Nektar++
IsentropicVortexBC.cpp
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3 // File: IsentropicVortexBC.cpp
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30 //
31 // Description: Isentropic vortex boundary condition
32 //
33 ///////////////////////////////////////////////////////////////////////////////
34 
35 #include <boost/core/ignore_unused.hpp>
36 
37 #include "IsentropicVortexBC.h"
38 
39 using namespace std;
40 
41 namespace Nektar
42 {
43 
44 std::string IsentropicVortexBC::className =
46  "IsentropicVortex", IsentropicVortexBC::create,
47  "Isentropic vortex boundary condition.");
48 
49 IsentropicVortexBC::IsentropicVortexBC(
52  const Array<OneD, Array<OneD, NekDouble>> &pTraceNormals,
53  const int pSpaceDim, const int bcRegion, const int cnt)
54  : CFSBndCond(pSession, pFields, pTraceNormals, pSpaceDim, bcRegion, cnt)
55 {
56 }
57 
59  Array<OneD, Array<OneD, NekDouble>> &physarray,
60  const NekDouble &time)
61 {
62  int nvariables = physarray.size();
63 
64  const Array<OneD, const int> &bndTraceMap = m_fields[0]->GetTraceBndMap();
65  // loop over Boundary Regions
66  int npoints, id1, id2, e_max;
67 
68  e_max = m_fields[0]->GetBndCondExpansions()[m_bcRegion]->GetExpSize();
69 
70  for (int e = 0; e < e_max; ++e)
71  {
72  npoints = m_fields[0]
73  ->GetBndCondExpansions()[m_bcRegion]
74  ->GetExp(e)
75  ->GetTotPoints();
76  id1 =
77  m_fields[0]->GetBndCondExpansions()[m_bcRegion]->GetPhys_Offset(e);
78  id2 =
79  m_fields[0]->GetTrace()->GetPhys_Offset(bndTraceMap[m_offset + e]);
80 
81  Array<OneD, NekDouble> x(npoints, 0.0);
82  Array<OneD, NekDouble> y(npoints, 0.0);
83  Array<OneD, NekDouble> z(npoints, 0.0);
84 
85  m_fields[0]->GetBndCondExpansions()[m_bcRegion]->GetExp(e)->GetCoords(
86  x, y, z);
87 
88  EvaluateIsentropicVortex(x, y, z, Fwd, time, id2);
89 
90  for (int i = 0; i < nvariables; ++i)
91  {
92  Vmath::Vcopy(npoints, &Fwd[i][id2], 1,
93  &(m_fields[i]
94  ->GetBndCondExpansions()[m_bcRegion]
95  ->UpdatePhys())[id1],
96  1);
97  }
98  }
99 }
100 
104  NekDouble time, const int o)
105 {
106  boost::ignore_unused(z);
107 
108  int nq = x.size();
109 
110  // Flow parameters
111  const NekDouble x0 = 5.0;
112  const NekDouble y0 = 0.0;
113  const NekDouble beta = 5.0;
114  const NekDouble u0 = 1.0;
115  const NekDouble v0 = 0.5;
116  const NekDouble gamma = m_gamma;
117  NekDouble r, xbar, ybar, tmp;
118  NekDouble fac = 1.0 / (16.0 * gamma * M_PI * M_PI);
119 
120  // In 3D zero rhow field.
121  if (m_spacedim == 3)
122  {
123  Vmath::Zero(nq, &u[3][o], 1);
124  }
125 
126  // Fill storage
127  for (int i = 0; i < nq; ++i)
128  {
129  xbar = x[i] - u0 * time - x0;
130  ybar = y[i] - v0 * time - y0;
131  r = sqrt(xbar * xbar + ybar * ybar);
132  tmp = beta * exp(1 - r * r);
133  u[0][i + o] =
134  pow(1.0 - (gamma - 1.0) * tmp * tmp * fac, 1.0 / (gamma - 1.0));
135  u[1][i + o] = u[0][i + o] * (u0 - tmp * ybar / (2 * M_PI));
136  u[2][i + o] = u[0][i + o] * (v0 + tmp * xbar / (2 * M_PI));
137  u[m_spacedim + 1][i + o] =
138  pow(u[0][i + o], gamma) / (gamma - 1.0) +
139  0.5 * (u[1][i + o] * u[1][i + o] + u[2][i + o] * u[2][i + o]) /
140  u[0][i + o];
141  }
142 }
143 
144 } // namespace Nektar
Encapsulates the user-defined boundary conditions for compressible flow solver.
Definition: CFSBndCond.h:70
int m_spacedim
Space dimension.
Definition: CFSBndCond.h:95
NekDouble m_gamma
Parameters of the flow.
Definition: CFSBndCond.h:102
int m_bcRegion
Id of the boundary region.
Definition: CFSBndCond.h:109
int m_offset
Offset.
Definition: CFSBndCond.h:111
Array< OneD, MultiRegions::ExpListSharedPtr > m_fields
Array of fields.
Definition: CFSBndCond.h:91
void EvaluateIsentropicVortex(const Array< OneD, NekDouble > &x, const Array< OneD, NekDouble > &y, const Array< OneD, NekDouble > &z, Array< OneD, Array< OneD, NekDouble >> &u, NekDouble time, const int o=0)
virtual void v_Apply(Array< OneD, Array< OneD, NekDouble >> &Fwd, Array< OneD, Array< OneD, NekDouble >> &physarray, const NekDouble &time) override
tKey RegisterCreatorFunction(tKey idKey, CreatorFunction classCreator, std::string pDesc="")
Register a class with the factory.
Definition: NekFactory.hpp:198
std::shared_ptr< SessionReader > SessionReaderSharedPtr
@ beta
Gauss Radau pinned at x=-1,.
Definition: PointsType.h:61
The above copyright notice and this permission notice shall be included.
Definition: CoupledSolver.h:2
CFSBndCondFactory & GetCFSBndCondFactory()
Declaration of the boundary condition factory singleton.
Definition: CFSBndCond.cpp:41
double NekDouble
void Zero(int n, T *x, const int incx)
Zero vector.
Definition: Vmath.cpp:492
void Vcopy(int n, const T *x, const int incx, T *y, const int incy)
Definition: Vmath.cpp:1255
scalarT< T > sqrt(scalarT< T > in)
Definition: scalar.hpp:294