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root/group/trunk/OOPSE/libmdtools/NVT.cpp
Revision: 1125
Committed: Mon Apr 19 22:13:01 2004 UTC (20 years, 2 months ago) by gezelter
File size: 6725 byte(s)
Log Message:
Fixed a charge bug

File Contents

# User Rev Content
1 mmeineke 853 #include <math.h>
2    
3 gezelter 560 #include "Atom.hpp"
4     #include "SRI.hpp"
5     #include "AbstractClasses.hpp"
6     #include "SimInfo.hpp"
7     #include "ForceFields.hpp"
8     #include "Thermo.hpp"
9     #include "ReadWrite.hpp"
10     #include "Integrator.hpp"
11 tim 837 #include "simError.h"
12 mmeineke 561
13    
14 gezelter 560 // Basic thermostating via Hoover, Phys.Rev.A, 1985, Vol. 31 (5) 1695-1697
15    
16 tim 645 template<typename T> NVT<T>::NVT ( SimInfo *theInfo, ForceFields* the_ff):
17     T( theInfo, the_ff )
18 mmeineke 561 {
19 tim 837 GenericData* data;
20     DoubleData * chiValue;
21     DoubleData * integralOfChidtValue;
22    
23     chiValue = NULL;
24     integralOfChidtValue = NULL;
25    
26 gezelter 565 chi = 0.0;
27 gezelter 560 have_tau_thermostat = 0;
28     have_target_temp = 0;
29 tim 763 have_chi_tolerance = 0;
30     integralOfChidt = 0.0;
31    
32 tim 837
33 mmeineke 855 if( theInfo->useInitXSstate ){
34 tim 837
35 mmeineke 855 // retrieve chi and integralOfChidt from simInfo
36     data = info->getProperty(CHIVALUE_ID);
37     if(data){
38     chiValue = dynamic_cast<DoubleData*>(data);
39     }
40    
41     data = info->getProperty(INTEGRALOFCHIDT_ID);
42     if(data){
43     integralOfChidtValue = dynamic_cast<DoubleData*>(data);
44     }
45    
46     // chi and integralOfChidt should appear by pair
47     if(chiValue && integralOfChidtValue){
48     chi = chiValue->getData();
49     integralOfChidt = integralOfChidtValue->getData();
50     }
51 tim 837 }
52    
53 gezelter 1097
54     std::cerr << "building oldVel with \t" << integrableObjects.size() << "\n";
55     oldVel = new double[3*integrableObjects.size()];
56     oldJi = new double[3*integrableObjects.size()];
57 gezelter 560 }
58    
59 tim 763 template<typename T> NVT<T>::~NVT() {
60     delete[] oldVel;
61     delete[] oldJi;
62     }
63    
64 tim 645 template<typename T> void NVT<T>::moveA() {
65 tim 837
66 gezelter 600 int i, j;
67 gezelter 560 DirectionalAtom* dAtom;
68 gezelter 600 double Tb[3], ji[3];
69 mmeineke 778 double mass;
70 gezelter 600 double vel[3], pos[3], frc[3];
71    
72 gezelter 565 double instTemp;
73 gezelter 560
74 tim 763 // We need the temperature at time = t for the chi update below:
75    
76 gezelter 565 instTemp = tStats->getTemperature();
77 tim 837
78 gezelter 1097 for( i=0; i < integrableObjects.size(); i++ ){
79 gezelter 560
80 gezelter 1097 integrableObjects[i]->getVel( vel );
81     integrableObjects[i]->getPos( pos );
82     integrableObjects[i]->getFrc( frc );
83 gezelter 600
84 gezelter 1097 mass = integrableObjects[i]->getMass();
85 gezelter 600
86     for (j=0; j < 3; j++) {
87 tim 763 // velocity half step (use chi from previous step here):
88 gezelter 600 vel[j] += dt2 * ((frc[j] / mass ) * eConvert - vel[j]*chi);
89     // position whole step
90 gezelter 560 pos[j] += dt * vel[j];
