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root/OpenMD/branches/development/src/integrators/NPTi.cpp
Revision: 1465
Committed: Fri Jul 9 23:08:25 2010 UTC (14 years, 9 months ago) by chuckv
File size: 6222 byte(s)
Log Message:
Creating busticated version of OpenMD

File Contents

# User Rev Content
1 gezelter 507 /*
2 gezelter 246 * Copyright (c) 2005 The University of Notre Dame. All Rights Reserved.
3     *
4     * The University of Notre Dame grants you ("Licensee") a
5     * non-exclusive, royalty free, license to use, modify and
6     * redistribute this software in source and binary code form, provided
7     * that the following conditions are met:
8     *
9 gezelter 1390 * 1. Redistributions of source code must retain the above copyright
10 gezelter 246 * notice, this list of conditions and the following disclaimer.
11     *
12 gezelter 1390 * 2. Redistributions in binary form must reproduce the above copyright
13 gezelter 246 * notice, this list of conditions and the following disclaimer in the
14     * documentation and/or other materials provided with the
15     * distribution.
16     *
17     * This software is provided "AS IS," without a warranty of any
18     * kind. All express or implied conditions, representations and
19     * warranties, including any implied warranty of merchantability,
20     * fitness for a particular purpose or non-infringement, are hereby
21     * excluded. The University of Notre Dame and its licensors shall not
22     * be liable for any damages suffered by licensee as a result of
23     * using, modifying or distributing the software or its
24     * derivatives. In no event will the University of Notre Dame or its
25     * licensors be liable for any lost revenue, profit or data, or for
26     * direct, indirect, special, consequential, incidental or punitive
27     * damages, however caused and regardless of the theory of liability,
28     * arising out of the use of or inability to use software, even if the
29     * University of Notre Dame has been advised of the possibility of
30     * such damages.
31 gezelter 1390 *
32     * SUPPORT OPEN SCIENCE! If you use OpenMD or its source code in your
33     * research, please cite the appropriate papers when you publish your
34     * work. Good starting points are:
35     *
36     * [1] Meineke, et al., J. Comp. Chem. 26, 252-271 (2005).
37     * [2] Fennell & Gezelter, J. Chem. Phys. 124, 234104 (2006).
38     * [3] Sun, Lin & Gezelter, J. Chem. Phys. 128, 24107 (2008).
39     * [4] Vardeman & Gezelter, in progress (2009).
40 gezelter 246 */
41    
42     #include "NPTi.hpp"
43 tim 3 #include "brains/SimInfo.hpp"
44     #include "brains/Thermo.hpp"
45 gezelter 246 #include "integrators/NPT.hpp"
46     #include "primitives/Molecule.hpp"
47 gezelter 1390 #include "utils/PhysicalConstants.hpp"
48 tim 3 #include "utils/simError.h"
49 gezelter 2
50 gezelter 1390 namespace OpenMD {
51 gezelter 2
52 gezelter 507 // Basic isotropic thermostating and barostating via the Melchionna
53     // modification of the Hoover algorithm:
54     //
55     // Melchionna, S., Ciccotti, G., and Holian, B. L., 1993,
56     // Molec. Phys., 78, 533.
57     //
58     // and
59     //
60     // Hoover, W. G., 1986, Phys. Rev. A, 34, 2499.
61 gezelter 2
62 gezelter 507 NPTi::NPTi ( SimInfo *info) : NPT(info){
63 gezelter 2
64 gezelter 507 }
65 gezelter 2
66 gezelter 507 void NPTi::evolveEtaA() {
67 gezelter 246 eta += dt2 * ( instaVol * (instaPress - targetPressure) /
68 gezelter 1390 (PhysicalConstants::pressureConvert*NkBT*tb2));
69 gezelter 246 oldEta = eta;
70 gezelter 507 }
71 gezelter 2
72 gezelter 507 void NPTi::evolveEtaB() {
73 gezelter 2
74 gezelter 246 prevEta = eta;
75     eta = oldEta + dt2 * ( instaVol * (instaPress - targetPressure) /
76 gezelter 1390 (PhysicalConstants::pressureConvert*NkBT*tb2));
77 gezelter 507 }
78 gezelter 2
79 gezelter 507 void NPTi::calcVelScale() {
80 gezelter 246 vScale = chi + eta;
81 gezelter 507 }
82 gezelter 2
83 gezelter 507 void NPTi::getVelScaleA(Vector3d& sc, const Vector3d& vel) {
