Nektar++
Static Public Member Functions | Static Public Attributes | Protected Member Functions | Friends | List of all members
Nektar::GlobalMapping::MappingXofZ Class Reference

#include <MappingXofZ.h>

Inheritance diagram for Nektar::GlobalMapping::MappingXofZ:
[legend]

Static Public Member Functions

static GLOBAL_MAPPING_EXPORT MappingSharedPtr create (const LibUtilities::SessionReaderSharedPtr &pSession, const Array< OneD, MultiRegions::ExpListSharedPtr > &pFields, const TiXmlElement *pMapping)
 Creates an instance of this class. More...
 
- Static Public Member Functions inherited from Nektar::GlobalMapping::Mapping
static GLOBAL_MAPPING_EXPORT MappingSharedPtr Load (const LibUtilities::SessionReaderSharedPtr &pSession, const Array< OneD, MultiRegions::ExpListSharedPtr > &pFields)
 Return a pointer to the mapping, creating it on first call. More...
 

Static Public Attributes

static std::string className
 Name of the class. More...
 

Protected Member Functions

 MappingXofZ (const LibUtilities::SessionReaderSharedPtr &pSession, const Array< OneD, MultiRegions::ExpListSharedPtr > &pFields)
 
virtual GLOBAL_MAPPING_EXPORT void v_InitObject (const Array< OneD, MultiRegions::ExpListSharedPtr > &pFields, const TiXmlElement *pMapping)
 
virtual GLOBAL_MAPPING_EXPORT void v_ContravarToCartesian (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray)
 
virtual GLOBAL_MAPPING_EXPORT void v_CovarToCartesian (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray)
 
virtual GLOBAL_MAPPING_EXPORT void v_ContravarFromCartesian (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray)
 
virtual GLOBAL_MAPPING_EXPORT void v_CovarFromCartesian (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray)
 
virtual GLOBAL_MAPPING_EXPORT void v_GetJacobian (Array< OneD, NekDouble > &outarray)
 
virtual GLOBAL_MAPPING_EXPORT void v_DotGradJacobian (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, NekDouble > &outarray)
 
virtual GLOBAL_MAPPING_EXPORT void v_GetMetricTensor (Array< OneD, Array< OneD, NekDouble > > &outarray)
 
virtual GLOBAL_MAPPING_EXPORT void v_GetInvMetricTensor (Array< OneD, Array< OneD, NekDouble > > &outarray)
 
virtual GLOBAL_MAPPING_EXPORT void v_LowerIndex (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray)
 
virtual GLOBAL_MAPPING_EXPORT void v_RaiseIndex (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray)
 
virtual GLOBAL_MAPPING_EXPORT void v_ApplyChristoffelContravar (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray)
 
virtual GLOBAL_MAPPING_EXPORT void v_ApplyChristoffelCovar (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray)
 
virtual GLOBAL_MAPPING_EXPORT void v_UpdateGeomInfo ()
 
- Protected Member Functions inherited from Nektar::GlobalMapping::Mapping
GLOBAL_MAPPING_EXPORT Mapping (const LibUtilities::SessionReaderSharedPtr &pSession, const Array< OneD, MultiRegions::ExpListSharedPtr > &pFields)
 Constructor. More...
 
GLOBAL_MAPPING_EXPORT void EvaluateFunction (Array< OneD, MultiRegions::ExpListSharedPtr > pFields, LibUtilities::SessionReaderSharedPtr pSession, std::string pFieldName, Array< OneD, NekDouble > &pArray, const std::string &pFunctionName, NekDouble pTime=NekDouble(0))
 
GLOBAL_MAPPING_EXPORT void EvaluateTimeFunction (LibUtilities::SessionReaderSharedPtr pSession, std::string pFieldName, Array< OneD, NekDouble > &pArray, const std::string &pFunctionName, NekDouble pTime=NekDouble(0))
 
virtual GLOBAL_MAPPING_EXPORT void v_GetCartesianCoordinates (Array< OneD, NekDouble > &out0, Array< OneD, NekDouble > &out1, Array< OneD, NekDouble > &out2)
 
virtual GLOBAL_MAPPING_EXPORT void v_GetCoordVelocity (Array< OneD, Array< OneD, NekDouble > > &outarray)
 
virtual GLOBAL_MAPPING_EXPORT void v_Divergence (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, NekDouble > &outarray)
 
virtual GLOBAL_MAPPING_EXPORT void v_VelocityLaplacian (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray, const NekDouble alpha)
 
virtual GLOBAL_MAPPING_EXPORT void v_gradgradU (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray)
 
virtual GLOBAL_MAPPING_EXPORT void v_CurlCurlField (Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray, const bool generalized)
 
virtual GLOBAL_MAPPING_EXPORT void v_UpdateMapping (const NekDouble time, const Array< OneD, Array< OneD, NekDouble > > &coords=NullNekDoubleArrayOfArray, const Array< OneD, Array< OneD, NekDouble > > &coordsVel=NullNekDoubleArrayOfArray)
 
virtual GLOBAL_MAPPING_EXPORT void v_UpdateBCs (const NekDouble time)
 

