Nektar++
StdExpansion1D.h
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2 //
3 // File: StdExpansion1D.h
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: Daughter of StdExpansion. This class contains routine
32 // which are common to 1d expansion. Typically this inolves physical
33 // space operations.
34 //
35 ///////////////////////////////////////////////////////////////////////////////
36 
37 #ifndef STDEXP1D_H
38 #define STDEXP1D_H
39 
42 
43 namespace Nektar
44 {
45 namespace StdRegions
46 {
47 
48 class StdExpansion1D : virtual public StdExpansion
49 {
50 
51 public:
53  STD_REGIONS_EXPORT StdExpansion1D(int numcoeffs,
54  const LibUtilities::BasisKey &Ba);
56  STD_REGIONS_EXPORT virtual ~StdExpansion1D() override;
57 
58  /** \brief Evaluate the derivative \f$ d/d{\xi_1} \f$ at the
59  * physical quadrature points given by \a inarray and return in
60  * \a outarray.
61  *
62  * \param inarray array of a function evaluated at the quadrature
63  * points
64  * \param outarray the resulting array of the derivative \f$
65  * du/d_{\xi_1}|_{\xi_{1i}} \f$ will be stored in the array
66  * \a outarray as output of the function
67  */
69  const Array<OneD, const NekDouble> &inarray,
70  Array<OneD, NekDouble> &outarray);
71 
72  // find derivative of u (inarray) at all coords points
74  const Array<OneD, NekDouble> &coord,
75  const Array<OneD, const NekDouble> &inarray,
76  std::array<NekDouble, 3> &firstOrderDerivs)
77  {
78  return StdExpansion::BaryEvaluate<0, true>(coord[0], &inarray[0],
79  firstOrderDerivs[0]);
80  }
81 
82  // find derivative/2nd Derivative of u (inarray) at all coords points
84  const Array<OneD, NekDouble> &coord,
85  const Array<OneD, const NekDouble> &inarray,
86  std::array<NekDouble, 3> &firstOrderDerivs,
87  std::array<NekDouble, 6> &secondOrderDerivs)
88  {
89  return StdExpansion::BaryEvaluate<0, true, true>(
90  coord[0], &inarray[0], firstOrderDerivs[0], secondOrderDerivs[0]);
91  }
92 
93 protected:
95  const Array<OneD, const NekDouble> &coords,
96  const Array<OneD, const NekDouble> &physvals) override;
97 
99  const Array<OneD, NekDouble> &coord,
100  const Array<OneD, const NekDouble> &inarray,
101  std::array<NekDouble, 3> &firstOrderDerivs) override;
102 
104  const Array<OneD, NekDouble> &coord,
105  const Array<OneD, const NekDouble> &inarray,
106  std::array<NekDouble, 3> &firstOrderDerivs,
107  std::array<NekDouble, 6> &secondOrderDerivs) override;
108 
109 private:
110  // Virtual Functions ----------------------------------------
111 
112  virtual int v_GetShapeDimension() const final override
113  {
114  return 1;
115  }
116 };
117 
118 typedef std::shared_ptr<StdExpansion1D> StdExpansion1DSharedPtr;
119 
120 } // namespace StdRegions
121 } // namespace Nektar
122 
123 #endif // STDEXP1D_H
#define STD_REGIONS_EXPORT
Describes the specification for a Basis.
Definition: Basis.h:50
void PhysTensorDeriv(const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray)
Evaluate the derivative at the physical quadrature points given by inarray and return in outarray.
NekDouble BaryTensorDeriv(const Array< OneD, NekDouble > &coord, const Array< OneD, const NekDouble > &inarray, std::array< NekDouble, 3 > &firstOrderDerivs)
virtual int v_GetShapeDimension() const final override
virtual NekDouble v_PhysEvaluate(const Array< OneD, const NekDouble > &coords, const Array< OneD, const NekDouble > &physvals) override
NekDouble BaryTensorDeriv(const Array< OneD, NekDouble > &coord, const Array< OneD, const NekDouble > &inarray, std::array< NekDouble, 3 > &firstOrderDerivs, std::array< NekDouble, 6 > &secondOrderDerivs)
The base class for all shapes.
Definition: StdExpansion.h:71
std::shared_ptr< StdExpansion1D > StdExpansion1DSharedPtr
The above copyright notice and this permission notice shall be included.
Definition: CoupledSolver.h:2
double NekDouble