Nektar++
FilterThresholdMax.cpp
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1///////////////////////////////////////////////////////////////////////////////
2//
3// File: FilterThresholdMax.cpp
4//
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7// The MIT License
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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 time when solution first exceeds a threshold value.
32//
33///////////////////////////////////////////////////////////////////////////////
34
35#include <boost/core/ignore_unused.hpp>
36
38
39using namespace std;
40
41namespace Nektar
42{
43namespace SolverUtils
44{
45
49
52 const std::weak_ptr<EquationSystem> &pEquation, const ParamMap &pParams)
53 : Filter(pSession, pEquation)
54{
55 // ThresholdValue
56 auto it = pParams.find("ThresholdValue");
57 ASSERTL0(it != pParams.end(), "Missing parameter 'ThresholdValue'.");
58 LibUtilities::Equation equ1(m_session->GetInterpreter(), it->second);
60
61 // InitialValue
62 it = pParams.find("InitialValue");
63 ASSERTL0(it != pParams.end(), "Missing parameter 'InitialValue'.");
64 LibUtilities::Equation equ2(m_session->GetInterpreter(), it->second);
65 m_initialValue = equ2.Evaluate();
66
67 // StartTime
68 it = pParams.find("StartTime");
69 m_startTime = 0.0;
70 if (it != pParams.end())
71 {
72 LibUtilities::Equation equ(m_session->GetInterpreter(), it->second);
73 m_startTime = equ.Evaluate();
74 }
75
76 // OutputFile
77 it = pParams.find("OutputFile");
78 m_outputFile = pSession->GetSessionName() + "_max.fld";
79 if (it != pParams.end())
80 {
81 m_outputFile = it->second;
82 }
83
84 // ThresholdVar
85 it = pParams.find("ThresholdVar");
87 if (it != pParams.end())
88 {
89 std::string var = it->second.c_str();
90 std::vector<string> varlist = pSession->GetVariables();
91 auto x = std::find(varlist.begin(), varlist.end(), var);
92 ASSERTL0(x != varlist.end(),
93 "Specified variable " + var +
94 " in ThresholdMax filter is not available.");
95 m_thresholdVar = x - varlist.begin();
96 }
97
99}
100
102{
103}
104
107 const NekDouble &time)
108{
109 boost::ignore_unused(time);
110
111 m_threshold = Array<OneD, NekDouble>(pFields[m_thresholdVar]->GetNpoints(),
113}
114
117 const NekDouble &time)
118{
119 if (time < m_startTime)
120 {
121 return;
122 }
123
124 int i;
125 NekDouble timestep =
126 pFields[m_thresholdVar]->GetSession()->GetParameter("TimeStep");
127
128 for (i = 0; i < pFields[m_thresholdVar]->GetNpoints(); ++i)
129 {
130 if (m_threshold[i] < timestep &&
131 pFields[m_thresholdVar]->GetPhys()[i] > m_thresholdValue)
132 {
133 m_threshold[i] = time;
134 }
135 }
136}
137
140 const NekDouble &time)
141{
142 boost::ignore_unused(time);
143
144 std::vector<LibUtilities::FieldDefinitionsSharedPtr> FieldDef =
145 pFields[m_thresholdVar]->GetFieldDefinitions();
146 std::vector<std::vector<NekDouble>> FieldData(FieldDef.size());
147
148 Array<OneD, NekDouble> vCoeffs(pFields[0]->GetNcoeffs());
149 pFields[m_thresholdVar]->FwdTransLocalElmt(m_threshold, vCoeffs);
150
151 // copy Data into FieldData and set variable
152 for (int i = 0; i < FieldDef.size(); ++i)
153 {
154 // Could do a search here to find correct variable
155 FieldDef[i]->m_fields.push_back("m");
156 pFields[m_thresholdVar]->AppendFieldData(FieldDef[i], FieldData[i],
157 vCoeffs);
158 }
159
160 m_fld->Write(m_outputFile, FieldDef, FieldData);
161}
162
164{
165 return true;
166}
167} // namespace SolverUtils
168} // 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
static std::string className
Name of the class.
LibUtilities::FieldIOSharedPtr m_fld
FieldIO object for writing data.
virtual void v_Initialise(const Array< OneD, const MultiRegions::ExpListSharedPtr > &pFields, const NekDouble &time) override
Initialises the filter.
virtual void v_Update(const Array< OneD, const MultiRegions::ExpListSharedPtr > &pFields, const NekDouble &time) override
For each point in domain test if solution is above threshold.
virtual void v_Finalise(const Array< OneD, const MultiRegions::ExpListSharedPtr > &pFields, const NekDouble &time) override
Finalise the filter and write out data.
NekDouble m_startTime
Time at which to start recording.
std::string m_outputFile
File into which to write output data.
NekDouble m_initialValue
Initial value of storage.
Array< OneD, NekDouble > m_threshold
Storage for recording when each point in domain rises above threshold.
virtual bool v_IsTimeDependent() override
Indicate that this filter is time dependent.
static FilterSharedPtr create(const LibUtilities::SessionReaderSharedPtr &pSession, const std::weak_ptr< EquationSystem > &pEquation, const std::map< std::string, std::string > &pParams)
Creates an instance of this class.
int m_thresholdVar
Variable on which to detect threshold.
virtual SOLVER_UTILS_EXPORT ~FilterThresholdMax()
NekDouble m_thresholdValue
Value of threshold.
SOLVER_UTILS_EXPORT FilterThresholdMax(const LibUtilities::SessionReaderSharedPtr &pSession, const std::weak_ptr< EquationSystem > &pEquation, const ParamMap &pParams)
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:453
The above copyright notice and this permission notice shall be included.
Definition: CoupledSolver.h:2
double NekDouble