Friends

class MemoryManager< MappingXofZ >
 

Additional Inherited Members

- Public Member Functions inherited from Nektar::GlobalMapping::Mapping
virtual GLOBAL_MAPPING_EXPORT ~Mapping ()
 Destructor. More...
 
GLOBAL_MAPPING_EXPORT void InitObject (const Array< OneD, MultiRegions::ExpListSharedPtr > &pFields, const TiXmlElement *pMapping)
 Initialise the mapping object. More...
 
GLOBAL_MAPPING_EXPORT void ReplaceField (const Array< OneD, MultiRegions::ExpListSharedPtr > &pFields)
 Replace the Expansion List used by the mapping. More...
 
GLOBAL_MAPPING_EXPORT void Output (LibUtilities::FieldMetaDataMap &fieldMetaDataMap, const std::string &outname)
 Output function called when a chk or fld file is written. More...
 
GLOBAL_MAPPING_EXPORT void ContravarToCartesian (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray)
 Convert a contravariant vector to the Cartesian system. More...
 
GLOBAL_MAPPING_EXPORT void CovarToCartesian (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray)
 Convert a covariant vector to the Cartesian system. More...
 
GLOBAL_MAPPING_EXPORT void ContravarFromCartesian (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray)
 Convert a contravariant vector to the transformed system. More...
 
GLOBAL_MAPPING_EXPORT void CovarFromCartesian (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray)
 Convert a covariant vector to the transformed system. More...
 
GLOBAL_MAPPING_EXPORT void GetCartesianCoordinates (Array< OneD, NekDouble > &out0, Array< OneD, NekDouble > &out1, Array< OneD, NekDouble > &out2)
 Get the Cartesian coordinates in the field. More...
 
GLOBAL_MAPPING_EXPORT void GetJacobian (Array< OneD, NekDouble > &outarray)
 Get the Jacobian of the transformation. More...
 
GLOBAL_MAPPING_EXPORT void DotGradJacobian (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, NekDouble > &outarray)
 Calculate the dot product with the gradient of the Jacobian. More...
 
GLOBAL_MAPPING_EXPORT void GetMetricTensor (Array< OneD, Array< OneD, NekDouble > > &outarray)
 Get the metric tensor \(g_{ij}\). More...
 
GLOBAL_MAPPING_EXPORT void GetInvMetricTensor (Array< OneD, Array< OneD, NekDouble > > &outarray)
 Get the inverse of metric tensor \(g^{ij}\). More...
 
GLOBAL_MAPPING_EXPORT void LowerIndex (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray)
 Lower index of vector: \(v_{i} = g_{ij}*v^{j}\). More...
 
GLOBAL_MAPPING_EXPORT void RaiseIndex (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray)
 Raise index of vector: \(v^{i} = g^{ij}*v_{j}\). More...
 
GLOBAL_MAPPING_EXPORT void ApplyChristoffelContravar (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray)
 Apply the Christoffel symbols to a contravariant vector. More...
 
GLOBAL_MAPPING_EXPORT void ApplyChristoffelCovar (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray)
 Apply the Christoffel symbols to a covariant vector. More...
 
GLOBAL_MAPPING_EXPORT void GetCoordVelocity (Array< OneD, Array< OneD, NekDouble > > &outarray)
 Obtain the velocity of the coordinates. More...
 
GLOBAL_MAPPING_EXPORT void Divergence (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, NekDouble > &outarray)
 Calculate the generalised divergence operator. More...
 
GLOBAL_MAPPING_EXPORT void VelocityLaplacian (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray, const NekDouble alpha=0.0)
 Generalised (correction to the) velocity Laplacian operator. More...
 
GLOBAL_MAPPING_EXPORT void gradgradU (const Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray)
 Second order covariant derivatives of a contravariant vector. More...
 
GLOBAL_MAPPING_EXPORT void CurlCurlField (Array< OneD, Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &outarray, const bool generalized)
 CurlCurl calculated on the whole field. More...
 
