Nektar++
FilterThresholdMin.cpp
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2 //
3 // File: FilterThresholdMin.cpp
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9 // Copyright (c) 2006 Division of Applied Mathematics, Brown University (USA),
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30 //
31 // Description: Outputs time when solution first drops below a threshold value.
32 //
33 ///////////////////////////////////////////////////////////////////////////////
34 
35 #include <boost/core/ignore_unused.hpp>
36 
38 
39 using namespace std;
40 
41 namespace Nektar
42 {
43 namespace SolverUtils
44 {
45 
46 std::string FilterThresholdMin::className =
48  FilterThresholdMin::create);
49 
50 /**
51  *
52  */
53 FilterThresholdMin::FilterThresholdMin(
55  const std::weak_ptr<EquationSystem> &pEquation, const ParamMap &pParams)
56  : Filter(pSession, pEquation)
57 {
58  // ThresholdValue
59  auto it = pParams.find("ThresholdValue");
60  ASSERTL0(it != pParams.end(), "Missing parameter 'ThresholdValue'.");
61  LibUtilities::Equation equ1(m_session->GetInterpreter(), it->second);
62  m_thresholdValue = equ1.Evaluate();
63 
64  // InitialValue
65  it = pParams.find("InitialValue");
66  ASSERTL0(it != pParams.end(), "Missing parameter 'InitialValue'.");
67  LibUtilities::Equation equ2(m_session->GetInterpreter(), it->second);
68  m_initialValue = equ2.Evaluate();
69 
70  // StartTime
71  it = pParams.find("StartTime");
72  m_startTime = 0.0;
73  if (it != pParams.end())
74  {
75  LibUtilities::Equation equ(m_session->GetInterpreter(), it->second);
76  m_startTime = equ.Evaluate();
77  }
78 
79  // OutputFile
80  it = pParams.find("OutputFile");
81  m_outputFile = pSession->GetSessionName() + "_max.fld";
82  if (it != pParams.end())
83  {
84  m_outputFile = it->second;
85  }
86 
87  // ThresholdVar
88  it = pParams.find("ThresholdVar");
89  m_thresholdVar = 0;
90  if (it != pParams.end())
91  {
92  std::string var = it->second.c_str();
93  std::vector<string> varlist = pSession->GetVariables();
94  auto x = std::find(varlist.begin(), varlist.end(), var);
95  ASSERTL0(x != varlist.end(),
96  "Specified variable " + var +
97  " in ThresholdMin filter is not available.");
98  m_thresholdVar = x - varlist.begin();
99  }
100 
102 }
103 
104 /**
105  *
106  */
108 {
109 }
110 
111 /**
112  *
113  */
116  const NekDouble &time)
117 {
118  boost::ignore_unused(time);
119 
120  m_threshold = Array<OneD, NekDouble>(pFields[m_thresholdVar]->GetNpoints(),
122 }
123 
124 /**
125  *
126  */
129  const NekDouble &time)
130 {
131  if (time < m_startTime)
132  {
133  return;
134  }
135 
136  int i;
137  NekDouble timestep =
138  pFields[m_thresholdVar]->GetSession()->GetParameter("TimeStep");
139 
140  for (i = 0; i < pFields[m_thresholdVar]->GetNpoints(); ++i)
141  {
142  if (m_threshold[i] < timestep &&
143  pFields[m_thresholdVar]->GetPhys()[i] > m_thresholdValue)
144  {
145  m_threshold[i] = time;
146  }
147  }
148 }
149 
150 /**
151  *
152  */
155  const NekDouble &time)
156 {
157  boost::ignore_unused(time);
158 
159  std::stringstream vOutputFilename;
160  vOutputFilename << m_outputFile << ".fld";
161 
162  std::vector<LibUtilities::FieldDefinitionsSharedPtr> FieldDef =
163  pFields[0]->GetFieldDefinitions();
164  std::vector<std::vector<NekDouble>> FieldData(FieldDef.size());
165 
166  Array<OneD, NekDouble> vCoeffs(pFields[0]->GetNcoeffs());
167  pFields[0]->FwdTransLocalElmt(m_threshold, vCoeffs);
168 
169  // copy Data into FieldData and set variable
170  for (int i = 0; i < FieldDef.size(); ++i)
171  {
172  // Could do a search here to find correct variable
173  FieldDef[i]->m_fields.push_back("m");
174  pFields[0]->AppendFieldData(FieldDef[i], FieldData[i], vCoeffs);
175  }
176 
177  m_fld->Write(vOutputFilename.str(), FieldDef, FieldData);
178 }
179 
180 /**
181  *
182  */
184 {
185  return true;
186 }
187 
188 } // namespace SolverUtils
189 } // namespace Nektar
#define ASSERTL0(condition, msg)
Definition: ErrorUtil.hpp:215
static std::shared_ptr< FieldIO > CreateDefault(const LibUtilities::SessionReaderSharedPtr session)
Returns an object for the default FieldIO method.
Definition: FieldIO.cpp:197
tKey RegisterCreatorFunction(tKey idKey, CreatorFunction classCreator, std::string pDesc="")
Register a class with the factory.
Definition: NekFactory.hpp:198
LibUtilities::SessionReaderSharedPtr m_session
Definition: Filter.h:85
std::map< std::string, std::string > ParamMap
Definition: Filter.h:67
NekDouble m_thresholdValue
Value of threshold.
LibUtilities::FieldIOSharedPtr m_fld
FieldIO object for writing data.
virtual SOLVER_UTILS_EXPORT void v_Finalise(const Array< OneD, const MultiRegions::ExpListSharedPtr > &pFields, const NekDouble &time) override
Finalise the filter and write out data.
NekDouble m_initialValue
Initial value of storage.
virtual SOLVER_UTILS_EXPORT ~FilterThresholdMin()
std::string m_outputFile
File into which to write output data.
virtual SOLVER_UTILS_EXPORT void v_Initialise(const Array< OneD, const MultiRegions::ExpListSharedPtr > &pFields, const NekDouble &time) override
Initialises the filter.
virtual SOLVER_UTILS_EXPORT bool v_IsTimeDependent() override
Indicate that this filter is time dependent.
Array< OneD, NekDouble > m_threshold
Storage for recording when each point in domain drops below threshold.
virtual SOLVER_UTILS_EXPORT void v_Update(const Array< OneD, const MultiRegions::ExpListSharedPtr > &pFields, const NekDouble &time) override
For each point in domain test if solution is below threshold.
int m_thresholdVar
Variable on which to detect threshold.
NekDouble m_startTime
Time at which to start recording.
std::shared_ptr< SessionReader > SessionReaderSharedPtr
FilterFactory & GetFilterFactory()
Definition: Filter.cpp:41
InputIterator find(InputIterator first, InputIterator last, InputIterator startingpoint, const EqualityComparable &value)
Definition: StdRegions.hpp:444
The above copyright notice and this permission notice shall be included.
Definition: CoupledSolver.h:2
double NekDouble