36 #include <boost/core/ignore_unused.hpp>
44 namespace MultiRegions
57 const NekDouble lhom_z,
const bool useFFT,
const bool dealiasing,
60 useFFT, dealiasing, ImpType),
61 m_bndCondExpansions(), m_bndCondBndWeight(), m_bndConditions()
68 m_bndCondExpansions(In.m_bndCondExpansions),
69 m_bndCondBndWeight(In.m_bndCondBndWeight),
70 m_bndConditions(In.m_bndConditions)
72 if (DeclareLinesSetCoeffPhys)
75 std::dynamic_pointer_cast<DisContField>(In.
m_lines[0]);
77 for (
int n = 0; n <
m_lines.size(); ++n)
91 const NekDouble lhom_z,
const bool useFFT,
const bool dealiasing,
95 useFFT, dealiasing, ImpType),
96 m_bndCondExpansions(), m_bndCondBndWeight(), m_bndConditions()
104 pSession, graph1D, variable, ImpType);
107 nel =
m_lines[0]->GetExpSize();
109 for (i = 0; i < nel; ++i)
117 for (n = 1; n < nylines * nzlines; ++n)
120 pSession, graph1D, variable, ImpType);
121 for (i = 0; i < nel; ++i)
123 (*m_exp).push_back((*
m_exp)[i]);
144 const std::string variable)
149 size_t nlines =
m_lines.size();
154 size_t nbnd = bregions.size();
163 for (
int i = 0; i < nbnd; ++i)
165 for (
int n = 0; n < nlines; ++n)
167 LinesBndCondExp[n] =
m_lines[n]->UpdateBndCondExpansion(i);
173 false, LinesBndCondExp);
210 for (n = 0; n < nhom_modes_z; ++n)
212 for (m = 0; m < nhom_modes_y; ++m)
214 beta_z = 2 * M_PI * (n / 2) /
m_lhom_z;
215 beta_y = 2 * M_PI * (m / 2) /
m_lhom_y;
216 new_factors = factors;
218 beta_y * beta_y + beta_z * beta_z;
220 wfce = (PhysSpaceForcing) ? fce + cnt : fce + cnt1;
221 m_lines[n]->HelmSolve(wfce, e_out = outarray + cnt1, new_factors,
222 varcoeff, varfactors, dirForcing,
225 cnt +=
m_lines[n]->GetTotPoints();
226 cnt1 +=
m_lines[n]->GetNcoeffs();
233 int i, std::shared_ptr<ExpList> &result,
const bool DeclareCoeffPhysArrays)
237 std::vector<unsigned int> eIDs;
242 for (cnt = n = 0; n < i; ++n)
250 eIDs.push_back(ElmtID[cnt + n]);
258 if (DeclareCoeffPhysArrays)
260 int nq, offsetOld, offsetNew;
262 for (n = 0; n < result->GetExpSize(); ++n)
264 nq =
GetExp(ElmtID[cnt + n])->GetTotPoints();
266 offsetNew = result->GetPhys_Offset(n);
268 tmp2 = result->UpdatePhys() + offsetNew, 1);
270 nq =
GetExp(ElmtID[cnt + n])->GetNcoeffs();
272 offsetNew = result->GetCoeff_Offset(n);
274 tmp2 = result->UpdateCoeffs() + offsetNew, 1);
290 m_lines[0]->GetBoundaryToElmtMap(ElmtID_tmp, EdgeID_tmp);
291 int nel_per_lines =
m_lines[0]->GetExpSize();
294 int MapSize = ElmtID_tmp.size();
305 m_lines[0]->GetBndCondExpansions()[n]->GetExpSize();
306 for (i = 0; i < lineExpSize; ++i, ++cntLine)
308 for (j = 0; j < nlines; j++)
311 ElmtID_tmp[cntLine] + j * nel_per_lines;
328 return std::map<int, RobinBCInfoSharedPtr>();
335 boost::ignore_unused(x2_in, x3_in);
340 for (n = 0; n <
m_nz; ++n)
342 for (m = 0; m <
m_ny; ++m)
345 time, varName, 0.5 *
m_lhom_y * (1.0 + y[m]),
Describes the specification for a Basis.
static std::shared_ptr< DataType > AllocateSharedPtr(const Args &...args)
Allocate a shared pointer from the memory pool.
virtual void v_GetBndElmtExpansion(int i, std::shared_ptr< ExpList > &result, const bool DeclareCoeffPhysArrays) override
void SetupBoundaryConditions(const LibUtilities::BasisKey &HomoBasis_y, const LibUtilities::BasisKey &HomoBasis_z, const NekDouble lhom_y, const NekDouble lhom_z, SpatialDomains::BoundaryConditions &bcs, const std::string variable)
Array< OneD, int > m_BCtoEdgMap
virtual void v_GetBoundaryToElmtMap(Array< OneD, int > &ElmtID, Array< OneD, int > &EdgeID) override
virtual const Array< OneD, const std::shared_ptr< ExpList > > & v_GetBndCondExpansions(void) override
Array< OneD, int > m_BCtoElmMap
Storage space for the boundary to element and boundary to trace map. This member variable is really a...