GLOBAL_MAPPING_EXPORT bool IsTimeDependent ()
 Get flag defining if mapping is time-dependent. More...
 
GLOBAL_MAPPING_EXPORT void SetTimeDependent (const bool value)
 Set flag defining if mapping is time-dependent. More...
 
GLOBAL_MAPPING_EXPORT bool IsFromFunction ()
 Get flag defining if mapping is defined by a function. More...
 
GLOBAL_MAPPING_EXPORT void SetFromFunction (const bool value)
 Set flag defining if mapping is defined by a function. More...
 
GLOBAL_MAPPING_EXPORT bool HasConstantJacobian ()
 Get flag defining if mapping has constant Jacobian. More...
 
GLOBAL_MAPPING_EXPORT bool IsDefined ()
 Get flag determining if the mapping was defined or is trivial. More...
 
GLOBAL_MAPPING_EXPORT void UpdateBCs (const NekDouble time)
 Update the Dirichlet Boundary Conditions when using Mappings. More...
 
GLOBAL_MAPPING_EXPORT void UpdateMapping (const NekDouble time, const Array< OneD, Array< OneD, NekDouble > > &coords=NullNekDoubleArrayOfArray, const Array< OneD, Array< OneD, NekDouble > > &coordsVel=NullNekDoubleArrayOfArray)
 Update the Mapping with new coordinates. More...
 
GLOBAL_MAPPING_EXPORT void UpdateGeomInfo ()
 Recompute the metric terms of the Mapping. More...
 
- Protected Attributes inherited from Nektar::GlobalMapping::Mapping
LibUtilities::SessionReaderSharedPtr m_session
 Session reader. More...
 
LibUtilities::FieldIOSharedPtr m_fld
 
Array< OneD, MultiRegions::ExpListSharedPtrm_fields
 
Array< OneD, Array< OneD, NekDouble > > m_coords
 Array with the Cartesian coordinates. More...
 
Array< OneD, Array< OneD, NekDouble > > m_coordsVel
 Array with the velocity of the coordinates. More...
 
Array< OneD, Array< OneD, NekDouble > > m_GeometricInfo
 Array with metric terms of the mapping. More...
 
int m_nConvectiveFields
 Number of velocity components. More...
 
std::string m_funcName
 Name of the function containing the coordinates. More...
 
std::string m_velFuncName
 Name of the function containing the velocity of the coordinates. More...
 
bool m_constantJacobian
 Flag defining if the Jacobian is constant. More...
 
bool m_timeDependent
 Flag defining if the Mapping is time-dependent. More...
 
bool m_fromFunction
 Flag defining if the Mapping is defined by a function. More...
 
Array< OneD, Array< OneD, NekDouble > > m_wk1
 
Array< OneD, Array< OneD, NekDouble > > m_wk2
 
Array< OneD, Array< OneD, NekDouble > > m_tmp
 
- Static Protected Attributes inherited from Nektar::GlobalMapping::Mapping
static MappingSharedPtr m_mappingPtr = MappingSharedPtr()
 
static bool m_init = false
 
static bool m_isDefined = false
 

Detailed Description

This class implements a constant-Jacobian mapping defined by a transformation of the type

\[ \bar{x} = \bar{x}(x,z) = x + f(z) \]

\[ \bar{y} = y \]

\[ \bar{z} = z \]

where \((\bar{x},\bar{y},\bar{z})\) are the Cartesian (physical) coordinates and \((x,y,z)\) are the transformed (computational) coordinates.

Definition at line 51 of file MappingXofZ.h.

Constructor & Destructor Documentation

◆ MappingXofZ()

Nektar::GlobalMapping::MappingXofZ::MappingXofZ ( const LibUtilities::SessionReaderSharedPtr pSession,
const Array< OneD, MultiRegions::ExpListSharedPtr > &  pFields 
)
protected

Definition at line 60 of file MappingXofZ.cpp.

63  : Mapping(pSession, pFields)
64 {
65 }
GLOBAL_MAPPING_EXPORT Mapping(const LibUtilities::SessionReaderSharedPtr &pSession, const Array< OneD, MultiRegions::ExpListSharedPtr > &pFields)
Constructor.
Definition: Mapping.cpp:58

Member Function Documentation

◆ create()

static GLOBAL_MAPPING_EXPORT MappingSharedPtr Nektar::GlobalMapping::MappingXofZ::create ( const LibUtilities::SessionReaderSharedPtr pSession,
const Array< OneD, MultiRegions::ExpListSharedPtr > &  pFields,
const TiXmlElement *  pMapping 
)
inlinestatic

Creates an instance of this class.

