mirror of
https://github.com/PhasicFlow/phasicFlow.git
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163 lines
3.5 KiB
C++
163 lines
3.5 KiB
C++
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/*------------------------------- phasicFlow ---------------------------------
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O C enter of
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O O E ngineering and
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O O M ultiscale modeling of
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OOOOOOO F luid flow
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------------------------------------------------------------------------------
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Copyright (C): www.cemf.ir
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email: hamid.r.norouzi AT gmail.com
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------------------------------------------------------------------------------
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Licence:
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This file is part of phasicFlow code. It is a free software for simulating
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granular and multiphase flows. You can redistribute it and/or modify it under
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the terms of GNU General Public License v3 or any other later versions.
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phasicFlow is distributed to help others in their research in the field of
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granular and multiphase flows, but WITHOUT ANY WARRANTY; without even the
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implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
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-----------------------------------------------------------------------------*/
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#include "particles.H"
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pFlow::particles::particles
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(
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systemControl& control,
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const word& integrationMethod
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)
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:
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demParticles(control),
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time_(control.time()),
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integrationMethod_(integrationMethod),
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dynPointStruct_(
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control.time(),
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integrationMethod
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),
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shapeName_(
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control.time().emplaceObject<wordPointField>(
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objectFile(
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"shapeName",
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"",
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objectFile::READ_ALWAYS,
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objectFile::WRITE_ALWAYS,
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false
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),
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pStruct(),
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word("NO_NAME_SHAPE")
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)
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),
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id_(
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control.time().emplaceObject<int32PointField_HD>(
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objectFile(
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"id",
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"",
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objectFile::READ_IF_PRESENT,
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objectFile::WRITE_ALWAYS
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),
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pStruct(),
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static_cast<int32>(-1)
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)
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),
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propertyId_(
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control.time().emplaceObject<int8PointField_D>(
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objectFile(
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"propertyId",
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"",
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objectFile::READ_NEVER,
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objectFile::WRITE_NEVER
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),
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pStruct(),
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static_cast<int8>(0)
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)
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),
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diameter_(
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control.time().emplaceObject<realPointField_D>(
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objectFile(
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"diameter",
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"",
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objectFile::READ_NEVER,
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objectFile::WRITE_ALWAYS
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),
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pStruct(),
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static_cast<real>(0.00000000001)
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)
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),
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mass_(
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control.time().emplaceObject<realPointField_D>(
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objectFile(
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"mass",
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"",
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objectFile::READ_NEVER,
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objectFile::WRITE_ALWAYS
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),
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pStruct(),
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static_cast<real>(0.0000000001)
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)
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),
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accelertion_(
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control.time().emplaceObject<realx3PointField_D>(
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objectFile(
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"accelertion",
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"",
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objectFile::READ_IF_PRESENT,
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objectFile::WRITE_ALWAYS
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),
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pStruct(),
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zero3
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)
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),
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contactForce_(
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control.time().emplaceObject<realx3PointField_D>(
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objectFile(
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"contactForce",
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"",
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objectFile::READ_IF_PRESENT,
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objectFile::WRITE_ALWAYS
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),
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pStruct(),
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zero3
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)
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),
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contactTorque_(
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control.time().emplaceObject<realx3PointField_D>(
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objectFile(
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"contactTorque",
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"",
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objectFile::READ_IF_PRESENT,
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objectFile::WRITE_ALWAYS
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),
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pStruct(),
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zero3
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)
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),
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idHandler_(id_)
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{
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this->subscribe(pStruct());
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}
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pFlow::uniquePtr<pFlow::List<pFlow::eventObserver*>>
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pFlow::particles::getFieldObjectList()const
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{
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auto objListPtr = makeUnique<pFlow::List<pFlow::eventObserver*>>();
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objListPtr().push_back(
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static_cast<eventObserver*>(&id_) );
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objListPtr().push_back(
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static_cast<eventObserver*>(&propertyId_) );
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objListPtr().push_back(
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static_cast<eventObserver*>(&diameter_) );
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objListPtr().push_back(
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static_cast<eventObserver*>(&mass_) );
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objListPtr().push_back(
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static_cast<eventObserver*>(&shapeName_) );
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return objListPtr;
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}
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