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inflow_fv.h
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1/*
2 * Copyright (c) 2013: G-CSC, Goethe University Frankfurt
3 * Author: Andreas Vogel
4 *
5 * This file is part of UG4.
6 *
7 * UG4 is free software: you can redistribute it and/or modify it under the
8 * terms of the GNU Lesser General Public License version 3 (as published by the
9 * Free Software Foundation) with the following additional attribution
10 * requirements (according to LGPL/GPL v3 §7):
11 *
12 * (1) The following notice must be displayed in the Appropriate Legal Notices
13 * of covered and combined works: "Based on UG4 (www.ug4.org/license)".
14 *
15 * (2) The following notice must be displayed at a prominent place in the
16 * terminal output of covered works: "Based on UG4 (www.ug4.org/license)".
17 *
18 * (3) The following bibliography is recommended for citation and must be
19 * preserved in all covered files:
20 * "Reiter, S., Vogel, A., Heppner, I., Rupp, M., and Wittum, G. A massively
21 * parallel geometric multigrid solver on hierarchically distributed grids.
22 * Computing and visualization in science 16, 4 (2013), 151-164"
23 * "Vogel, A., Reiter, S., Rupp, M., Nägel, A., and Wittum, G. UG4 -- a novel
24 * flexible software system for simulating pde based models on high performance
25 * computers. Computing and visualization in science 16, 4 (2013), 165-179"
26 *
27 * This program is distributed in the hope that it will be useful,
28 * but WITHOUT ANY WARRANTY; without even the implied warranty of
29 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
30 * GNU Lesser General Public License for more details.
31 */
32
33#ifndef __H__UG__NAVIER_STOKES__INCOMPRESSIBLE__FV__BND__INFLOW_FV__
34#define __H__UG__NAVIER_STOKES__INCOMPRESSIBLE__FV__BND__INFLOW_FV__
35
36#include "../../bnd/inflow_base.h"
37#include "../navier_stokes_fv.h"
38
41
42namespace ug{
43namespace NavierStokes{
44
45template < typename TDomain, typename TAlgebra>
47 : public NavierStokesInflowBase<TDomain, TAlgebra>
48{
49 private:
50 static const int dim = TDomain::dim;
51
52 public:
54 virtual size_t num_elem_disc() const {return 1;}
55
58
60 virtual size_t num_constraint() const {return 1;}
61
64
65 public:
68
70 void add(SmartPtr<CplUserData<MathVector<dim>, dim> > user, const char* subsetsBND);
71
72 protected:
75
78
81};
82
83} // namespace NavierStokes
84} // end namespace ug
85
86#include "inflow_fv_impl.h"
87
88#endif /* __H__UG__NAVIER_STOKES__INCOMPRESSIBLE__FV__BND__INFLOW_FV__ */
function NavierStokes(fcts, subsets, discType)
Definition navier_stokes_fv.h:56
Definition inflow_base.h:44
virtual size_t num_elem_disc() const
returns the number of element discs
Definition inflow_fv.h:54
virtual SmartPtr< IElemDisc< TDomain > > elem_disc(size_t i)
returns the element disc
Definition inflow_fv.h:57
static const int dim
Definition inflow_fv.h:50
SmartPtr< IncompressibleNavierStokesBase< TDomain > > m_spMaster
The master discretization:
Definition inflow_fv.h:80
virtual SmartPtr< IDomainConstraint< TDomain, TAlgebra > > constraint(size_t i)
returns an element disc
Definition inflow_fv.h:63
SmartPtr< DirichletBoundary< TDomain, TAlgebra > > m_spDirichletConstraint
dirichlet disc for velocity components
Definition inflow_fv.h:77
SmartPtr< NeumannBoundaryBase< TDomain > > m_spNeumannDisc
neumann disc for pressure equation
Definition inflow_fv.h:74
virtual size_t num_constraint() const
returns the number of constraints
Definition inflow_fv.h:60
void add(SmartPtr< CplUserData< MathVector< dim >, dim > > user, const char *subsetsBND)
sets the velocity to a given value
Definition inflow_fv_impl.h:59