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Public Member Functions | Private Attributes | List of all members
OpSpatialRotation_domega_domega Struct Reference

#include "users_modules/eshelbian_plasticity/src/EshelbianOperators.hpp"

Inheritance diagram for OpSpatialRotation_domega_domega:
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Collaboration diagram for OpSpatialRotation_domega_domega:
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Public Member Functions

 OpSpatialRotation_domega_domega (std::string row_field, std::string col_field, boost::shared_ptr< DataAtIntegrationPts > data_ptr, double alpha_r, double alpha_r0, double alpha_omega, double alpha_omega0, double alpha_viscous_r, double alpha_viscous_r0, double alpha_viscous_omega, double alpha_viscous_omega0)
 
MoFEMErrorCode integrate (EntData &row_data, EntData &col_data)
 
- Public Member Functions inherited from OpAssembleVolume
MoFEMErrorCode assemble (int row_side, int col_side, EntityType row_type, EntityType col_type, EntData &row_data, EntData &col_data)
 
- Public Member Functions inherited from OpAssembleBasic< VolUserDataOperator >
 OpAssembleBasic (const std::string &field_name, boost::shared_ptr< DataAtIntegrationPts > data_ptr, const char type)
 
 OpAssembleBasic (std::string row_field, std::string col_field, boost::shared_ptr< DataAtIntegrationPts > data_ptr, const char type, const bool assemble_symmetry, ScaleOff scale_off=[]() { return 1;})
 
 OpAssembleBasic (const FieldSpace space)
 
virtual MoFEMErrorCode integrate (EntData &)
 
virtual MoFEMErrorCode integrate (int, EntityType, EntData &data)
 
virtual MoFEMErrorCode assemble (EntData &data)
 
virtual MoFEMErrorCode assemble (int, EntityType, EntData &data)
 
MoFEMErrorCode doWork (int side, EntityType type, EntData &data)
 
MoFEMErrorCode doWork (int row_side, int col_side, EntityType row_type, EntityType col_type, EntData &row_data, EntData &col_data)
 
- Public Member Functions inherited from MoFEM::VolumeElementForcesAndSourcesCore::UserDataOperator
int getNumNodes ()
 get element number of nodes
 
const EntityHandle * getConn ()
 get element connectivity
 
double getVolume () const
 element volume (linear geometry)
 
doublegetVolume ()
 element volume (linear geometry)
 
FTensor::Tensor2< double *, 3, 3 > & getJac ()
 get element Jacobian
 
FTensor::Tensor2< double *, 3, 3 > & getInvJac ()
 get element inverse Jacobian
 
VectorDoublegetCoords ()
 nodal coordinates
 
VolumeElementForcesAndSourcesCoregetVolumeFE () const
 return pointer to Generic Volume Finite Element object
 
- Public Member Functions inherited from MoFEM::ForcesAndSourcesCore::UserDataOperator
 UserDataOperator (const FieldSpace space, const char type=OPSPACE, const bool symm=true)
 Constructor for operators working on finite element spaces.
 
 UserDataOperator (const std::string field_name, const char type, const bool symm=true)
 Constructor for operators working on a single field.
 
 UserDataOperator (const std::string row_field_name, const std::string col_field_name, const char type, const bool symm=true)
 Constructor for operators working on two fields (bilinear forms)
 
boost::shared_ptr< const NumeredEntFiniteElementgetNumeredEntFiniteElementPtr () const
 Return raw pointer to NumeredEntFiniteElement.
 
EntityHandle getFEEntityHandle () const
 Return finite element entity handle.
 
int getFEDim () const
 Get dimension of finite element.
 
EntityType getFEType () const
 Get dimension of finite element.
 
boost::weak_ptr< SideNumbergetSideNumberPtr (const int side_number, const EntityType type)
 Get the side number pointer.
 
EntityHandle getSideEntity (const int side_number, const EntityType type)
 Get the side entity.
 
int getNumberOfNodesOnElement () const
 Get the number of nodes on finite element.
 
MoFEMErrorCode getProblemRowIndices (const std::string filed_name, const EntityType type, const int side, VectorInt &indices) const
 Get row indices.
 