91 gezelter 600 }
92 gezelter 560
93 gezelter 1097 integrableObjects[i]->setVel( vel );
94     integrableObjects[i]->setPos( pos );
95 tim 837
96 gezelter 1097 if( integrableObjects[i]->isDirectional() ){
97 gezelter 560
98     // get and convert the torque to body frame
99 tim 837
100 gezelter 1097 integrableObjects[i]->getTrq( Tb );
101     integrableObjects[i]->lab2Body( Tb );
102 tim 837
103 gezelter 560 // get the angular momentum, and propagate a half step
104    
105 gezelter 1097 integrableObjects[i]->getJ( ji );
106 gezelter 600
107 tim 837 for (j=0; j < 3; j++)
108 gezelter 600 ji[j] += dt2 * (Tb[j] * eConvert - ji[j]*chi);
109 tim 837
110 gezelter 1097 this->rotationPropagation( integrableObjects[i], ji );
111 tim 837
112 gezelter 1097 integrableObjects[i]->setJ( ji );
113 tim 837 }
114 gezelter 560 }
115 tim 837
116 mmeineke 768 if (nConstrained){
117     constrainA();
118     }
119 tim 763
120 tim 837 // Finally, evolve chi a half step (just like a velocity) using
121 tim 763 // temperature at time t, not time t+dt/2
122    
123 gezelter 1125 std::cerr << "targetTemp = " << targetTemp << " instTemp = " << instTemp << " tauThermostat = " << tauThermostat << " integral of Chi = " << integralOfChidt << "\n";
124    
125 tim 763 chi += dt2 * ( instTemp / targetTemp - 1.0) / (tauThermostat*tauThermostat);
126     integralOfChidt += chi*dt2;
127    
128 gezelter 560 }
129    
130 tim 645 template<typename T> void NVT<T>::moveB( void ){
131 tim 763 int i, j, k;
132 gezelter 600 double Tb[3], ji[3];
133     double vel[3], frc[3];
134     double mass;
135 tim 763 double instTemp;
136     double oldChi, prevChi;
137 gezelter 600
138 tim 763 // Set things up for the iteration:
139    
140     oldChi = chi;
141    
142 gezelter 1097 for( i=0; i < integrableObjects.size(); i++ ){
143 gezelter 600
144 gezelter 1097 integrableObjects[i]->getVel( vel );
145 gezelter 600
146 tim 763 for (j=0; j < 3; j++)
147     oldVel[3*i + j] = vel[j];
148 gezelter 600
149 gezelter 1097 if( integrableObjects[i]->isDirectional() ){
150 gezelter 600
151 gezelter 1097 integrableObjects[i]->getJ( ji );
152 gezelter 600
153 tim 763 for (j=0; j < 3; j++)
154     oldJi[3*i + j] = ji[j];
155 gezelter 600
156 tim 763 }
157     }
158 gezelter 600
159 tim 763 // do the iteration:
160 gezelter 600
161 tim 763 for (k=0; k < 4; k++) {
162 tim 837
163 tim 763 instTemp = tStats->getTemperature();
164    
165     // evolve chi another half step using the temperature at t + dt/2
166    
167     prevChi = chi;
168 tim 837 chi = oldChi + dt2 * ( instTemp / targetTemp - 1.0) /
169 tim 763 (tauThermostat*tauThermostat);
170 tim 837
171 gezelter 1097 for( i=0; i < integrableObjects.size(); i++ ){
172 tim 763
173 gezelter 1097 integrableObjects[i]->getFrc( frc );
174     integrableObjects[i]->getVel(vel);
175 tim 837
176 gezelter 1097 mass = integrableObjects[i]->getMass();
177 tim 837
178 tim 763 // velocity half step
179 tim 837 for (j=0; j < 3; j++)
180 tim 763 vel[j] = oldVel[3*i+j] + dt2 * ((frc[j] / mass ) * eConvert - oldVel[3*i + j]*chi);
181 tim 837
182 gezelter 1097 integrableObjects[i]->setVel( vel );
183 tim 837
184 gezelter 1097 if( integrableObjects[i]->isDirectional() ){
