Nektar++
ProcessStreamFunction.cpp
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1////////////////////////////////////////////////////////////////////////////////
2//
3// File: ProcessStreamFunction.cpp
4//
5// For more information, please see: http://www.nektar.info/
6//
7// The MIT License
8//
9// Copyright (c) 2006 Division of Applied Mathematics, Brown University (USA),
10// Department of Aeronautics, Imperial College London (UK), and Scientific
11// Computing and Imaging Institute, University of Utah (USA).
12//
13// Permission is hereby granted, free of charge, to any person obtaining a
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30//
31// Description: Computes stream-function for 2D field.
32//
33////////////////////////////////////////////////////////////////////////////////
34
35#include <boost/core/ignore_unused.hpp>
36
38
39using namespace std;
40
41namespace Nektar
42{
43namespace FieldUtils
44{
45
48 ModuleKey(eProcessModule, "streamfunction"),
50 "Computes stream-function for 2D field.");
51
53 : ProcessModule(f)
54{
55 m_f->m_declareExpansionAsContField = true;
56}
57
59{
60}
61
62void ProcessStreamFunction::v_Process(po::variables_map &vm)
63{
64 m_f->SetUpExp(vm);
65
66 int nfields = m_f->m_variables.size();
67 // Append field name
68 m_f->m_variables.push_back("StreamFunc");
69
70 // Skip in case of empty partition
71 if (m_f->m_exp[0]->GetNumElmts() == 0)
72 {
73 return;
74 }
75
76 // Check if dimension is correct
77 int expdim = m_f->m_graph->GetMeshDimension();
78 int spacedim = expdim + m_f->m_numHomogeneousDir;
79 ASSERTL0(spacedim == 2, "Stream function can only be obtained in 2D.");
80
81 // Allocate arrays
82 int npoints = m_f->m_exp[0]->GetNpoints();
83 Array<OneD, NekDouble> vx(npoints);
84 Array<OneD, NekDouble> uy(npoints);
85 Array<OneD, NekDouble> vortNeg(npoints);
86
87 // Resize expansion
88 m_f->m_exp.resize(nfields + 1);
89 m_f->m_exp[nfields] = m_f->AppendExpList(m_f->m_numHomogeneousDir);
90
91 // Calculate vorticity: -W_z = Uy - Vx
92 m_f->m_exp[0]->PhysDeriv(MultiRegions::DirCartesianMap[1],
93 m_f->m_exp[0]->GetPhys(), uy);
94 m_f->m_exp[1]->PhysDeriv(MultiRegions::DirCartesianMap[0],
95 m_f->m_exp[1]->GetPhys(), vx);
96
97 Vmath::Vsub(npoints, uy, 1, vx, 1, vortNeg, 1);
98
99 // Calculate the Stream Function as the solution of the
100 // Poisson equation: \nabla^2 StreamFunction = -Vorticity
101 // Use same boundary conditions as v
103 factor[StdRegions::eFactorLambda] = 0.0;
104
105 m_f->m_exp[1]->HelmSolve(vortNeg, m_f->m_exp[nfields]->UpdateCoeffs(),
106 factor);
107 m_f->m_exp[1]->BwdTrans(m_f->m_exp[nfields]->GetCoeffs(),
108 m_f->m_exp[nfields]->UpdatePhys());
109}
110
111} // namespace FieldUtils
112} // namespace Nektar
#define ASSERTL0(condition, msg)
Definition: ErrorUtil.hpp:215
FieldSharedPtr m_f
Field object.
Definition: Module.h:234
Abstract base class for processing modules.
Definition: Module.h:292
static std::shared_ptr< Module > create(FieldSharedPtr f)
Creates an instance of this class.
virtual void v_Process(po::variables_map &vm) override
Write mesh to output file.
tKey RegisterCreatorFunction(tKey idKey, CreatorFunction classCreator, std::string pDesc="")
Register a class with the factory.
Definition: NekFactory.hpp:198
std::shared_ptr< Field > FieldSharedPtr
Definition: Field.hpp:991
std::pair< ModuleType, std::string > ModuleKey
Definition: Module.h:317
ModuleFactory & GetModuleFactory()
Definition: Module.cpp:49
MultiRegions::Direction const DirCartesianMap[]
Definition: ExpList.h:90
std::map< ConstFactorType, NekDouble > ConstFactorMap
Definition: StdRegions.hpp:408
The above copyright notice and this permission notice shall be included.
Definition: CoupledSolver.h:2
void Vsub(int n, const T *x, const int incx, const T *y, const int incy, T *z, const int incz)
Subtract vector z = x-y.
Definition: Vmath.cpp:414