00001
00002
00003
00004
00005
00006
00007
00008
00009
00010
00011
00012
00013
00014
00015
00016
00017
00018
00019
00020
00021
00022 #ifndef MECHSYS_LABTESTSIM_EQUIPMENT_H
00023 #define MECHSYS_LABTESTSIM_EQUIPMENT_H
00024
00025 #ifdef HAVE_CONFIG_H
00026 #include "config.h"
00027 #else
00028 #ifndef REAL
00029 #define REAL double
00030 #endif
00031 #endif
00032
00033 #include <cmath>
00034 #include <fstream>
00035
00036 #include "models/equilibmodel.h"
00037 #include "tensors/functions.h"
00038 #include "tensors/tensors.h"
00039 #include "util/numstreams.h"
00040 #include "util/exception.h"
00041 #include "util/string.h"
00042 #include "util/array.h"
00043 #include "util/util.h"
00044
00045 namespace LabTestSim
00046 {
00047
00048
00049 struct State
00050 {
00051 REAL Sa;
00052 REAL Sr;
00053 REAL St;
00054 REAL Pp;
00055 };
00056
00057 template<typename T_Model>
00058 class Equipment
00059 {
00060 public:
00061
00062
00063 Equipment (T_Model * pModel, String const & strEquipment, bool StopOnFailure, bool SaveIntStates, bool Silent=false);
00064
00065
00066 virtual ~Equipment() {}
00067
00068
00069 void Run (int nDiv, Array<State> const & States);
00070 void WriteFile (String const & Filename, bool PrintPrincVals=false, bool PrintHead=true);
00071 int nStates () const { return _SIG.size(); }
00072 Tensors::Tensor2 const & Sig (int i_state) const { return _SIG[i_state]; }
00073 Tensors::Tensor2 const & Eps (int i_state) const { return _EPS[i_state]; }
00074
00075 protected:
00076
00077 T_Model * _model;
00078 String _equipment;
00079 bool _stop_on_failure;
00080 bool _save_int_states;
00081 bool _silent;
00082
00083
00084 virtual int _exx_idx() const =0;
00085 virtual bool _do_update_one_increment(State const & DeltaState) =0;
00086
00087 private:
00088
00089 Array<Tensors::Tensor2> _SIG;
00090 Array<Tensors::Tensor2> _EPS;
00091 Array<Array<REAL> > _ISV;
00092 Array<REAL > _PPR;
00093
00094 };
00095
00096
00098
00099
00100 template<typename T_Model>
00101 inline Equipment<T_Model>::Equipment(T_Model * pModel, String const & strEquipment, bool StopOnFailure, bool SaveIntStates, bool Silent)
00102 : _model (pModel) ,
00103 _equipment (strEquipment) ,
00104 _stop_on_failure (StopOnFailure),
00105 _save_int_states (SaveIntStates),
00106 _silent (Silent)
00107 {
00108 }
00109
00110 template<typename T_Model>
00111 inline void Equipment<T_Model>::Run(int nDiv, Array<State> const & States )
00112 {
00113
00114 size_t n_states = States.size();
00115
00116
00117 if (_save_int_states)
00118 {
00119 _SIG.resize(1);
00120 _EPS.resize(1);
00121 _ISV.resize(1);
00122 #ifdef USE_COUPLEDMODEL
00123 _PPR.resize(1);
00124 #endif
00125 }
00126 else
00127 {
00128 _SIG.resize(n_states);
00129 _EPS.resize(n_states);
00130 _ISV.resize(n_states);
00131 #ifdef USE_COUPLEDMODEL
00132 _PPR.resize(n_states);
00133 #endif
00134 }
00135
00136
00137 Array<REAL> tmp_isv; _model->InternalStateValues(tmp_isv);
00138 _SIG[0] = _model->Sig();
00139 _EPS[0] = _model->Eps();
00140 _ISV[0] = tmp_isv;
00141 #ifdef USE_COUPLEDMODEL
00142 _PPR[0] = _model->Pp();
00143 #endif
00144
00145
00146 for (size_t i_state=1; i_state<n_states; ++i_state)
00147 {
00148
00149 Tensors::Tensor2 const & sig = _model->Sig();
00150 #ifdef USE_COUPLEDMODEL
00151 REAL ppr = _model->Pp();
00152 #endif
00153 State delta_state;
00154 delta_state.Sa = (States[i_state].Sa - sig(0))/nDiv;
