Nektar++
FilterEnergy1D.cpp
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2 //
3 // File: FilterEnergy1D.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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30 //
31 // Description: Outputs orthogonal expansion of 1D elements.
32 //
33 ///////////////////////////////////////////////////////////////////////////////
34 
35 #include <boost/core/ignore_unused.hpp>
36 
39 
40 using namespace std;
41 
42 namespace Nektar
43 {
44 namespace SolverUtils
45 {
46 std::string FilterEnergy1D::className =
48  FilterEnergy1D::create);
49 
50 /**
51  * @brief Set up filter with output file and frequency parameters.
52  *
53  * @param pSession Current session.
54  * @param pParams Map of parameters defined in XML file.
55  */
56 FilterEnergy1D::FilterEnergy1D(
58  const std::weak_ptr<EquationSystem> &pEquation, const ParamMap &pParams)
59  : Filter(pSession, pEquation), m_index(0)
60 {
61  ASSERTL0(pSession->GetComm()->GetSize() == 1,
62  "The 1D energy filter currently only works in serial.");
63 
64  std::string outName;
65 
66  // OutputFile
67  auto it = pParams.find("OutputFile");
68  if (it == pParams.end())
69  {
70  outName = m_session->GetSessionName();
71  }
72  else
73  {
74  ASSERTL0(it->second.length() > 0, "Missing parameter 'OutputFile'.");
75  outName = it->second;
76  }
77  outName += ".eny";
78  m_out.open(outName.c_str());
79 
80  // OutputFrequency
81  it = pParams.find("OutputFrequency");
82  if (it == pParams.end())
83  {
85  }
86  else
87  {
88  LibUtilities::Equation equ(m_session->GetInterpreter(), it->second);
89  m_outputFrequency = round(equ.Evaluate());
90  }
91 }
92 
93 /**
94  * @brief Destructor.
95  */
97 {
98 }
99 
100 /**
101  * @brief Initialize filter.
102  */
105  const NekDouble &time)
106 {
107  boost::ignore_unused(time);
108  ASSERTL0(pFields[0]->GetExp(0)->GetNumBases() == 1,
109  "The Energy 1D filter is only valid in 1D.");
110 }
111 
112 /**
113  * @brief Update filter output with the current timestep's orthogonal
114  * coefficients.
115  */
118  const NekDouble &time)
119 {
120  // Only output every m_outputFrequency
121  if ((m_index++) % m_outputFrequency)
122  {
123  return;
124  }
125 
126  int nElmt = pFields[0]->GetExpSize();
127 
128  // Loop over all elements
129  m_out << "##" << endl;
130  m_out << "## Time = " << time << endl;
131  m_out << "##" << endl;
132 
133  for (int i = 0; i < nElmt; ++i)
134  {
135  // Figure out number of modes in this expansion.
136  LocalRegions::ExpansionSharedPtr exp = pFields[0]->GetExp(i);
137  int nModes = exp->GetBasis(0)->GetNumModes();
138 
139  // Set uo basis key for orthogonal basis
141  LibUtilities::BasisKey bkeyOrth(btype, nModes,
142  exp->GetBasis(0)->GetPointsKey());
143 
144  // Get basis key for existing expansion
145  LibUtilities::BasisKey bkey(exp->GetBasis(0)->GetBasisType(),
146  exp->GetBasis(0)->GetNumModes(),
147  exp->GetBasis(0)->GetPointsKey());
148 
149  // Find coeffs for this element in the list of all coefficients
150  Array<OneD, NekDouble> coeffs =
151  pFields[0]->GetCoeffs() + pFields[0]->GetCoeff_Offset(i);
152 
153  // Storage for orthogonal coefficients
154  Array<OneD, NekDouble> coeffsOrth(nModes);
155 
156  // Project from coeffs -> orthogonal coeffs
157  LibUtilities::InterpCoeff1D(bkey, coeffs, bkeyOrth, coeffsOrth);
158 
159  // Write coeffs to file
160  m_out << "# Element " << i << " (ID " << exp->GetGeom()->GetGlobalID()
161  << ")" << endl;
162  for (int j = 0; j < nModes; ++j)
163  {
164  m_out << coeffsOrth[j] << endl;
165  }
166  }
167  m_out << endl;
168 }
169 
172  const NekDouble &time)
173 {
174  boost::ignore_unused(pFields, time);
175  m_out.close();
176 }
177 
179 {
180  return true;
181 }
182 } // namespace SolverUtils
183 } // namespace Nektar
#define ASSERTL0(condition, msg)
Definition: ErrorUtil.hpp:215
Describes the specification for a Basis.
Definition: Basis.h:50
tKey RegisterCreatorFunction(tKey idKey, CreatorFunction classCreator, std::string pDesc="")
Register a class with the factory.
Definition: NekFactory.hpp:198
virtual void v_Initialise(const Array< OneD, const MultiRegions::ExpListSharedPtr > &pField, const NekDouble &time) override
Initialize filter.
virtual bool v_IsTimeDependent() override
unsigned int m_outputFrequency
Output frequency.
virtual void v_Update(const Array< OneD, const MultiRegions::ExpListSharedPtr > &pField, const NekDouble &time) override
Update filter output with the current timestep's orthogonal coefficients.
unsigned int m_index
Current index counter.
SOLVER_UTILS_EXPORT ~FilterEnergy1D()
Destructor.
virtual void v_Finalise(const Array< OneD, const MultiRegions::ExpListSharedPtr > &pField, const NekDouble &time) override
std::ofstream m_out
Output file.
LibUtilities::SessionReaderSharedPtr m_session
Definition: Filter.h:85
std::map< std::string, std::string > ParamMap
Definition: Filter.h:67
std::shared_ptr< SessionReader > SessionReaderSharedPtr
void InterpCoeff1D(const BasisKey &fbasis0, const Array< OneD, const NekDouble > &from, const BasisKey &tbasis0, Array< OneD, NekDouble > &to)
Definition: InterpCoeff.cpp:46
@ eOrtho_A
Principle Orthogonal Functions .
Definition: BasisType.h:44
std::shared_ptr< Expansion > ExpansionSharedPtr
Definition: Expansion.h:68
FilterFactory & GetFilterFactory()
Definition: Filter.cpp:41
The above copyright notice and this permission notice shall be included.
Definition: CoupledSolver.h:2
double NekDouble