95 | void GetB(double* pB, double* xyz_list, double* gauss_l1l2l3l4);
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| 96 | void GetBPrime(double* B, double* xyz_list, double* gauss_l1l2l3l4);
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[128] | 97 | void GetB_vert(double* B, double* xyz_list, double* gauss_l1l2l3l4);
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| 98 | void GetBPrime_vert(double* B, double* xyz_list, double* gauss_l1l2l3l4);
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[96] | 99 | void GetJacobianDeterminant(double* Jdet, double* xyz_list,double* gauss_l1l2l3l4);
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| 100 | void GetNodalFunctionsDerivativesBasic(double* dh1dh2dh3dh4dh5dh6_basic,double* xyz_list, double* gauss_l1l2l3l4);
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| 101 | void GetJacobian(double* J, double* xyz_list,double* gauss_l1l2l3l4);
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| 102 | void GetNodalFunctionsDerivativesParams(double* dl1dl2dl3dl4dl5dl6,double* gauss_l1l2l3l4);
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| 103 | void GetJacobianInvert(double* Jinv, double* xyz_list,double* gauss_l1l2l3l4);
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| 104 | void CreatePVectorDiagnosticHoriz( Vec pg, ParameterInputs* inputs,int analysis_type);
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[128] | 105 | void CreatePVectorDiagnosticVert( Vec pg, ParameterInputs* inputs,int analysis_type);
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[96] | 106 | void GetParameterValue(double* pvalue, double* v_list,double* gauss_l1l2l3l4);
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| 107 | void GetParameterDerivativeValue(double* p, double* p_list,double* xyz_list, double* gauss_l1l2l3l4);
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| 108 | void GetNodalFunctions(double* l1l2l3l4l5l6, double* gauss_l1l2l3l4);
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| 109 | void VelocityExtrude(Vec ug,double* ug_serial);
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[1] | 110 |
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| 111 | };
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| 112 | #endif /* _PENTA_H */
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[96] | 113 |
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| 114 |
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