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root/group/trunk/OOPSE/libmdtools/Thermo.cpp
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Comparing trunk/OOPSE/libmdtools/Thermo.cpp (file contents):
Revision 454 by gezelter, Fri Apr 4 01:57:11 2003 UTC vs.
Revision 572 by mmeineke, Wed Jul 2 21:26:55 2003 UTC

# Line 125 | Line 125 | int Thermo::getNDF(){
125    return total;
126   }
127  
128 < int Thermo::getNDF(){
129 <  int ndf_local, ndf;
128 > double Thermo::getTemperature(){
129 >
130 >  const double kb = 1.9872179E-3; // boltzman's constant in kcal/(mol K)
131 >  double temperature;
132    
133 <  ndf_local = 3 * entry_plug->n_atoms + 3 * entry_plug->n_oriented
134 <    - entry_plug->n_constraints;
133 >  temperature = ( 2.0 * this->getKinetic() ) / ((double)entry_plug->ndf * kb );
134 >  return temperature;
135 > }
136  
137 < #ifdef IS_MPI
135 <  MPI_Allreduce(&ndf_local,&ndf,1,MPI_INT,MPI_SUM, MPI_COMM_WORLD);
136 < #else
137 <  ndf = ndf_local;
138 < #endif
137 > double Thermo::getEnthalpy() {
138  
139 <  ndf = ndf - 3;
139 >  const double e_convert = 4.184E-4; // convert kcal/mol -> (amu A^2)/fs^2
140 >  double u, p, v;
141 >  double press[9];
142  
143 <  return ndf;
143 < }
143 >  u = this->getTotalE();
144  
145 < int Thermo::getNDFraw() {
146 <  int ndfRaw_local, ndfRaw;
145 >  this->getPressureTensor(press);
146 >  p = (press[0] + press[4] + press[8]) / 3.0;
147  
148 <  // Raw degrees of freedom that we have to set
149 <  ndfRaw_local = 3 * entry_plug->n_atoms + 3 * entry_plug->n_oriented;
150 <  
151 < #ifdef IS_MPI
152 <  MPI_Allreduce(&ndfRaw_local,&ndfRaw,1,MPI_INT,MPI_SUM, MPI_COMM_WORLD);
153 < #else
154 <  ndfRaw = ndfRaw_local;
155 < #endif
148 >  v = this->getVolume();
149  
150 <  return ndfRaw;
150 >  return (u + (p*v)/e_convert);
151   }
152  
153 + double Thermo::getVolume() {
154 +  return entry_plug->boxVol;
155 + }
156  
157 < double Thermo::getTemperature(){
158 <
159 <  const double kb = 1.9872179E-3; // boltzman's constant in kcal/(mol K)
164 <  double temperature;
157 > double Thermo::getPressure() {
158 >  // returns the pressure in units of atm
159 >  // Relies on the calculation of the full molecular pressure tensor
160    
161 <  temperature = ( 2.0 * this->getKinetic() ) / ( (double)this->getNDF() * kb );
162 <  return temperature;
161 >  const double p_convert = 1.63882576e8;
162 >  double press[9];
163 >  double pressure;
164 >
165 >  this->getPressureTensor(press);
166 >
167 >  pressure = p_convert * (press[0] + press[4] + press[8]) / 3.0;
168 >
169 >  return pressure;
170   }
171  
172 < double Thermo::getPressure(){
173 <  // returns pressure in units amu*fs^-2*Ang^-1
172 >
173 > void Thermo::getPressureTensor(double press[9]){
174 >  // returns pressure tensor in units amu*fs^-2*Ang^-1
175    // routine derived via viral theorem description in:
176    // Paci, E. and Marchi, M. J.Phys.Chem. 1996, 100, 4314-4322
177  
178 <  return 0.0;
178 >  const double e_convert = 4.184e-4;
179 >
180 >  double molmass, volume;
181 >  double vcom[3];
182 >  double p_local[9], p_global[9];
183 >  double theBox[3];
184 >  //double* tau;
185 >  int i, nMols;
186 >  Molecule* molecules;
187 >
188 >  nMols = entry_plug->n_mol;
189 >  molecules = entry_plug->molecules;
190 >  //tau = entry_plug->tau;
191 >
192 >  // use velocities of molecular centers of mass and molecular masses:
193 >  for (i=0; i < 9; i++) {    
194 >    p_local[i] = 0.0;
195 >    p_global[i] = 0.0;
196 >  }
197 >
198 >  for (i=0; i < nMols; i++) {
199 >    molmass = molecules[i].getCOMvel(vcom);
200 >
201 >    p_local[0] += molmass * (vcom[0] * vcom[0]);
202 >    p_local[1] += molmass * (vcom[0] * vcom[1]);
203 >    p_local[2] += molmass * (vcom[0] * vcom[2]);
204 >    p_local[3] += molmass * (vcom[1] * vcom[0]);
205 >    p_local[4] += molmass * (vcom[1] * vcom[1]);
206 >    p_local[5] += molmass * (vcom[1] * vcom[2]);
207 >    p_local[6] += molmass * (vcom[2] * vcom[0]);
208 >    p_local[7] += molmass * (vcom[2] * vcom[1]);
209 >    p_local[8] += molmass * (vcom[2] * vcom[2]);
210 >  }
211 >
212 >  // Get total for entire system from MPI.
213 >
214 > #ifdef IS_MPI
215 >  MPI_Allreduce(p_local,p_global,9,MPI_DOUBLE, MPI_SUM, MPI_COMM_WORLD);
216 > #else
217 >  for (i=0; i<9; i++) {
218 >    p_global[i] = p_local[i];
219 >  }
220 > #endif // is_mpi
221 >
222 >  volume = entry_plug->boxVol;
223 >
224 >  for(i=0; i<9; i++) {
225 >    press[i] = (p_global[i] - entry_plug->tau[i]*e_convert) / volume;
226 >  }
227   }
228  
229   void Thermo::velocitize() {
# Line 186 | Line 237 | void Thermo::velocitize() {
237    const double kb = 8.31451e-7; // kb in amu, angstroms, fs, etc.
238    double av2;
239    double kebar;
189  int ndf, ndf_local; // number of degrees of freedom
190  int ndfRaw, ndfRaw_local; // the raw number of degrees of freedom
240    int n_atoms;
241    Atom** atoms;
242    DirectionalAtom* dAtom;
# Line 201 | Line 250 | void Thermo::velocitize() {
250    n_oriented    = entry_plug->n_oriented;
251    n_constraints = entry_plug->n_constraints;
252    
253 <  kebar = kb * temperature * (double)this->getNDF() /
254 <    ( 2.0 * (double)this->getNDFraw() );
253 >  kebar = kb * temperature * (double)entry_plug->ndf /
254 >    ( 2.0 * (double)entry_plug->ndfRaw );
255    
256    for(vr = 0; vr < n_atoms; vr++){
257      

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