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#include "primitives/Molecule.hpp" |
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#include "utils/simError.h" |
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#include "utils/PhysicalConstants.hpp" |
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#include "types/MultipoleAdapter.hpp" |
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|
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namespace OpenMD { |
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|
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|
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RealType temperature = ( 2.0 * this->getKinetic() ) / (info_->getNdf()* PhysicalConstants::kb ); |
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return temperature; |
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} |
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|
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RealType Thermo::getElectronicTemperature() { |
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SimInfo::MoleculeIterator miter; |
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std::vector<Atom*>::iterator iiter; |
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Molecule* mol; |
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Atom* atom; |
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RealType cvel; |
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RealType cmass; |
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RealType kinetic = 0.0; |
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RealType kinetic_global = 0.0; |
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|
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for (mol = info_->beginMolecule(miter); mol != NULL; mol = info_->nextMolecule(miter)) { |
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for (atom = mol->beginFluctuatingCharge(iiter); atom != NULL; |
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atom = mol->nextFluctuatingCharge(iiter)) { |
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cmass = atom->getChargeMass(); |
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cvel = atom->getFlucQVel(); |
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|
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kinetic += cmass * cvel * cvel; |
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|
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} |
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} |
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|
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#ifdef IS_MPI |
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|
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MPI_Allreduce(&kinetic, &kinetic_global, 1, MPI_REALTYPE, MPI_SUM, |
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MPI_COMM_WORLD); |
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kinetic = kinetic_global; |
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|
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#endif //is_mpi |
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|
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kinetic = kinetic * 0.5 / PhysicalConstants::energyConvert; |
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return ( 2.0 * kinetic) / (info_->getNFluctuatingCharges()* PhysicalConstants::kb ); |
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} |
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|
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|
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|
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|
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RealType Thermo::getVolume() { |
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Snapshot* curSnapshot = info_->getSnapshotManager()->getCurrentSnapshot(); |
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return curSnapshot->getVolume(); |
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} |
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} |
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|
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if (atom->isDipole() ) { |
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MultipoleAdapter ma = MultipoleAdapter(atom->getAtomType()); |
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if (ma.isDipole() ) { |
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Vector3d u_i = atom->getElectroFrame().getColumn(2); |
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GenericData* data = dynamic_cast<DirectionalAtomType*>(atom->getAtomType())->getPropertyByName("Dipole"); |
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if (data != NULL) { |
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moment = (dynamic_cast<DoubleGenericData*>(data))->getData(); |
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|
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moment *= debyeToCm; |
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dipoleVector += u_i * moment; |
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} |
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moment = ma.getDipoleMoment(); |
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moment *= debyeToCm; |
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dipoleVector += u_i * moment; |
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} |
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} |
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} |