source: src/atom_trajectoryparticle.cpp@ 2be37b

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Last change on this file since 2be37b was 51c3e4, checked in by Tillmann Crueger <crueger@…>, 15 years ago

Merge branch 'stable' into StructureRefactoring

Conflicts:

src/atom_trajectoryparticle.cpp

  • Property mode set to 100644
File size: 5.8 KB
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1/*
2 * Project: MoleCuilder
3 * Description: creates and alters molecular systems
4 * Copyright (C) 2010 University of Bonn. All rights reserved.
5 * Please see the LICENSE file or "Copyright notice" in builder.cpp for details.
6 */
7
8/*
9 * atom_trajectoryparticle.cpp
10 *
11 * Created on: Oct 19, 2009
12 * Author: heber
13 */
14
15// include config.h
16#ifdef HAVE_CONFIG_H
17#include <config.h>
18#endif
19
20#include "Helpers/MemDebug.hpp"
21
22#include "atom.hpp"
23#include "atom_trajectoryparticle.hpp"
24#include "config.hpp"
25#include "element.hpp"
26#include "Helpers/Info.hpp"
27#include "Helpers/Log.hpp"
28#include "parser.hpp"
29#include "ThermoStatContainer.hpp"
30#include "Helpers/Verbose.hpp"
31
32/** Constructor of class TrajectoryParticle.
33 */
34TrajectoryParticle::TrajectoryParticle()
35{
36};
37
38/** Destructor of class TrajectoryParticle.
39 */
40TrajectoryParticle::~TrajectoryParticle()
41{
42};
43
44/**
45 * returns the kinetic energy of this atom at a given time step
46 */
47
48double TrajectoryParticle::getKineticEnergy(unsigned int step) const{
49 return getType()->getMass() * Trajectory.U.at(step).NormSquared();
50}
51
52/** Evaluates some constraint potential if atom moves from \a startstep at once to \endstep in trajectory.
53 * \param startstep trajectory begins at
54 * \param endstep trajectory ends at
55 * \param **PermutationMap if atom switches places with some other atom, there is no translation but a permutaton noted here (not in the trajectories of ea
56 * \param *Force Force matrix to store result in
57 */
58void TrajectoryParticle::EvaluateConstrainedForce(int startstep, int endstep, atom **PermutationMap, ForceMatrix *Force) const
59{
60 double constant = 10.;
61 TrajectoryParticle *Sprinter = PermutationMap[nr];
62 // set forces
63 for (int i=NDIM;i++;)
64 Force->Matrix[0][nr][5+i] += 2.*constant*sqrt(Trajectory.R.at(startstep).distance(Sprinter->Trajectory.R.at(endstep)));
65};
66
67/** Correct velocity against the summed \a CoGVelocity for \a step.
68 * \param *ActualTemp sum up actual temperature meanwhile
69 * \param Step MD step in atom::Tracjetory
70 * \param *CoGVelocity remnant velocity (i.e. vector sum of all atom velocities)
71 */
72void TrajectoryParticle::CorrectVelocity(double *ActualTemp, int Step, Vector *CoGVelocity)
73{
74 for(int d=0;d<NDIM;d++) {
75 Trajectory.U.at(Step)[d] -= CoGVelocity->at(d);
76 *ActualTemp += 0.5 * getType()->getMass() * Trajectory.U.at(Step)[d] * Trajectory.U.at(Step)[d];
77 }
78};
79
80/** Extends the trajectory STL vector to the new size.
81 * Does nothing if \a MaxSteps is smaller than current size.
82 * \param MaxSteps
83 */
84void TrajectoryParticle::ResizeTrajectory(int MaxSteps)
85{
86 Info FunctionInfo(__func__);
87 if (Trajectory.R.size() <= (unsigned int)(MaxSteps)) {
88 DoLog(0) && (Log() << Verbose(0) << "Increasing size for trajectory array of " << nr << " from " << Trajectory.R.size() << " to " << (MaxSteps+1) << "." << endl);