MoFEMErrorCode getProblemColIndices (const std::string filed_name, const EntityType type, const int side, VectorInt &indices) const
 Get col indices.
 
const FEMethodgetFEMethod () const
 Return raw pointer to Finite Element Method object.
 
int getOpType () const
 Get operator types.
 
void setOpType (const OpType type)
 Set operator type.
 
void addOpType (const OpType type)
 Add operator type.
 
int getNinTheLoop () const
 get number of finite element in the loop
 
int getLoopSize () const
 get size of elements in the loop
 
std::string getFEName () const
 Get name of the element.
 
ForcesAndSourcesCoregetPtrFE () const
 
ForcesAndSourcesCoregetSidePtrFE () const
 
ForcesAndSourcesCoregetRefinePtrFE () const
 
const PetscData::SwitchesgetDataCtx () const
 
KspMethod::KSPContext getKSPCtx () const
 
SnesMethod::SNESContext getSNESCtx () const
 
TSMethod::TSContext getTSCtx () const
 
Vec getKSPf () const
 
Mat getKSPA () const
 
Mat getKSPB () const
 
Vec getSNESf () const
 
Vec getSNESx () const
 
Mat getSNESA () const
 
Mat getSNESB () const
 
Vec getTSu () const
 
Vec getTSu_t () const
 
Vec getTSu_tt () const
 
Vec getTSf () const
 
Mat getTSA () const
 
Mat getTSB () const
 
int getTSstep () const
 
double getTStime () const
 
double getTStimeStep () const
 
double getTSa () const
 
double getTSaa () const
 
MatrixDoublegetGaussPts ()
 matrix of integration (Gauss) points for Volume Element
 
auto getFTensor0IntegrationWeight ()
 Get integration weights.
 
MatrixDoublegetCoordsAtGaussPts ()
 Gauss points and weight, matrix (nb. of points x 3)
 
auto getFTensor1CoordsAtGaussPts ()
 Get coordinates at integration points assuming linear geometry.
 
double getMeasure () const
 get measure of element
 
doublegetMeasure ()
 get measure of element
 
MoFEM::InterfacegetMField ()
 
moab::Interface & getMoab ()
 
virtual boost::weak_ptr< ForcesAndSourcesCoregetSubPipelinePtr () const
 
MoFEMErrorCode loopSide (const string &fe_name, ForcesAndSourcesCore *side_fe, const size_t dim, const EntityHandle ent_for_side=0, boost::shared_ptr< Range > fe_range=nullptr, const int verb=QUIET, const LogManager::SeverityLevel sev=Sev::noisy, AdjCache *adj_cache=nullptr)
 User calls this function to loop over elements on the side of face. This function calls finite element with its operator to do calculations.
 
MoFEMErrorCode loopThis (const string &fe_name, ForcesAndSourcesCore *this_fe, const int verb=QUIET, const LogManager::SeverityLevel sev=Sev::noisy)
 User calls this function to loop over the same element using a different set of integration points. This function calls finite element with its operator to do calculations.
 
MoFEMErrorCode loopParent (const string &fe_name, ForcesAndSourcesCore *parent_fe, const int verb=QUIET, const LogManager::SeverityLevel sev=Sev::noisy)
 User calls this function to loop over parent elements. This function calls finite element with its operator to do calculations.
 
MoFEMErrorCode loopChildren (const string &fe_name, ForcesAndSourcesCore *child_fe, const int verb=QUIET, const LogManager::SeverityLevel sev=Sev::noisy)
 User calls this function to loop over parent elements. This function calls finite element with its operator to do calculations.
 
MoFEMErrorCode loopRange (const string &fe_name, ForcesAndSourcesCore *range_fe, boost::shared_ptr< Range > fe_range, const int verb=QUIET, const LogManager::SeverityLevel sev=Sev::noisy)
 Iterate over range of elements.
 