Definition at line 59 of file MappingXofZ.h.

63  {
66  pFields);
67  p->InitObject(pFields, pMapping);
68  return p;
69  }
static std::shared_ptr< DataType > AllocateSharedPtr(const Args &...args)
Allocate a shared pointer from the memory pool.
GLOBAL_MAPPING_EXPORT typedef std::shared_ptr< Mapping > MappingSharedPtr
A shared pointer to a Mapping object.
Definition: Mapping.h:50

References Nektar::MemoryManager< DataType >::AllocateSharedPtr(), Nektar::GlobalMapping::MappingSharedPtr, and CellMLToNektar.cellml_metadata::p.

◆ v_ApplyChristoffelContravar()

void Nektar::GlobalMapping::MappingXofZ::v_ApplyChristoffelContravar ( const Array< OneD, Array< OneD, NekDouble > > &  inarray,
Array< OneD, Array< OneD, NekDouble > > &  outarray 
)
protectedvirtual

Implements Nektar::GlobalMapping::Mapping.

Definition at line 278 of file MappingXofZ.cpp.

281 {
282  int physTot = m_fields[0]->GetTotPoints();
283  int nvel = m_nConvectiveFields;
284 
285  for (int i = 0; i< nvel; i++)
286  {
287  for (int j = 0; j< nvel; j++)
288  {
289  outarray[i*nvel+j] = Array<OneD, NekDouble>(physTot,0.0);
290  }
291  }
292 
293  // Calculate non-zero terms
294 
295  // outarray(0,2) = U3 * fzz
296  Vmath::Vmul(physTot,m_GeometricInfo[1],1,inarray[2],1,
297  outarray[0*nvel+2],1); // U1 * fzz
298 
299 }
int m_nConvectiveFields
Number of velocity components.
Definition: Mapping.h:416
Array< OneD, Array< OneD, NekDouble > > m_GeometricInfo
Array with metric terms of the mapping.
Definition: Mapping.h:414
Array< OneD, MultiRegions::ExpListSharedPtr > m_fields
Definition: Mapping.h:408
void Vmul(int n, const T *x, const int incx, const T *y, const int incy, T *z, const int incz)
Multiply vector z = x*y.
Definition: Vmath.cpp:192

References Nektar::GlobalMapping::Mapping::m_fields, Nektar::GlobalMapping::Mapping::m_GeometricInfo, Nektar::GlobalMapping::Mapping::m_nConvectiveFields, and Vmath::Vmul().

◆ v_ApplyChristoffelCovar()

void Nektar::GlobalMapping::MappingXofZ::v_ApplyChristoffelCovar ( const Array< OneD, Array< OneD, NekDouble > > &  inarray,
Array< OneD, Array< OneD, NekDouble > > &  outarray 
)
protectedvirtual

Implements Nektar::GlobalMapping::Mapping.

Definition at line 301 of file MappingXofZ.cpp.

304 {
305  int physTot = m_fields[0]->GetTotPoints();
306  int nvel = m_nConvectiveFields;
307 
308  for (int i = 0; i< nvel; i++)
309  {
310  for (int j = 0; j< nvel; j++)
311  {
312  outarray[i*nvel+j] = Array<OneD, NekDouble>(physTot,0.0);
313  }
314  }
315 
316  // Calculate non-zero terms
317 
318  // outarray(2,2) = U1 * fzz
319  Vmath::Vmul(physTot,m_GeometricInfo[1],1,inarray[0],1,
320  outarray[2*nvel+2],1); // U1 * fzz
321 }

References Nektar::GlobalMapping::Mapping::m_fields, Nektar::GlobalMapping::Mapping::m_GeometricInfo, Nektar::GlobalMapping::Mapping::m_nConvectiveFields, and Vmath::Vmul().

◆ v_ContravarFromCartesian()

void Nektar::GlobalMapping::MappingXofZ::v_ContravarFromCartesian ( const Array< OneD, Array< OneD, NekDouble > > &  inarray,
Array< OneD, Array< OneD, NekDouble > > &  outarray 
)
protectedvirtual

Implements Nektar::GlobalMapping::Mapping.

Definition at line 120 of file MappingXofZ.cpp.

