Nektar++
ProcessGrad.cpp
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2 //
3 // File: ProcessGrad.cpp
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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).
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31 //
32 // Description: Computes gradient of fields.
33 //
34 ////////////////////////////////////////////////////////////////////////////////
35 
36 #include <string>
37 #include <iostream>
38 using namespace std;
39 
40 #include "ProcessGrad.h"
41 
44 
45 namespace Nektar
46 {
47 namespace Utilities
48 {
49 
50 ModuleKey ProcessGrad::className =
52  ModuleKey(eProcessModule, "gradient"),
53  ProcessGrad::create, "Computes gradient of fields.");
54 
55 ProcessGrad::ProcessGrad(FieldSharedPtr f) : ProcessModule(f)
56 {
57 }
58 
60 {
61 }
62 
63 void ProcessGrad::Process(po::variables_map &vm)
64 {
65  if (m_f->m_verbose)
66  {
67  cout << "ProcessGrad: Calculating gradients..." << endl;
68  }
69 
70  int i, j;
71  int expdim = m_f->m_graph->GetMeshDimension();
72  int spacedim = m_f->m_fielddef[0]->m_numHomogeneousDir + expdim;
73  int nfields = m_f->m_fielddef[0]->m_fields.size();
74  int addfields = nfields*spacedim;
75 
76  int npoints = m_f->m_exp[0]->GetNpoints();
77  Array<OneD, Array<OneD, NekDouble> > grad(addfields);
78  m_f->m_exp.resize(nfields+addfields);
79 
80  for (i = 0; i < addfields; ++i)
81  {
82  grad[i] = Array<OneD, NekDouble>(npoints);
83  }
84 
85  // Calculate Gradient
86  for (i = 0; i < nfields; ++i)
87  {
88  for (j = 0; j < spacedim; ++j)
89  {
90  m_f->m_exp[i]->PhysDeriv(MultiRegions::DirCartesianMap[j],
91  m_f->m_exp[i]->GetPhys(),
92  grad[i*spacedim+j]);
93  }
94  }
95 
96  for (i = 0; i < addfields; ++i)
97  {
98  m_f->m_exp[nfields + i] = m_f->AppendExpList(m_f->m_fielddef[0]->m_numHomogeneousDir);
99  m_f->m_exp[nfields + i]->UpdatePhys() = grad[i];
100  m_f->m_exp[nfields + i]->FwdTrans_IterPerExp(grad[i],
101  m_f->m_exp[nfields + i]->UpdateCoeffs());
102  }
103 
104  vector<string > outname;
105  for (i = 0; i<nfields; ++i)
106  {
107  if(spacedim == 1)
108  {
109  outname.push_back(m_f->m_fielddef[0]->m_fields[i]+"_x");
110  }
111  else if (spacedim == 2)
112  {
113  outname.push_back(m_f->m_fielddef[0]->m_fields[i]+"_x");
114  outname.push_back(m_f->m_fielddef[0]->m_fields[i]+"_y");
115  }
116  else if (spacedim == 3)
117  {
118  outname.push_back(m_f->m_fielddef[0]->m_fields[i]+"_x");
119  outname.push_back(m_f->m_fielddef[0]->m_fields[i]+"_y");
120  outname.push_back(m_f->m_fielddef[0]->m_fields[i]+"_z");
121  }
122  }
123 
124  std::vector<LibUtilities::FieldDefinitionsSharedPtr> FieldDef
125  = m_f->m_exp[0]->GetFieldDefinitions();
126  std::vector<std::vector<NekDouble> > FieldData(FieldDef.size());
127 
128  for (j = 0; j < nfields + addfields; ++j)
129  {
130  for (i = 0; i < FieldDef.size(); ++i)
131  {
132  if (j >= nfields)
133  {
134  FieldDef[i]->m_fields.push_back(outname[j-nfields]);
135  }
136  else
137  {
138  FieldDef[i]->m_fields.push_back(m_f->m_fielddef[0]->m_fields[j]);
139  }
140  m_f->m_exp[j]->AppendFieldData(FieldDef[i], FieldData[i]);
141  }
142  }
143 
144  m_f->m_fielddef = FieldDef;
145  m_f->m_data = FieldData;
146 }
147 
148 }
149 }
pair< ModuleType, string > ModuleKey
virtual void Process()=0
STL namespace.
FieldSharedPtr m_f
Field object.
boost::shared_ptr< Field > FieldSharedPtr
Definition: Field.hpp:677
MultiRegions::Direction const DirCartesianMap[]
Definition: ExpList.h:86
ModuleFactory & GetModuleFactory()
Abstract base class for processing modules.
tKey RegisterCreatorFunction(tKey idKey, CreatorFunction classCreator, tDescription pDesc="")
Register a class with the factory.
Definition: NekFactory.hpp:215