- Public Member Functions inherited from MoFEM::DataOperator
 DataOperator (const bool symm=true)
 
virtual ~DataOperator ()=default
 
virtual MoFEMErrorCode opLhs (EntitiesFieldData &row_data, EntitiesFieldData &col_data)
 
virtual MoFEMErrorCode opRhs (EntitiesFieldData &data, const bool error_if_no_base=false)
 
bool getSymm () const
 Get if operator uses symmetry of DOFs or not.
 
void setSymm ()
 set if operator is executed taking in account symmetry
 
void unSetSymm ()
 unset if operator is executed for non symmetric problem
 

Private Attributes

double alphaR
 
double alphaR0
 
double alphaOmega
 
double alphaOmega0
 
double alphaViscousR
 
double alphaViscousR0
 
double alphaViscousOmega
 
double alphaViscousOmega0
 

Additional Inherited Members

- Public Types inherited from OpAssembleVolume
using OP = OpAssembleBasic< VolUserDataOperator >
 
using ScaleOff = typename OP::ScaleOff
 
- Public Types inherited from OpAssembleBasic< VolUserDataOperator >
using ScaleOff = boost::function< double()>
 
- Public Types inherited from MoFEM::ForcesAndSourcesCore::UserDataOperator
enum  OpType {
  OPROW = 1 << 0 , OPCOL = 1 << 1 , OPROWCOL = 1 << 2 , OPSPACE = 1 << 3 ,
  OPLAST = 1 << 3
}
 Controls loop over entities on element. More...
 
using AdjCache = std::map< EntityHandle, std::vector< boost::weak_ptr< NumeredEntFiniteElement > > >
 
- Public Types inherited from MoFEM::DataOperator
using DoWorkLhsHookFunType = boost::function< MoFEMErrorCode(DataOperator *op_ptr, int row_side, int col_side, EntityType row_type, EntityType col_type, EntitiesFieldData::EntData &row_data, EntitiesFieldData::EntData &col_data)>
 
using DoWorkRhsHookFunType = boost::function< MoFEMErrorCode(DataOperator *op_ptr, int side, EntityType type, EntitiesFieldData::EntData &data)>
 
- Public Attributes inherited from OpAssembleBasic< VolUserDataOperator >
const bool assembleSymmetry
 
boost::shared_ptr< DataAtIntegrationPtsdataAtPts
 data at integration pts
 
VectorDouble nF
 local right hand side vector
 
MatrixDouble K
 local tangent matrix
 
MatrixDouble transposeK
 
ScaleOff scaleOff
 
- Public Attributes inherited from MoFEM::ForcesAndSourcesCore::UserDataOperator
char opType
 
std::string rowFieldName
 
std::string colFieldName
 
FieldSpace sPace
 
- Public Attributes inherited from MoFEM::DataOperator
DoWorkLhsHookFunType doWorkLhsHook
 
DoWorkRhsHookFunType doWorkRhsHook
 
bool sYmm
 If true assume that matrix is symmetric structure.
 
std::array< bool, MBMAXTYPE > doEntities
 If true operator is executed for entity.
 
booldoVertices
 \deprectaed If false skip vertices
 
booldoEdges
 \deprectaed If false skip edges
 
booldoQuads
 \deprectaed
 
booldoTris
 \deprectaed
 
booldoTets
 \deprectaed
 
booldoPrisms
 \deprectaed
 
- Static Public Attributes inherited from MoFEM::ForcesAndSourcesCore::UserDataOperator
static const char *const OpTypeNames []
 
- Protected Member Functions inherited from MoFEM::VolumeElementForcesAndSourcesCore::UserDataOperator
MoFEMErrorCode setPtrFE (ForcesAndSourcesCore *ptr)
 
- Protected Attributes inherited from MoFEM::ForcesAndSourcesCore::UserDataOperator
ForcesAndSourcesCoreptrFE
 
- Static Protected Attributes inherited from OpAssembleVolume
static std::map< std::pair< std::string, std::string >, MatrixDouble > mapMatrix
 

Detailed Description

Examples
/home/lk58p/mofem_install/vanilla_dev_release/mofem-cephas/mofem/users_modules/eshelbian_plasticity/src/impl/EshelbianPlasticity.cpp.