123 {
124  int physTot = m_fields[0]->GetTotPoints();
125  Array<OneD, NekDouble> wk(physTot, 0.0);
126 
127  // U1 = u1 - fz * u3
128  Vmath::Vmul(physTot, m_GeometricInfo[0], 1, inarray[2], 1, wk, 1);
129  Vmath::Vsub(physTot, inarray[0], 1, wk, 1, outarray[0], 1);
130 
131  // U2 = u2
132  Vmath::Vcopy(physTot, inarray[1], 1, outarray[1], 1);
133 
134  // U3 = u3
135  Vmath::Vcopy(physTot, inarray[2], 1, outarray[2], 1);
136 }
void Vcopy(int n, const T *x, const int incx, T *y, const int incy)
Definition: Vmath.cpp:1199
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:372

References Nektar::GlobalMapping::Mapping::m_fields, Nektar::GlobalMapping::Mapping::m_GeometricInfo, Vmath::Vcopy(), Vmath::Vmul(), and Vmath::Vsub().

◆ v_ContravarToCartesian()

void Nektar::GlobalMapping::MappingXofZ::v_ContravarToCartesian ( const Array< OneD, Array< OneD, NekDouble > > &  inarray,
Array< OneD, Array< OneD, NekDouble > > &  outarray 
)
protectedvirtual

Implements Nektar::GlobalMapping::Mapping.

Definition at line 84 of file MappingXofZ.cpp.

87 {
88  int physTot = m_fields[0]->GetTotPoints();
89  Array<OneD, NekDouble> wk(physTot, 0.0);
90 
91  // U1 = u1 + fz*u3
92  Vmath::Vmul(physTot, inarray[2], 1, m_GeometricInfo[0], 1, wk, 1);
93  Vmath::Vadd(physTot, wk, 1, inarray[0], 1, outarray[0],1);
94 
95  // U2 = u2
96  Vmath::Vcopy(physTot, inarray[1], 1, outarray[1], 1);
97 
98  // U3 = u3
99  Vmath::Vcopy(physTot, inarray[2], 1, outarray[2], 1);
100 }
void Vadd(int n, const T *x, const int incx, const T *y, const int incy, T *z, const int incz)
Add vector z = x+y.
Definition: Vmath.cpp:322

References Nektar::GlobalMapping::Mapping::m_fields, Nektar::GlobalMapping::Mapping::m_GeometricInfo, Vmath::Vadd(), Vmath::Vcopy(), and Vmath::Vmul().

◆ v_CovarFromCartesian()

void Nektar::GlobalMapping::MappingXofZ::v_CovarFromCartesian ( const Array< OneD, Array< OneD, NekDouble > > &  inarray,
Array< OneD, Array< OneD, NekDouble > > &  outarray 
)
protectedvirtual

Implements Nektar::GlobalMapping::Mapping.

Definition at line 138 of file MappingXofZ.cpp.

141 {
142  int physTot = m_fields[0]->GetTotPoints();
143 
144  // U1 = u1
145  Vmath::Vcopy(physTot, inarray[0], 1, outarray[0], 1);
146 
147  // U2 = u2
148  Vmath::Vcopy(physTot, inarray[1], 1, outarray[1], 1);
149 
150  // U3 = u3 + fz*u1
151  Vmath::Vmul(physTot, m_GeometricInfo[0], 1,
152  inarray[0], 1, outarray[2], 1);
153  Vmath::Vadd(physTot, inarray[2], 1, outarray[2], 1, outarray[2], 1);
154 }

References Nektar::GlobalMapping::Mapping::m_fields, Nektar::GlobalMapping::Mapping::m_GeometricInfo, Vmath::Vadd(), Vmath::Vcopy(), and Vmath::Vmul().

◆ v_CovarToCartesian()

void Nektar::GlobalMapping::MappingXofZ::v_CovarToCartesian ( const Array< OneD, Array< OneD, NekDouble > > &  inarray,
Array< OneD, Array< OneD, NekDouble > > &  outarray 
)
protectedvirtual

Implements Nektar::GlobalMapping::Mapping.

Definition at line 102 of file MappingXofZ.cpp.

105 {
106  int physTot = m_fields[0]->GetTotPoints();
107  Array<OneD, NekDouble> wk(physTot, 0.0);
108 
109  // U1 = u1
110  Vmath::Vcopy(physTot, inarray[0], 1, outarray[0], 1);
111 
112  // U2 = u2
113  Vmath::Vcopy(physTot, inarray[1], 1, outarray[1], 1);
114 
115  // U3 = u3 - fz*u1
116  Vmath::Vmul(physTot, m_GeometricInfo[0], 1, inarray[0], 1, wk, 1);
117  Vmath::Vsub(physTot, inarray[2], 1, wk, 1, outarray[2], 1);
118 }

References Nektar::GlobalMapping::Mapping::m_fields, Nektar::GlobalMapping::Mapping::m_GeometricInfo, Vmath::Vcopy(), Vmath::Vmul(), and Vmath::Vsub().