virtual ~DisContField3DHomogeneous2D()
Destructor.
virtual void v_SetBndCondBwdWeight(const int index, const NekDouble value) override
virtual Array< OneD, SpatialDomains::BoundaryConditionShPtr > & v_UpdateBndConditions() override
virtual void v_EvaluateBoundaryConditions(const NekDouble time=0.0, const std::string varName="", const NekDouble x2_in=NekConstants::kNekUnsetDouble, const NekDouble x3_in=NekConstants::kNekUnsetDouble) override
virtual std::map< int, RobinBCInfoSharedPtr > v_GetRobinBCInfo() override
virtual GlobalLinSysKey v_HelmSolve(const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, const StdRegions::ConstFactorMap &factors, const StdRegions::VarCoeffMap &varcoeff, const MultiRegions::VarFactorsMap &varfactors, const Array< OneD, const NekDouble > &dirForcing, const bool PhysSpaceForcing) override
virtual std::shared_ptr< ExpList > & v_UpdateBndCondExpansion(int i) override
DisContField3DHomogeneous2D()
virtual const Array< OneD, const SpatialDomains::BoundaryConditionShPtr > & v_GetBndConditions() override
Array< OneD, NekDouble > m_bndCondBndWeight
Array< OneD, MultiRegions::ExpListSharedPtr > m_bndCondExpansions
Array< OneD, SpatialDomains::BoundaryConditionShPtr > m_bndConditions
Abstraction of a one-dimensional multi-elemental expansion which is merely a collection of local expa...
void SetCoeffPhys(void)
Definition of the total number of degrees of freedom and quadrature points. Sets up the storage for m...
int m_nz
Number of modes = number of poitns in z direction.
LibUtilities::BasisSharedPtr m_homogeneousBasis_y
Definition of the total number of degrees of freedom and quadrature points. Sets up the storage for m...
NekDouble m_lhom_z
Width of homogeneous direction z.
int m_ny
Number of modes = number of poitns in y direction.
bool m_useFFT
FFT variables.
Array< OneD, ExpListSharedPtr > m_lines
Vector of ExpList, will be filled with ExpList1D.
LibUtilities::BasisSharedPtr m_homogeneousBasis_z
Base expansion in z direction.
NekDouble m_lhom_y
Width of homogeneous direction y.
Array< OneD, NekDouble > & UpdateCoeffs()
This function returns (a reference to) the array (implemented as m_coeffs) containing all local expa...
int GetNcoeffs(void) const
Returns the total number of local degrees of freedom .
void GetBoundaryToElmtMap(Array< OneD, int > &ElmtID, Array< OneD, int > &EdgeID)
const Array< OneD, const NekDouble > & GetCoeffs() const
This function returns (a reference to) the array (implemented as m_coeffs) containing all local expa...
const Array< OneD, const NekDouble > & GetPhys() const
This function returns (a reference to) the array (implemented as m_phys) containing the function ev...
int GetCoeff_Offset(int n) const
Get the start offset position for a local contiguous list of coeffs correspoinding to element n.
int GetExpSize(void)
This function returns the number of elements in the expansion.
std::shared_ptr< LocalRegions::ExpansionVector > m_exp
The list of local expansions.
int m_ncoeffs
The total number of local degrees of freedom. m_ncoeffs .
void EvaluateBoundaryConditions(const NekDouble time=0.0, const std::string varName="", const NekDouble=NekConstants::kNekUnsetDouble, const NekDouble=NekConstants::kNekUnsetDouble)
const std::shared_ptr< LocalRegions::ExpansionVector > GetExp() const
This function returns the vector of elements in the expansion.
LibUtilities::SessionReaderSharedPtr m_session
Session.
bool GetWaveSpace(void) const
This function returns the third direction expansion condition, which can be in wave space (coefficien...
int GetPhys_Offset(int n) const
Get the start offset position for a local contiguous list of quadrature points in a full array corres...
void HomogeneousFwdTrans(const int npts, const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, bool Shuff=true, bool UnShuff=true)
Describe a linear system.
const BoundaryRegionCollection & GetBoundaryRegions(void) const
std::shared_ptr< SessionReader > SessionReaderSharedPtr
std::shared_ptr< DisContField > DisContFieldSharedPtr
static GlobalLinSysKey NullGlobalLinSysKey(StdRegions::eNoMatrixType)
std::map< StdRegions::ConstFactorType, Array< OneD, NekDouble > > VarFactorsMap
std::map< int, BoundaryRegionShPtr > BoundaryRegionCollection
std::shared_ptr< MeshGraph > MeshGraphSharedPtr
std::map< ConstFactorType, NekDouble > ConstFactorMap
std::map< StdRegions::VarCoeffType, VarCoeffEntry > VarCoeffMap
The above copyright notice and this permission notice shall be included.
void Vcopy(int n, const T *x, const int incx, T *y, const int incy)