Definition at line 872 of file EshelbianOperators.hpp.

Constructor & Destructor Documentation

◆ OpSpatialRotation_domega_domega()

OpSpatialRotation_domega_domega::OpSpatialRotation_domega_domega ( std::string  row_field,
std::string  col_field,
boost::shared_ptr< DataAtIntegrationPts data_ptr,
double  alpha_r,
double  alpha_r0,
double  alpha_omega,
double  alpha_omega0,
double  alpha_viscous_r,
double  alpha_viscous_r0,
double  alpha_viscous_omega,
double  alpha_viscous_omega0 
)
inline

Definition at line 873 of file EshelbianOperators.hpp.

880 : OpAssembleVolume(row_field, col_field, data_ptr, OPROWCOL, false),
881 alphaR(alpha_r), alphaR0(alpha_r0), alphaOmega(alpha_omega),
882 alphaOmega0(alpha_omega0), alphaViscousR(alpha_viscous_r),
883 alphaViscousR0(alpha_viscous_r0),
884 alphaViscousOmega(alpha_viscous_omega),
885 alphaViscousOmega0(alpha_viscous_omega0) {
886 sYmm = false;
887 }
bool sYmm
If true assume that matrix is symmetric structure.
@ OPROWCOL
operator doWork is executed on FE rows &columns

Member Function Documentation

◆ integrate()

MoFEMErrorCode OpSpatialRotation_domega_domega::integrate ( EntData row_data,
EntData col_data 
)
virtual

Reimplemented from OpAssembleBasic< VolUserDataOperator >.

Examples
/home/lk58p/mofem_install/vanilla_dev_release/mofem-cephas/mofem/users_modules/eshelbian_plasticity/src/impl/EshelbianOperators.cpp.

Definition at line 3393 of file EshelbianOperators.cpp.