00155 delta_state.Sr = (States[i_state].Sr - sig(1))/nDiv;
00156 delta_state.St = (States[i_state].St - sig(2))/nDiv;
00157 #ifdef USE_COUPLEDMODEL
00158 delta_state.Pp = (States[i_state].Pp - ppr )/nDiv;
00159 #endif
00160
00161
00162 for (int j=0; j<nDiv; ++j)
00163 {
00164 bool ok = _do_update_one_increment(delta_state);
00165 if (_save_int_states)
00166 {
00167 _model->InternalStateValues(tmp_isv);
00168 _SIG.push_back(_model->Sig());
00169 _EPS.push_back(_model->Eps());
00170 _ISV.push_back(tmp_isv);
00171 #ifdef USE_COUPLEDMODEL
00172 _PPR.push_back(_model->Pp());
00173 #endif
00174 }
00175 if ((!ok) && _stop_on_failure) return;
00176 if (!ok) break;
00177 }
00178
00179
00180 if (!_save_int_states)
00181 {
00182 _model->InternalStateValues(tmp_isv);
00183 _SIG[i_state] = _model->Sig();
00184 _EPS[i_state] = _model->Eps();
00185 _ISV[i_state] = tmp_isv;
00186 #ifdef USE_COUPLEDMODEL
00187 _PPR[i_state] = _model->Pp();
00188 #endif
00189 }
00190 }
00191 }
00192
00193 template<typename T_Model>
00194 inline void Equipment<T_Model>::WriteFile(String const & Filename, bool PrintPrincVals, bool PrintHead)
00195 {
00196
00197 using Util::_8s;
00198
00199 std::ofstream of(Filename.GetSTL().c_str(), std::ios::out);
00200 if (!of.fail())
00201 {
00202 if (PrintHead)
00203 {
00204
00205 of << _8s()<< "p" << _8s()<< "q" << _8s()<< "sin3th" << _8s()<< "Ev" << _8s()<< "Ed";
00206 of << _8s()<< "Sa" << _8s()<< "Sr" << _8s()<< "St" << _8s()<< "Sat";
00207 of << _8s()<< "Ea" << _8s()<< "Er" << _8s()<< "Et" << _8s()<< "Eat";
00208
00209
00210 Array<String> names; _model->InternalStateNames(names);
00211 for (size_t i=0; i<names.size(); ++i)
00212 of << _8s()<< names[i];
00213
00214
00215 if (PrintPrincVals)
00216 {
00217 of << _8s()<< "S1" << _8s()<< "S2" << _8s()<< "S3";
00218 of << _8s()<< "E1" << _8s()<< "E2" << _8s()<< "E3";
00219 }
00220
00221 #ifdef USE_COUPLEDMODEL
00222
00223 of << _8s()<< "Pp";
00224 #endif
00225
00226
00227 of << std::endl;
00228 }
00229
00230 REAL sq2 = sqrt(2.0);
00231
00232 for (size_t i=0; i<_EPS.size(); ++i)
00233 {
00234
00235 REAL p,q,sin3th; Tensors::Tensor2 S; Tensors::Stress_p_q_S_sin3th(_SIG[i], p,q,S,sin3th);
00236 REAL Ev,Ed; Tensors::Strain_Ev_Ed (_EPS[i], Ev,Ed);
00237
00238
00239 of << _8s()<< p << _8s()<< q << _8s()<< sin3th << _8s()<< Ev*100.0 << _8s()<< Ed*100.0;
00240 of << _8s()<< _SIG[i](0) << _8s()<< _SIG[i](1) << _8s()<< _SIG[i](2) << _8s()<< _SIG[i](5)/sq2;
00241 of << _8s()<< _EPS[i](0)*100.0 << _8s()<< _EPS[i](1)*100.0 << _8s()<< _EPS[i](2)*100.0 << _8s()<< _EPS[i](5)*100.0/sq2;
00242
00243
00244 for (size_t j=0; j<_ISV[i].size(); ++j)
00245 of << _8s()<< _ISV[i][j];
00246
00247
00248 if (PrintPrincVals)
00249 {
00250 REAL S[3]; Tensors::Eigenvals(_SIG[i], S); Util::Sort(S,3);
00251 REAL E[3]; Tensors::Eigenvals(_EPS[i], E); Util::Sort(E,3);
00252 of << _8s()<< S[2] << _8s()<< S[1] << _8s()<< S[0];
00253 of << _8s()<< E[2] << _8s()<< E[1] << _8s()<< E[0];
00254 }
00255
00256 #ifdef USE_COUPLEDMODEL
00257
00258 of << _8s()<< _PPR[i];
00259 #endif
00260
00261
00262 of << std::endl;
00263 }
00264
00265 of.close();
00266 }
00267 else
00268 throw new Fatal(_("Equipment::WriteFile: Could not open file < %s > for output"), Filename.c_str());
00269
00270 }
00271
00272 };
00273
00274 #endif // MECHSYS_LABTESTSIM_EQUIPMENT_H
00275
00276