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LAMMPS - Large-scale Atomic/Molecular Massively Parallel Simulator
https://lammps.sandia.gov/, Sandia National Laboratories
Steve Plimpton, sjplimp@sandia.gov
Copyright (2003) Sandia Corporation. Under the terms of Contract
DE-AC04-94AL85000 with Sandia Corporation, the U.S. Government retains
certain rights in this software. This software is distributed under
the GNU General Public License.
See the README file in the top-level LAMMPS directory.
------------------------------------------------------------------------- */
#include "fix_sph.h"
#include "atom.h"
#include "force.h"
#include "update.h"
#include "error.h"
#include "comm.h"
using namespace LAMMPS_NS;
using namespace FixConst;
/* ---------------------------------------------------------------------- */
FixSPH::FixSPH(LAMMPS *lmp, int narg, char **arg) :
Fix(lmp, narg, arg) {
if ((atom->esph_flag != 1) || (atom->rho_flag != 1))
error->all(FLERR,
"Fix sph command requires atom_style with both energy and density");
if (narg != 3)
error->all(FLERR,"Illegal number of arguments for fix sph command");
time_integrate = 1;
}
/* ---------------------------------------------------------------------- */
int FixSPH::setmask() {
int mask = 0;
mask |= INITIAL_INTEGRATE;
mask |= FINAL_INTEGRATE;
//mask |= PRE_FORCE;
// mask |= POST_FORCE;
return mask;
}
/* ---------------------------------------------------------------------- */
void FixSPH::init() {
dtv = update->dt;
dtf = 0.5 * update->dt * force->ftm2v;
}
/* ---------------------------------------------------------------------- */
void FixSPH::setup_pre_force(int /*vflag*/)
{
// set vest equal to v
double **v = atom->v;
double **vest = atom->vest;
int *mask = atom->mask;
int nlocal = atom->nlocal;
if (igroup == atom->firstgroup)
nlocal = atom->nfirst;
for (int i = 0; i < nlocal; i++) {
if (mask[i] & groupbit) {
vest[i][0] = v[i][0];
vest[i][1] = v[i][1];
vest[i][2] = v[i][2];
}
}
}
/* ----------------------------------------------------------------------
allow for both per-type and per-atom mass
------------------------------------------------------------------------- */
void FixSPH::initial_integrate(int /*vflag*/) {
// update v and x and rho and e of atoms in group
double **gradv = atom->gradv;
double *gammadot = atom->gammadot;
double *fintx = atom->fintx;
double *finty = atom->finty;
double **x = atom->x;
double **v = atom->v;
double **f = atom->f;
double **vest = atom->vest;
double *rho = atom->rho;
double *drho = atom->drho;
double *esph = atom->esph;
double *desph = atom->desph;
double *mass = atom->mass;
double *rmass = atom->rmass;
int rmass_flag = atom->rmass_flag;
int *type = atom->type;
int *mask = atom->mask;
int nlocal = atom->nlocal;
int i;
double dtfm;
if (igroup == atom->firstgroup)
nlocal = atom->nfirst;
for (i = 0; i < nlocal; i++) {
if (mask[i] & groupbit) {
if (rmass_flag) {
dtfm = dtf / rmass[i];
} else {
dtfm = dtf / mass[type[i]];
}
gradv[i][0] = 0.0;
gradv[i][1] = 0.0;
gradv[i][2] = 0.0;
gradv[i][3] = 0.0;
gradv[i][4] = 0.0;
gradv[i][5] = 0.0;
gradv[i][6] = 0.0;
gradv[i][7] = 0.0;
gradv[i][8] = 0.0;
fintx[i] = 1e-10;
finty[i] = 1e-10;
esph[i] += dtf * desph[i]; // half-step update of particle internal energy
