Nektar++
NodalPrismSPI.cpp
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1 ///////////////////////////////////////////////////////////////////////////////
2 //
3 // File: NodalPrismSPI.cpp
4 //
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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: 3D Nodal prism SPI points distribution
32 //
33 ///////////////////////////////////////////////////////////////////////////////
34 
41 
42 namespace Nektar
43 {
44 namespace LibUtilities
45 {
47  PointsKey(0, eNodalPrismSPI), NodalPrismSPI::Create)};
48 
50 {
51  // Allocate the storage for points
52  unsigned int numPoints = GetNumPoints();
53 
54  PointsKey e(numPoints, eGaussLobattoLegendre);
55  PointsManager()[e]->GetPoints(m_e0);
56  m_ew = PointsManager()[e]->GetW();
57 
58  PointsKey t(numPoints, eNodalTriSPI);
59  PointsManager()[t]->GetPoints(m_t0, m_t1);
60  m_tw = PointsManager()[t]->GetW();
61  m_numtri = m_tw.size();
62 
63  for (int i = 0; i < 3; i++)
64  {
65  m_points[i] = Array<OneD, DataType>(m_numtri * numPoints);
66  }
67 
68  for (int j = 0, ct = 0; j < numPoints; j++)
69  {
70  for (int i = 0; i < m_numtri; i++, ct++)
71  {
72  // need to flip y and z because of quad orientation
73  m_points[0][ct] = m_t0[i];
74  m_points[1][ct] = m_e0[j];
75  m_points[2][ct] = m_t1[i];
76  }
77  }
78 }
79 
81 {
82  unsigned int numPoints = GetNumPoints();
83 
85 
86  for (int j = 0, ct = 0; j < numPoints; j++)
87  {
88  for (int i = 0; i < m_numtri; i++, ct++)
89  {
90  m_weights[ct] = m_tw[i] * m_ew[j];
91  }
92  }
93 }
94 
96 {
97 }
98 
99 std::shared_ptr<PointsBaseType> NodalPrismSPI::Create(const PointsKey &key)
100 {
101  std::shared_ptr<PointsBaseType> returnval(
103  returnval->Initialize();
104  return returnval;
105 }
106 
107 } // namespace LibUtilities
108 } // namespace Nektar
bool RegisterCreator(const KeyType &key, const CreateFuncType &createFunc)
Register the given function and associate it with the key. The return value is just to facilitate cal...
Definition: NekManager.hpp:170
static std::shared_ptr< PointsBaseType > Create(const PointsKey &key)
virtual void v_CalculateWeights() override
Array< OneD, NekDouble > m_t1
Definition: NodalPrismSPI.h:71
virtual void v_CalculateDerivMatrix() override
Array< OneD, NekDouble > m_ew
Definition: NodalPrismSPI.h:71
Array< OneD, NekDouble > m_e0
Definition: NodalPrismSPI.h:71
Array< OneD, NekDouble > m_tw
Definition: NodalPrismSPI.h:71
virtual void v_CalculatePoints() override
Array< OneD, NekDouble > m_t0
Definition: NodalPrismSPI.h:71
Array< OneD, DataType > m_points[3]
Storage for the point locations, allowing for up to a 3D points storage.
Definition: Points.h:375
unsigned int GetNumPoints() const
Definition: Points.h:273
Array< OneD, DataType > m_weights
Quadrature weights for the weights.
Definition: Points.h:377
Defines a specification for a set of points.
Definition: Points.h:59
General purpose memory allocation routines with the ability to allocate from thread specific memory p...
PointsManagerT & PointsManager(void)
@ eNodalPrismSPI
3D prism SPI
Definition: PointsType.h:94
@ eGaussLobattoLegendre
1D Gauss-Lobatto-Legendre quadrature points
Definition: PointsType.h:53
@ eNodalTriSPI
2D Nodal Symmetric positive internal triangle (Whitherden, Vincent)
Definition: PointsType.h:90
The above copyright notice and this permission notice shall be included.
Definition: CoupledSolver.h:2