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#include "FITKOFPhysicsData.h"
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#include "FITKAbstractOFSolver.h"
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#include "FITKAbstractOFTurbulence.h"
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#include "FITKOFTransportProp.h"
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#include "FITKOFDiscretization.h"
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#include "FITKOFBoundary.h"
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#include "FITKOFSolution.h"
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#include "FITKOFInitialConditions.h"
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#include "FITKOFRunControl.h"
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#include "FITKOFOperatingConditions.h"
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namespace Interface
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{
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FITKOFPhysicsData::FITKOFPhysicsData()
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{
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}
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FITKOFPhysicsData::~FITKOFPhysicsData()
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{
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//销毁数据
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if (_solver) delete _solver;
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if (_turbulence) delete _turbulence;
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if (_transPortProp) delete _transPortProp;
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if (_discretization) delete _discretization;
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if (_boundaryManager) delete _boundaryManager;
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if (_solution) delete _solution;
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if (_initialCond) delete _initialCond;
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if (_runControl) delete _runControl;
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if (_operatingCond) delete _operatingCond;
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}
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FITKAbstractOFSolver* FITKOFPhysicsData::getSolver()
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{
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//获取求解器
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return _solver;
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}
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bool FITKOFPhysicsData::isEnableTurbulenceEqu()
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{
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//获取是否启用湍流
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return _enableTurb;
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}
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FITKAbstractOFTurbulence* FITKOFPhysicsData::getTurbulence()
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{
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//获取湍流数据
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return _turbulence;
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}
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FITKOFTransportProp* FITKOFPhysicsData::getTransportProp()
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{
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//获取材料
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return _transPortProp;
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}
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FITKOFDiscretization* FITKOFPhysicsData::getDiscretization()
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{
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//获取离散
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return _discretization;
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}
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FITKOFSolution* FITKOFPhysicsData::getSolution()
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{
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//获取solution数据
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return _solution;
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}
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FITKOFInitialConditions* FITKOFPhysicsData::getInitialConditions()
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{
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//获取Initial Conditions数据
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return _initialCond;
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}
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FITKOFBoundaryManager* FITKOFPhysicsData::getBoundaryManager()
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{
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//获取边界数据
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return _boundaryManager;
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}
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FITKOFRunControl* FITKOFPhysicsData::getRunControl()
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{
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//获取运行配置数据
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return _runControl;
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}
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FITKOFOperatingConditions* FITKOFPhysicsData::getOperatingConditions()
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{
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//获取求解工作条件
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return _operatingCond;
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}
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void FITKOFPhysicsData::setSolver(FITKAbstractOFSolver* solver)
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{
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//设置求解器
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if (solver != _solver && _solver) delete _solver;
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_solver = solver;
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}
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void FITKOFPhysicsData::setEnableTurbulenceEqu(bool isEnable)
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{
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//设置是否启用湍流
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_enableTurb = isEnable;
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}
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void FITKOFPhysicsData::setTurbulence(FITKAbstractOFTurbulence* turbulence)
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{
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//设置湍流数据
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if (turbulence != _turbulence && _turbulence) delete _turbulence;
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_turbulence = turbulence;
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}
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void FITKOFPhysicsData::setTransportProp(FITKOFTransportProp* transProp)
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{
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//设置材料数据
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if (transProp != _transPortProp && _transPortProp) delete _transPortProp;
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_transPortProp = transProp;
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}
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void FITKOFPhysicsData::setDiscretization(FITKOFDiscretization* discretization)
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{
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//设置离散数据
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if (discretization != _discretization && _discretization) delete _discretization;
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_discretization = discretization;
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}
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void FITKOFPhysicsData::setSolution(FITKOFSolution* solution)
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{
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//设置solution数据
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if (solution != _solution && _solution) delete _solution;
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_solution = solution;
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}
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void FITKOFPhysicsData::setInitialConditions(FITKOFInitialConditions* initial)
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{
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//设置初始值参数配置
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if (initial != _initialCond && _initialCond) delete _initialCond;
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_initialCond = initial;
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}
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void FITKOFPhysicsData::setBoundaryManager(FITKOFBoundaryManager* manager)
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{
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//设置边界管理器
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if (manager != _boundaryManager && _boundaryManager) delete _boundaryManager;
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_boundaryManager = manager;
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}
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void FITKOFPhysicsData::setRunControl(FITKOFRunControl* run)
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{
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//设置运行配置数据
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if (run != _runControl && _runControl)delete _runControl;
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_runControl = run;
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}
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void FITKOFPhysicsData::setOperatingConditions(FITKOFOperatingConditions* operatingCond)
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{
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//设置求解工作条件
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if (operatingCond != _operatingCond && _operatingCond)delete _operatingCond;
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_operatingCond = operatingCond;
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}
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}
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