◆ v_DotGradJacobian()

void Nektar::GlobalMapping::MappingXofZ::v_DotGradJacobian ( const Array< OneD, Array< OneD, NekDouble > > &  inarray,
Array< OneD, NekDouble > &  outarray 
)
protectedvirtual

Reimplemented from Nektar::GlobalMapping::Mapping.

Definition at line 163 of file MappingXofZ.cpp.

166 {
167  boost::ignore_unused(inarray);
168 
169  int physTot = m_fields[0]->GetTotPoints();
170 
171  Vmath::Zero(physTot, outarray, 1);
172 }
void Zero(int n, T *x, const int incx)
Zero vector.
Definition: Vmath.cpp:436

References Nektar::GlobalMapping::Mapping::m_fields, and Vmath::Zero().

◆ v_GetInvMetricTensor()

void Nektar::GlobalMapping::MappingXofZ::v_GetInvMetricTensor ( Array< OneD, Array< OneD, NekDouble > > &  outarray)
protectedvirtual

Implements Nektar::GlobalMapping::Mapping.

Definition at line 200 of file MappingXofZ.cpp.

202 {
203  int physTot = m_fields[0]->GetTotPoints();
204  int nvel = m_nConvectiveFields;
205  Array<OneD, NekDouble> wk(physTot, 0.0);
206 
207  for (int i=0; i<nvel*nvel; i++)
208  {
209  outarray[i] = Array<OneD, NekDouble> (physTot, 0.0);
210  }
211  // Fill diagonal with 1.0
212  for (int i=0; i<nvel; i++)
213  {
214  Vmath::Sadd(physTot, 1.0, outarray[i+nvel*i], 1,
215  outarray[i+nvel*i], 1);
216  }
217 
218  // G^{13} and G^{31} = -fz
219  Vmath::Vcopy(physTot, m_GeometricInfo[0],1,wk,1); // fz
220  Vmath::Neg(physTot, wk, 1);
221  Vmath::Vcopy(physTot, wk, 1, outarray[0*nvel+2], 1);
222  Vmath::Vcopy(physTot, wk, 1, outarray[2*nvel+0], 1);
223 
224  // G^{11} = (1+fz^2)
225  Vmath::Vadd(physTot, m_GeometricInfo[2], 1, outarray[0*nvel+0], 1,
226  outarray[0*nvel+0], 1);
227 }
void Neg(int n, T *x, const int incx)
Negate x = -x.
Definition: Vmath.cpp:461
void Sadd(int n, const T alpha, const T *x, const int incx, T *y, const int incy)
Add vector y = alpha - x.
Definition: Vmath.cpp:341

References Nektar::GlobalMapping::Mapping::m_fields, Nektar::GlobalMapping::Mapping::m_GeometricInfo, Nektar::GlobalMapping::Mapping::m_nConvectiveFields, Vmath::Neg(), Vmath::Sadd(), Vmath::Vadd(), and Vmath::Vcopy().

◆ v_GetJacobian()

void Nektar::GlobalMapping::MappingXofZ::v_GetJacobian ( Array< OneD, NekDouble > &  outarray)
protectedvirtual

Implements Nektar::GlobalMapping::Mapping.

Definition at line 156 of file MappingXofZ.cpp.

158 {
159  int physTot = m_fields[0]->GetTotPoints();
160  Vmath::Fill(physTot, 1.0, outarray, 1);
161 }
void Fill(int n, const T alpha, T *x, const int incx)
Fill a vector with a constant value.
Definition: Vmath.cpp:45

References Vmath::Fill(), and Nektar::GlobalMapping::Mapping::m_fields.

◆ v_GetMetricTensor()

void Nektar::GlobalMapping::MappingXofZ::v_GetMetricTensor ( Array< OneD, Array< OneD, NekDouble > > &  outarray)
protectedvirtual

Implements Nektar::GlobalMapping::Mapping.

Definition at line 174 of file MappingXofZ.cpp.