89 Trajectory.R.resize(MaxSteps+1);
90 Trajectory.U.resize(MaxSteps+1);
91 Trajectory.F.resize(MaxSteps+1);
92 }
93};
94
95/** Copies a given trajectory step \a src onto another \a dest
96 * \param dest index of destination step
97 * \param src index of source step
98 */
99void TrajectoryParticle::CopyStepOnStep(int dest, int src)
100{
101 if (dest == src) // self assignment check
102 return;
103
104 for (int n=NDIM;n--;) {
105 Trajectory.R.at(dest)[n] = Trajectory.R.at(src)[n];
106 Trajectory.U.at(dest)[n] = Trajectory.U.at(src)[n];
107 Trajectory.F.at(dest)[n] = Trajectory.F.at(src)[n];
108 }
109};
110
111/** Performs a velocity verlet update of the trajectory.
112 * Parameters are according to those in configuration class.
113 * \param NextStep index of sequential step to set
114 * \param *configuration pointer to configuration with parameters
115 * \param *Force matrix with forces
116 */
117void TrajectoryParticle::VelocityVerletUpdate(int NextStep, config *configuration, ForceMatrix *Force, const size_t offset)
118{
119 //a = configuration.Deltat*0.5/walker->type->mass; // (F+F_old)/2m = a and thus: v = (F+F_old)/2m * t = (F + F_old) * a
120 for (int d=0; d<NDIM; d++) {
121 Trajectory.F.at(NextStep)[d] = -Force->Matrix[0][nr][d+offset]*(configuration->GetIsAngstroem() ? AtomicLengthToAngstroem : 1.);
122 Trajectory.R.at(NextStep)[d] = Trajectory.R.at(NextStep-1)[d];
123 Trajectory.R.at(NextStep)[d] += configuration->Deltat*(Trajectory.U.at(NextStep-1)[d]); // s(t) = s(0) + v * deltat + 1/2 a * deltat^2
124 Trajectory.R.at(NextStep)[d] += 0.5*configuration->Deltat*configuration->Deltat*(Trajectory.F.at(NextStep)[d]/getType()->getMass()); // F = m * a and s =
125 }
126 // Update U
127 for (int d=0; d<NDIM; d++) {
128 Trajectory.U.at(NextStep)[d] = Trajectory.U.at(NextStep-1)[d];
129 Trajectory.U.at(NextStep)[d] += configuration->Deltat * (Trajectory.F.at(NextStep)[d]+Trajectory.F.at(NextStep-1)[d]/getType()->getMass()); // v = F/m * t
130 }
131 // Update R (and F)
132// out << "Integrated position&velocity of step " << (NextStep) << ": (";
133// for (int d=0;d<NDIM;d++)
134// out << Trajectory.R.at(NextStep).x[d] << " "; // next step
135// out << ")\t(";
136// for (int d=0;d<NDIM;d++)
137// Log() << Verbose(0) << Trajectory.U.at(NextStep).x[d] << " "; // next step
138// out << ")" << endl;
139};
140
141/** Sums up mass and kinetics.
142 * \param Step step to sum for
143 * \param *TotalMass pointer to total mass sum
144 * \param *TotalVelocity pointer to tota velocity sum
145 */
146void TrajectoryParticle::SumUpKineticEnergy( int Step, double *TotalMass, Vector *TotalVelocity ) const
147{
148 *TotalMass += getType()->getMass(); // sum up total mass
149 for(int d=0;d<NDIM;d++) {
150 TotalVelocity->at(d) += Trajectory.U.at(Step)[d]*getType()->getMass();
151 }
152};
153
154std::ostream & TrajectoryParticle::operator << (std::ostream &ost) const
155{
156 ParticleInfo::operator<<(ost);
157 ost << "," << getPosition();
158 return ost;
159}
160
161std::ostream & operator << (std::ostream &ost, const TrajectoryParticle &a)
162{
163 a.ParticleInfo::operator<<(ost);
164 ost << "," << a.getPosition();
165 return ost;
166}
167
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