84 gezelter 246 sc = vel * vScale;
85 gezelter 507 }
86 gezelter 2
87 gezelter 507 void NPTi::getVelScaleB(Vector3d& sc, int index ){
88 gezelter 246 sc = oldVel[index] * vScale;
89 gezelter 507 }
90 gezelter 2
91    
92 gezelter 507 void NPTi::getPosScale(const Vector3d& pos, const Vector3d& COM,
93     int index, Vector3d& sc){
94 gezelter 246 /**@todo*/
95 tim 963 sc = (oldPos[index] + pos)/(RealType)2.0 -COM;
96 gezelter 246 sc *= eta;
97 gezelter 507 }
98 gezelter 2
99 gezelter 507 void NPTi::scaleSimBox(){
100 gezelter 2
101 tim 963 RealType scaleFactor;
102 gezelter 2
103 gezelter 246 scaleFactor = exp(dt*eta);
104 gezelter 2
105 gezelter 246 if ((scaleFactor > 1.1) || (scaleFactor < 0.9)) {
106 gezelter 507 sprintf( painCave.errMsg,
107     "NPTi error: Attempting a Box scaling of more than 10 percent"
108     " check your tauBarostat, as it is probably too small!\n"
109     " eta = %lf, scaleFactor = %lf\n", eta, scaleFactor
110     );
111     painCave.isFatal = 1;
112     simError();
113 gezelter 246 } else {
114 gezelter 507 Mat3x3d hmat = currentSnapshot_->getHmat();
115     hmat *= scaleFactor;
116     currentSnapshot_->setHmat(hmat);
117 gezelter 246 }
118 gezelter 2
119 gezelter 507 }
120 gezelter 2
121 gezelter 507 bool NPTi::etaConverged() {
122 gezelter 2
123 gezelter 246 return ( fabs(prevEta - eta) <= etaTolerance );
124 gezelter 507 }
125 gezelter 2
126 tim 963 RealType NPTi::calcConservedQuantity(){
127 gezelter 2
128 gezelter 246 chi= currentSnapshot_->getChi();
129     integralOfChidt = currentSnapshot_->getIntegralOfChiDt();
130     loadEta();
131     // We need NkBT a lot, so just set it here: This is the RAW number
132     // of integrableObjects, so no subtraction or addition of constraints or
133     // orientational degrees of freedom:
134 gezelter 1390 NkBT = info_->getNGlobalIntegrableObjects()*PhysicalConstants::kB *targetTemp;
135 gezelter 2
136 gezelter 246 // fkBT is used because the thermostat operates on more degrees of freedom
137     // than the barostat (when there are particles with orientational degrees
138     // of freedom).
139 gezelter 1390 fkBT = info_->getNdf()*PhysicalConstants::kB *targetTemp;
140 gezelter 246
141 tim 963 RealType conservedQuantity;
142     RealType Energy;
143     RealType thermostat_kinetic;
144     RealType thermostat_potential;
145     RealType barostat_kinetic;
146     RealType barostat_potential;
147 gezelter 2
148 gezelter 246 Energy =thermo.getTotalE();
149 gezelter 2
150 gezelter 1390 thermostat_kinetic = fkBT* tt2 * chi * chi / (2.0 * PhysicalConstants::energyConvert);
151 gezelter 2
152 gezelter 1390 thermostat_potential = fkBT* integralOfChidt / PhysicalConstants::energyConvert;
153 gezelter 2
154    
155 gezelter 1390 barostat_kinetic = 3.0 * NkBT * tb2 * eta * eta /(2.0 * PhysicalConstants::energyConvert);
156 gezelter 2
157 gezelter 1390 barostat_potential = (targetPressure * thermo.getVolume() / PhysicalConstants::pressureConvert) /
158     PhysicalConstants::energyConvert;
159 gezelter 2
160 gezelter 246 conservedQuantity = Energy + thermostat_kinetic + thermostat_potential +
161 gezelter 507 barostat_kinetic + barostat_potential;
162 gezelter 246
163     return conservedQuantity;
164 gezelter 507 }
165 gezelter 2
166 gezelter 507 void NPTi::loadEta() {
167 gezelter 246 Mat3x3d etaMat = currentSnapshot_->getEta();
168     eta = etaMat(0,0);
169 gezelter 1390 //if (fabs(etaMat(1,1) - eta) >= OpenMD::epsilon || fabs(etaMat(1,1) - eta) >= OpenMD::epsilon || !etaMat.isDiagonal()) {
170 gezelter 246 // sprintf( painCave.errMsg,
171     // "NPTi error: the diagonal elements of eta matrix are not the same or etaMat is not a diagonal matrix");
172     // painCave.isFatal = 1;
173     // simError();
174     //}
175 gezelter 507 }
176 gezelter 2
177 gezelter 507 void NPTi::saveEta() {
178 gezelter 246 Mat3x3d etaMat(0.0);
179     etaMat(0, 0) = eta;
180     etaMat(1, 1) = eta;
181     etaMat(2, 2) = eta;
182     currentSnapshot_->setEta(etaMat);
183 gezelter 507 }
184 gezelter 2 }

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