176 {
177  int physTot = m_fields[0]->GetTotPoints();
178  int nvel = m_nConvectiveFields;
179 
180  for (int i=0; i<nvel*nvel; i++)
181  {
182  outarray[i] = Array<OneD, NekDouble> (physTot, 0.0);
183  }
184  // Fill diagonal with 1.0
185  for (int i=0; i<nvel; i++)
186  {
187  Vmath::Sadd(physTot, 1.0, outarray[i+nvel*i], 1,
188  outarray[i+nvel*i], 1);
189  }
190 
191  // G_{13} and G_{31} = fz
192  Vmath::Vcopy(physTot, m_GeometricInfo[0], 1, outarray[0*nvel+2], 1);
193  Vmath::Vcopy(physTot, m_GeometricInfo[0], 1, outarray[2*nvel+0], 1);
194 
195  // G^{33} = (1+fz^2)
196  Vmath::Vadd(physTot, m_GeometricInfo[2], 1, outarray[2*nvel+2], 1,
197  outarray[2*nvel+2], 1);
198 }

References Nektar::GlobalMapping::Mapping::m_fields, Nektar::GlobalMapping::Mapping::m_GeometricInfo, Nektar::GlobalMapping::Mapping::m_nConvectiveFields, Vmath::Sadd(), Vmath::Vadd(), and Vmath::Vcopy().

◆ v_InitObject()

void Nektar::GlobalMapping::MappingXofZ::v_InitObject ( const Array< OneD, MultiRegions::ExpListSharedPtr > &  pFields,
const TiXmlElement *  pMapping 
)
protectedvirtual

This function initialises the Mapping object. It computes the coordinates and velocity coordinates, initialises the workspace variables, and calls UpdateGeomInfo, which will perform the calculations specific for each type of Mapping.

Parameters
pFieldsExpList array used in the mapping
pMappingxml element describing the mapping

Reimplemented from Nektar::GlobalMapping::Mapping.

Definition at line 71 of file MappingXofZ.cpp.

74 {
75  Mapping::v_InitObject(pFields, pMapping);
76 
77  m_constantJacobian = true;
78 
80  "Mapping X = x + f(z) needs 3 velocity components.");
81 
82 }
#define ASSERTL0(condition, msg)
Definition: ErrorUtil.hpp:216
virtual GLOBAL_MAPPING_EXPORT void v_InitObject(const Array< OneD, MultiRegions::ExpListSharedPtr > &pFields, const TiXmlElement *pMapping)
Definition: Mapping.cpp:100
bool m_constantJacobian
Flag defining if the Jacobian is constant.
Definition: Mapping.h:426

References ASSERTL0, Nektar::GlobalMapping::Mapping::m_constantJacobian, Nektar::GlobalMapping::Mapping::m_nConvectiveFields, and Nektar::GlobalMapping::Mapping::v_InitObject().

◆ v_LowerIndex()

void Nektar::GlobalMapping::MappingXofZ::v_LowerIndex ( const Array< OneD, Array< OneD, NekDouble > > &  inarray,
Array< OneD, Array< OneD, NekDouble > > &  outarray 
)
protectedvirtual

Reimplemented from Nektar::GlobalMapping::Mapping.

Definition at line 229 of file MappingXofZ.cpp.

232 {
233  int physTot = m_fields[0]->GetTotPoints();
234  Array<OneD, NekDouble> wk(physTot, 0.0);
235 
236  // out[0] = in[0] + in[2] * fz
237  Vmath::Vmul(physTot, m_GeometricInfo[0], 1, inarray[2], 1,
238  outarray[0], 1); //in[2]*fz
239  Vmath::Vmul(physTot, m_GeometricInfo[0], 1, inarray[0], 1,
240  outarray[2], 1); //in[0]*fz
241 
242  Vmath::Vadd(physTot, outarray[0], 1, inarray[0], 1,
243  outarray[0], 1);
244 
245  // out[1] = in[1]
246  Vmath::Vcopy(physTot, inarray[1], 1, outarray[1], 1);
247 
248  // out[2] = fz*in[0] + (1+fz^2)*in[2]
249  Vmath::Sadd(physTot, 1.0, m_GeometricInfo[2], 1, wk, 1); // 1+fz^2
250  Vmath::Vmul(physTot, wk, 1, inarray[2],1, wk, 1); // (1+fz^2)*in[2]
251  Vmath::Vadd(physTot, wk, 1, outarray[2],1, outarray[2], 1);
252 }

References Nektar::GlobalMapping::Mapping::m_fields, Nektar::GlobalMapping::Mapping::m_GeometricInfo, Vmath::Sadd(), Vmath::Vadd(), Vmath::Vcopy(), and Vmath::Vmul().

◆ v_RaiseIndex()

void Nektar::GlobalMapping::MappingXofZ::v_RaiseIndex ( const Array< OneD, Array< OneD, NekDouble > > &  inarray,
Array< OneD, Array< OneD, NekDouble > > &  outarray 
)
protectedvirtual

Reimplemented from Nektar::GlobalMapping::Mapping.