rho[i] += dtf * drho[i]; // ... and density
// extrapolate velocity for use with velocity-dependent potentials, e.g. SPH
vest[i][0] = v[i][0] + 2.0 * dtfm * f[i][0];
vest[i][1] = v[i][1] + 2.0 * dtfm * f[i][1];
vest[i][2] = v[i][2] + 2.0 * dtfm * f[i][2];
v[i][0] += dtfm * f[i][0];
v[i][1] += dtfm * f[i][1];
v[i][2] += dtfm * f[i][2];
x[i][0] += dtv * v[i][0];
x[i][1] += dtv * v[i][1];
x[i][2] += dtv * v[i][2];
}
}
}
/* ---------------------------------------------------------------------- */
//void FixSPH::pre_force(int /*vflag*/)
/*
{
double **gradv = atom->gradv;
double *gammadot = atom->gammadot;
int *mask = atom->mask;
int nlocal = atom->nlocal;
int *type = atom->type;
if (igroup == atom->firstgroup)
nlocal = atom->nfirst;
for (int i = 0; i < nlocal; i++) {
if (mask[i] & groupbit) {
gammadot[i] = sqrt(2 * (
gradv[i][0]*gradv[i][0] +
gradv[i][1]*gradv[i][1] +
gradv[i][2]*gradv[i][2] +
2 * (
0.5*(gradv[i][3] + gradv[i][6]) * 0.5*(gradv[i][3] + gradv[i][6]) +
0.5*(gradv[i][4] + gradv[i][7]) * 0.5*(gradv[i][4] + gradv[i][7]) +
0.5*(gradv[i][5] + gradv[i][8]) * 0.5*(gradv[i][5] + gradv[i][8])
)
));
//if (type[i] == 1) {
//printf("gammadot[%d] = %f\n", i, gammadot[i]);
//}
}
}
}
*/
/* ---------------------------------------------------------------------- */
void FixSPH::final_integrate() {
// update v, rho, and e of atoms in group
double **gradv = atom->gradv;
double *gammadot = atom->gammadot;
double *fintx = atom->fintx;
double *finty = atom->finty;
double **v = atom->v;
double **f = atom->f;
double *esph = atom->esph;
double *desph = atom->desph;
double *rho = atom->rho;
double *drho = atom->drho;
int *type = atom->type;
int *mask = atom->mask;
double *mass = atom->mass;
int nlocal = atom->nlocal;
if (igroup == atom->firstgroup)
nlocal = atom->nfirst;
double dtfm;
double *rmass = atom->rmass;
int rmass_flag = atom->rmass_flag;
for (int i = 0; i < nlocal; i++) {
if (mask[i] & groupbit) {
if (rmass_flag) {
dtfm = dtf / rmass[i];
} else {
dtfm = dtf / mass[type[i]];
}
v[i][0] += dtfm * f[i][0];
v[i][1] += dtfm * f[i][1];
v[i][2] += dtfm * f[i][2];
esph[i] += dtf * desph[i];
rho[i] += dtf * drho[i];
//Only 2d to test
// double trace;
// trace = gradv[i][0]+gradv[i][1];//+gradv[i][0]
// stfluid[i][0] = 0;//(2*gradv[i][0]+trace/2);
// stfluid[i][1] = 0;//(2*gradv[i][1]+trace/2);
// stfluid[i][2] = 0.0;//(gradv[i][2]-trace/2);
// stfluid[i][3] = (gradv[i][3]+gradv[i][6]);
// stfluid[i][4] = 0.0;//0.5*(gradv[i][4]+gradv[i][7]);
// stfluid[i][5] = 0.0;//0.5*(gradv[i][5]+gradv[i][8]);
// ASE added the calculation of gamma_dot as the square of the sum of the gradient plus its transpose (Frobenius norm)
gammadot[i] = sqrt(2 * (
gradv[i][0]*gradv[i][0] +
gradv[i][1]*gradv[i][1] +
gradv[i][2]*gradv[i][2] +
2 * (
0.5*(gradv[i][3] + gradv[i][6]) * 0.5*(gradv[i][3] + gradv[i][6]) +
0.5*(gradv[i][4] + gradv[i][7]) * 0.5*(gradv[i][4] + gradv[i][7]) +
0.5*(gradv[i][5] + gradv[i][8]) * 0.5*(gradv[i][5] + gradv[i][8])
)
));
}
}
}
/* ---------------------------------------------------------------------- */
void FixSPH::reset_dt() {
dtv = update->dt;
dtf = 0.5 * update->dt * force->ftm2v;
}
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