/* This file is part of the OpenLB library * * Copyright (C) 2012, 2016 Jonas Kratzke, Mathias J. Krause * E-mail contact: info@openlb.net * The most recent release of OpenLB can be downloaded at * * * This program is free software; you can redistribute it and/or * modify it under the terms of the GNU General Public License * as published by the Free Software Foundation; either version 2 * of the License, or (at your option) any later version. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public * License along with this program; if not, write to the Free * Software Foundation, Inc., 51 Franklin Street, Fifth Floor, * Boston, MA 02110-1301, USA. */ /** \file * A helper for initialising 2D boundaries -- header file. */ #ifndef SUPER_OFF_BOUNDARY_CONDITION_2D_H #define SUPER_OFF_BOUNDARY_CONDITION_2D_H #include #include #include "offBoundaryCondition2D.h" #include "geometry/superGeometry2D.h" #include "core/superLattice2D.h" #include "io/ostreamManager.h" #include "functors/analytical/analyticalF.h" #include "utilities/functorPtr.h" /// All OpenLB code is contained in this namespace. namespace olb { /// A helper for initialising 2D boundaries for super lattices. /** Here we have methods that initializes for a given global * point or global range the local postprocessors and the * communicator (_commBC in SuperLattice) for boundary conditions. * * This class is not intended to be derived from. */ template class sOffLatticeBoundaryCondition2D { public: /// Constructor sOffLatticeBoundaryCondition2D(SuperLattice2D& sLattice, T epsFraction_ = 0.0001); /// Copy construction sOffLatticeBoundaryCondition2D(sOffLatticeBoundaryCondition2D const& rhs); /// Copy assignment sOffLatticeBoundaryCondition2D operator=(sOffLatticeBoundaryCondition2D rhs); /// Destructor ~sOffLatticeBoundaryCondition2D(); /// Set offDynamics with boundary links and post processors using indicators /** * Add offDynamics with initialisation of boundary links and the corresponding * post processors * Note: Uses information of the second neighbours of the cell (x,y) * Add post processors. Ensure that offDynamics are defined! * * \param boundaryIndicator Indicator describing boundary cells * \param bulkIndicator Indicator describing bulk cells * \param geometryIndicator Indicator describing the geometry to be bounded **/ void addVelocityBoundary(FunctorPtr>&& boundaryIndicator, FunctorPtr>&& bulkIndicator, IndicatorF2D& geometryIndicator); void addVelocityBoundary(SuperGeometry2D& superGeometry, int material, IndicatorF2D& geometryIndicator, std::vector bulkMaterials = std::vector(1,1)); void addVelocityBoundary(FunctorPtr>&& boundaryIndicator, FunctorPtr>&& bulkIndicator); void addVelocityBoundary(SuperGeometry2D& superGeometry, int material, std::vector bulkMaterials = std::vector(1,1)); void addZeroVelocityBoundary(FunctorPtr>&& boundaryIndicator, FunctorPtr>&& bulkIndicator, IndicatorF2D& geometryIndicator); void addZeroVelocityBoundary(SuperGeometry2D& superGeometry, int material, IndicatorF2D& geometryIndicator, std::vector bulkMaterials = std::vector(1,1)); void addZeroVelocityBoundary(FunctorPtr>&& boundaryIndicator, FunctorPtr>&& bulkIndicator); void addZeroVelocityBoundary(SuperGeometry2D& superGeometry, int material, std::vector bulkMaterials = std::vector(1,1)); void addPressureBoundary(FunctorPtr>&& boundaryIndicator, FunctorPtr>&& bulkIndicator, IndicatorF2D& geometryIndicator); void addPressureBoundary(SuperGeometry2D& superGeometry, int material, IndicatorF2D& geometryIndicator, std::vector bulkMaterials = std::vector(1,1)); void addPressureBoundary(FunctorPtr>&& boundaryIndicator, FunctorPtr>&& bulkIndicator); void addPressureBoundary(SuperGeometry2D& superGeometry, int material, std::vector bulkMaterials = std::vector(1,1)); void defineU(FunctorPtr>&& indicator, FunctorPtr>&& bulkIndicator, AnalyticalF2D& u); void defineU(SuperGeometry2D& superGeometry, int material, AnalyticalF2D& u, std::vector bulkMaterials = std::vector(1,1)); void defineRho(FunctorPtr>&& indicator, FunctorPtr>&& bulkIndicator, AnalyticalF2D& rho); void defineRho(SuperGeometry2D& superGeometry, int material, AnalyticalF2D& rho, std::vector bulkMaterials = std::vector(1,1)); /// Adds needed Cells to the Communicator _commBC in SuperLattice void addPoints2CommBC(FunctorPtr>&& indicator); void addPoints2CommBC(SuperGeometry2D& superGeometry, int material); SuperLattice2D& getSuperLattice() { return _sLattice; }; std::vector* >& getBlockBCs() { return _blockBCs; }; int getOverlap() { return _overlap; }; void setOverlap(int overlap) { _overlap = overlap; }; void outputOn(); void outputOff(); private: mutable OstreamManager clout; SuperLattice2D& _sLattice; std::vector* > _blockBCs; T _epsFraction; int _overlap; bool _output; }; template > void createBouzidiBoundaryCondition2D(sOffLatticeBoundaryCondition2D& sBC); template void createBounceBackBoundaryCondition2D(sOffLatticeBoundaryCondition2D& sBC); } // namespace olb #endif