185 tim 837
186     // get and convert the torque to body frame
187    
188 gezelter 1097 integrableObjects[i]->getTrq( Tb );
189     integrableObjects[i]->lab2Body( Tb );
190 tim 837
191     for (j=0; j < 3; j++)
192 tim 763 ji[j] = oldJi[3*i + j] + dt2 * (Tb[j] * eConvert - oldJi[3*i+j]*chi);
193 tim 837
194 gezelter 1097 integrableObjects[i]->setJ( ji );
195 tim 763 }
196     }
197 gezelter 600
198 mmeineke 768 if (nConstrained){
199     constrainB();
200     }
201    
202 tim 763 if (fabs(prevChi - chi) <= chiTolerance) break;
203 gezelter 560 }
204 tim 837
205 tim 763 integralOfChidt += dt2*chi;
206 gezelter 560 }
207    
208 mmeineke 746 template<typename T> void NVT<T>::resetIntegrator( void ){
209 tim 837
210 mmeineke 746 chi = 0.0;
211 tim 763 integralOfChidt = 0.0;
212 mmeineke 746 }
213    
214 tim 645 template<typename T> int NVT<T>::readyCheck() {
215 tim 658
216     //check parent's readyCheck() first
217     if (T::readyCheck() == -1)
218     return -1;
219 tim 837
220     // First check to see if we have a target temperature.
221     // Not having one is fatal.
222    
223 gezelter 560 if (!have_target_temp) {
224     sprintf( painCave.errMsg,
225     "NVT error: You can't use the NVT integrator without a targetTemp!\n"
226     );
227     painCave.isFatal = 1;
228     simError();
229     return -1;
230     }
231 tim 837
232 gezelter 565 // We must set tauThermostat.
233 tim 837
234 gezelter 565 if (!have_tau_thermostat) {
235 gezelter 560 sprintf( painCave.errMsg,
236 gezelter 565 "NVT error: If you use the constant temperature\n"
237     " integrator, you must set tauThermostat.\n");
238 gezelter 560 painCave.isFatal = 1;
239     simError();
240     return -1;
241 tim 837 }
242 tim 763
243     if (!have_chi_tolerance) {
244     sprintf( painCave.errMsg,
245     "NVT warning: setting chi tolerance to 1e-6\n");
246     chiTolerance = 1e-6;
247     have_chi_tolerance = 1;
248     painCave.isFatal = 0;
249     simError();
250 tim 837 }
251 tim 763
252 tim 837 return 1;
253 tim 763
254 gezelter 560 }
255 tim 763
256     template<typename T> double NVT<T>::getConservedQuantity(void){
257    
258     double conservedQuantity;
259 tim 769 double fkBT;
260     double Energy;
261     double thermostat_kinetic;
262     double thermostat_potential;
263 tim 763
264 tim 837 fkBT = (double)(info->getNDF() ) * kB * targetTemp;
265    
266 tim 769 Energy = tStats->getTotalE();
267 tim 763
268 tim 837 thermostat_kinetic = fkBT* tauThermostat * tauThermostat * chi * chi /
269 tim 769 (2.0 * eConvert);
270 tim 763
271 tim 769 thermostat_potential = fkBT * integralOfChidt / eConvert;
272 tim 763
273 tim 769 conservedQuantity = Energy + thermostat_kinetic + thermostat_potential;
274 tim 837
275     return conservedQuantity;
276 tim 763 }
277 tim 837
278     template<typename T> string NVT<T>::getAdditionalParameters(void){
279     string parameters;
280     const int BUFFERSIZE = 2000; // size of the read buffer
281     char buffer[BUFFERSIZE];
282    
283 mmeineke 853 sprintf(buffer,"\t%G\t%G;", chi, integralOfChidt);
284 tim 837 parameters += buffer;
285    
286     return parameters;
287     }