Definition at line 254 of file MappingXofZ.cpp.

257 {
258  int physTot = m_fields[0]->GetTotPoints();
259  Array<OneD, NekDouble> wk(physTot, 0.0);
260 
261  // out[2] = in[2] - in[0] * fz
262  Vmath::Vmul(physTot, m_GeometricInfo[0], 1, inarray[2], 1,
263  outarray[0], 1); // in[2]*fz
264  Vmath::Vmul(physTot, m_GeometricInfo[0], 1, inarray[0], 1,
265  outarray[2], 1); //in[0]*fz
266  Vmath::Vsub(physTot, inarray[2], 1, outarray[2], 1,
267  outarray[2], 1);
268 
269  // out[1] = in[1]]
270  Vmath::Vcopy(physTot, inarray[1], 1, outarray[1], 1);
271 
272  // out[0] = in[0]*(1+fz^2)- in[2] * fz
273  Vmath::Sadd(physTot, 1.0, m_GeometricInfo[2], 1, wk, 1); // 1+fz^2
274  Vmath::Vmul(physTot, wk, 1, inarray[0],1, wk, 1); // in[0]*(1+fz^2)
275  Vmath::Vsub(physTot, wk, 1, outarray[0], 1, outarray[0], 1);
276 }

References Nektar::GlobalMapping::Mapping::m_fields, Nektar::GlobalMapping::Mapping::m_GeometricInfo, Vmath::Sadd(), Vmath::Vcopy(), Vmath::Vmul(), and Vmath::Vsub().

◆ v_UpdateGeomInfo()

void Nektar::GlobalMapping::MappingXofZ::v_UpdateGeomInfo ( )
protectedvirtual

Implements Nektar::GlobalMapping::Mapping.

Definition at line 323 of file MappingXofZ.cpp.

324 {
325  int phystot = m_fields[0]->GetTotPoints();
326  // Allocation of geometry memory
327  m_GeometricInfo = Array<OneD, Array<OneD, NekDouble> >(4);
328  for (int i = 0; i < m_GeometricInfo.size(); i++)
329  {
330  m_GeometricInfo[i] = Array<OneD, NekDouble>(phystot, 0.0);
331  }
332 
333  bool waveSpace = m_fields[0]->GetWaveSpace();
334  m_fields[0]->SetWaveSpace(false);
335  // Calculate derivatives of transformation
336  m_fields[0]->PhysDeriv(MultiRegions::DirCartesianMap[2],
337  m_coords[0],m_GeometricInfo[0]);
338  m_fields[0]->PhysDeriv(MultiRegions::DirCartesianMap[2],
340  // m_GeometricInfo[2] = fz^2
341  Vmath::Vmul(phystot,m_GeometricInfo[0],1,
342  m_GeometricInfo[0],1,m_GeometricInfo[2],1);
343 
344  m_fields[0]->SetWaveSpace(waveSpace);
345 }
Array< OneD, Array< OneD, NekDouble > > m_coords
Array with the Cartesian coordinates.
Definition: Mapping.h:410
MultiRegions::Direction const DirCartesianMap[]
Definition: ExpList.h:90

References Nektar::MultiRegions::DirCartesianMap, Nektar::GlobalMapping::Mapping::m_coords, Nektar::GlobalMapping::Mapping::m_fields, Nektar::GlobalMapping::Mapping::m_GeometricInfo, and Vmath::Vmul().

Friends And Related Function Documentation

◆ MemoryManager< MappingXofZ >

friend class MemoryManager< MappingXofZ >
friend

Definition at line 1 of file MappingXofZ.h.

Member Data Documentation

◆ className

std::string Nektar::GlobalMapping::MappingXofZ::className
static
Initial value:
=
MappingXofZ::create, "X = x + f(z)")
static GLOBAL_MAPPING_EXPORT MappingSharedPtr create(const LibUtilities::SessionReaderSharedPtr &pSession, const Array< OneD, MultiRegions::ExpListSharedPtr > &pFields, const TiXmlElement *pMapping)
Creates an instance of this class.
Definition: MappingXofZ.h:59
tKey RegisterCreatorFunction(tKey idKey, CreatorFunction classCreator, std::string pDesc="")
Register a class with the factory.
Definition: NekFactory.hpp:200
MappingFactory & GetMappingFactory()
Declaration of the mapping factory singleton.
Definition: Mapping.cpp:52

Name of the class.

Definition at line 72 of file MappingXofZ.h.