Nektar++
Functions
Aliasing.cpp File Reference
#include <cstdio>
#include <cstdlib>
#include <SolverUtils/Driver.h>
#include <LibUtilities/BasicUtils/SessionReader.h>
#include <IncNavierStokesSolver/EquationSystems/IncNavierStokes.h>
#include <IncNavierStokesSolver/AdvectionTerms/NavierStokesAdvection.h>

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Functions

int main (int argc, char *argv[])
 

Function Documentation

◆ main()

int main ( int  argc,
char *  argv[] 
)

Definition at line 14 of file Aliasing.cpp.

References Nektar::LibUtilities::NekFactory< tKey, tBase, tParam >::CreateInstance(), Nektar::SolverUtils::GetDriverFactory(), CellMLToNektar.pycml::name, Nektar::SolverUtils::EquationSystem::SetInitialConditions(), and Vmath::Vsub().

15 {
16  if(argc != 2)
17  {
18  fprintf(stderr,"Usage: ./Aliasing file.xml \n");
19  fprintf(stderr,"\t Method will read intiial conditions section of .xml file for input \n");
20  exit(1);
21  }
22 
25  string vDriverModule;
26  DriverSharedPtr drv;
27  try
28  {
29  // Create session reader.
30  session = LibUtilities::SessionReader::CreateInstance(argc, argv);
31 
32  // Create MeshGraph.
33  graph = SpatialDomains::MeshGraph::Read(session);
34 
35  // Create driver
36  session->LoadSolverInfo("Driver", vDriverModule, "Standard");
37  drv = GetDriverFactory().CreateInstance(vDriverModule, session, graph);
38 
39  EquationSystemSharedPtr EqSys = drv->GetEqu()[0];
40  IncNavierStokesSharedPtr IncNav = EqSys->as<IncNavierStokes>();
41 
42  IncNav->SetInitialConditions(0.0,false);
43  Array<OneD, MultiRegions::ExpListSharedPtr> fields = IncNav->UpdateFields();
44 
45  int i;
46  int nConvectiveFields = IncNav->GetNConvectiveFields();
47  int nphys = fields[0]->GetTotPoints();
48  Array<OneD, Array<OneD, NekDouble> > VelFields(nConvectiveFields);
49  Array<OneD, Array<OneD, NekDouble> > NonLinear(nConvectiveFields);
50  Array<OneD, Array<OneD, NekDouble> > NonLinearDealiased(nConvectiveFields);
51 
52  for(i = 0; i < nConvectiveFields; ++i)
53  {
54  VelFields[i] = fields[i]->UpdatePhys();
55  NonLinear[i] = Array<OneD, NekDouble> (nphys);
56  NonLinearDealiased[i] = Array<OneD, NekDouble> (nphys);
57  }
58 
59  std::shared_ptr<NavierStokesAdvection> A
60  = std::dynamic_pointer_cast<NavierStokesAdvection>(IncNav->GetAdvObject());
61 
62  if (!A)
63  {
64  cout << "Must use non-linear Navier-Stokes advection" << endl;
65  exit(-1);
66  }
67 
68  // calculate non-linear terms without dealiasing
69  A->SetSpecHPDealiasing(false);
70  A->Advect(nConvectiveFields, fields,
71  VelFields, VelFields,
72  NonLinear, 0.0);
73 
74 
75  // calculate non-linear terms with dealiasing
76  A->SetSpecHPDealiasing(true);
77  A->Advect(nConvectiveFields, fields,
78  VelFields, VelFields,
79  NonLinearDealiased, 0.0);
80 
81  // Evaulate Difference and put into fields;
82  for(i = 0; i < nConvectiveFields; ++i)
83  {
84  Vmath::Vsub(nphys,NonLinearDealiased[i],1,NonLinear[i],1,NonLinear[i],1);
85  fields[i]->FwdTrans_IterPerExp(NonLinear[i],fields[i]->UpdateCoeffs());
86  // Need to reset varibale name for output
87  string name = "NL_Aliasing_"+session->GetVariable(i);
88  session->SetVariable(i,name.c_str());
89  }
90 
91 
92  // Reset session name for output file
93  std::string outname = IncNav->GetSessionName();
94 
95  outname += "_NonLinear_Aliasing";
96  IncNav->ResetSessionName(outname);
97  IncNav->Output();
98 
99  }
100  catch (const std::runtime_error&)
101  {
102  return 1;
103  }
104  catch (const std::string& eStr)
105  {
106  cout << "Error: " << eStr << endl;
107  }
108 
109 
110  return 0;
111 }
std::shared_ptr< MeshGraph > MeshGraphSharedPtr
Definition: MeshGraph.h:163
std::shared_ptr< IncNavierStokes > IncNavierStokesSharedPtr
std::shared_ptr< Driver > DriverSharedPtr
A shared pointer to a Driver object.
Definition: Driver.h:51
tBaseSharedPtr CreateInstance(tKey idKey, tParam... args)
Create an instance of the class referred to by idKey.
Definition: NekFactory.hpp:144
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:346
This class is the base class for Navier Stokes problems.
DriverFactory & GetDriverFactory()
Definition: Driver.cpp:65
SOLVER_UTILS_EXPORT void SetInitialConditions(NekDouble initialtime=0.0, bool dumpInitialConditions=true, const int domain=0)
Initialise the data in the dependent fields.
std::shared_ptr< SessionReader > SessionReaderSharedPtr
std::shared_ptr< EquationSystem > EquationSystemSharedPtr
A shared pointer to an EquationSystem object.