3394 {
3396 int nb_integration_pts = getGaussPts().size2();
3397 int row_nb_dofs = row_data.getIndices().size();
3398 int col_nb_dofs = col_data.getIndices().size();
3399 auto get_ftensor2 = [](MatrixDouble &m, const int r, const int c) {
3401
3402 &m(r + 0, c + 0), &m(r + 0, c + 1), &m(r + 0, c + 2),
3403
3404 &m(r + 1, c + 0), &m(r + 1, c + 1), &m(r + 1, c + 2),
3405
3406 &m(r + 2, c + 0), &m(r + 2, c + 1), &m(r + 2, c + 2)
3407
3408 );
3409 };
3410 FTensor::Index<'i', 3> i;
3411 FTensor::Index<'j', 3> j;
3412 FTensor::Index<'k', 3> k;
3413 FTensor::Index<'l', 3> l;
3414 FTensor::Index<'m', 3> m;
3415 FTensor::Index<'n', 3> n;
3416
3418
3419 auto v = getVolume();
3420 auto ts_a =
3421 (std::abs(alphaViscousR) > std::numeric_limits<double>::epsilon() ||
3422 std::abs(alphaViscousR0) > std::numeric_limits<double>::epsilon() ||
3423 std::abs(alphaViscousOmega) > std::numeric_limits<double>::epsilon() ||
3424 std::abs(alphaViscousOmega0) > std::numeric_limits<double>::epsilon())
3425 ? getTSa()
3426 : 0.0;
3427 auto t_w = getFTensor0IntegrationWeight();
3428 auto t_levi_kirchhoff0 =
3429 dataAtPts->getFTensorLeviKirchhoff0(nb_integration_pts);
3430 auto t_levi_kirchhoff_domega =
3431 dataAtPts->getFTensorLeviKirchhoffdOmega(nb_integration_pts);
3432 int row_nb_base_functions = row_data.getN().size2();
3433 auto t_row_base_fun = row_data.getFTensor0N();
3434 auto t_row_grad_fun = row_data.getFTensor1DiffN<3>();
3435
3436 // auto time_step = getTStimeStep();
3437 for (int gg = 0; gg != nb_integration_pts; ++gg) {
3438 auto nrm_levi_kirchhoff0 = t_levi_kirchhoff0.l2();
3439 double a = v * t_w;
3440 double mass_coeff =
3441 (a * (alphaR + alphaR0 * nrm_levi_kirchhoff0)) +
3442 (a * (alphaViscousR + alphaViscousR0 * nrm_levi_kirchhoff0)) *
3443 (ts_a /*/ time_step*/);
3444 double grad_coeff =
3445 (a * (alphaOmega + alphaOmega0 * nrm_levi_kirchhoff0)) +
3446 (a * (alphaViscousOmega + alphaViscousOmega0 * nrm_levi_kirchhoff0)) *
3447 (ts_a /*/ time_step*/);
3448
3449 int rr = 0;
3450 for (; rr != row_nb_dofs / 3; ++rr) {
3451 auto t_m = get_ftensor2(K, 3 * rr, 0);
3452 const double row_mass = a * t_row_base_fun;
3453 auto t_col_base_fun = col_data.getFTensor0N(gg, 0);
3454 auto t_col_grad_fun = col_data.getFTensor1DiffN<3>(gg, 0);
3455 for (int cc = 0; cc != col_nb_dofs / 3; ++cc) {
3456 t_m(k, l) -= (row_mass * t_col_base_fun) * t_levi_kirchhoff_domega(k, l);
3457 t_m(k, l) += t_kd(k, l) * (mass_coeff * t_row_base_fun * t_col_base_fun);
3458 t_m(k, l) +=
3459 t_kd(k, l) * (grad_coeff * (t_row_grad_fun(i) * t_col_grad_fun(i)));
3460 ++t_m;
3461 ++t_col_base_fun;
3462 ++t_col_grad_fun;
3463 }
3464 ++t_row_base_fun;
3465 ++t_row_grad_fun;
3466 }
3467 for (; rr != row_nb_base_functions; ++rr) {
3468 ++t_row_base_fun;
3469 ++t_row_grad_fun;
3470 }
3471 ++t_w;
3472 ++t_levi_kirchhoff0;
3473 ++t_levi_kirchhoff_domega;
3474 }
3476}
constexpr double a
Kronecker Delta class.
#define MoFEMFunctionBegin
First executable line of each MoFEM function, used for error handling. Final line of MoFEM functions ...
#define MoFEMFunctionReturn(a)
Last executable line of each PETSc function used for error handling. Replaces return()
constexpr auto t_kd
FTensor::Index< 'i', SPACE_DIM > i
const double c
speed of light (cm/ns)
const double v
phase velocity of light in medium (cm/ns)
const double n
refractive index of diffusive medium
FTensor::Index< 'l', 3 > l
FTensor::Index< 'j', 3 > j
FTensor::Index< 'k', 3 > k
int r
Definition sdf.py:205
FTensor::Index< 'm', 3 > m
FTensor::Tensor0< FTensor::PackPtr< double *, 1 > > getFTensor0N(const FieldApproximationBase base)
Get base function as Tensor0.
auto getFTensor1DiffN(const FieldApproximationBase base)
Get derivatives of base functions.
MatrixDouble & getN(const FieldApproximationBase base)
get base functions this return matrix (nb. of rows is equal to nb. of Gauss pts, nb....
const VectorInt & getIndices() const
Get global indices of degrees of freedom on entity.
auto getFTensor0IntegrationWeight()
Get integration weights.
MatrixDouble & getGaussPts()
matrix of integration (Gauss) points for Volume Element
MatrixDouble K
local tangent matrix
boost::shared_ptr< DataAtIntegrationPts > dataAtPts
data at integration pts

Member Data Documentation

◆ alphaOmega

double OpSpatialRotation_domega_domega::alphaOmega
private

Definition at line 893 of file EshelbianOperators.hpp.

◆ alphaOmega0

double OpSpatialRotation_domega_domega::alphaOmega0
private

Definition at line 894 of file EshelbianOperators.hpp.

◆ alphaR

double OpSpatialRotation_domega_domega::alphaR
private

Definition at line 891 of file EshelbianOperators.hpp.

◆ alphaR0

double OpSpatialRotation_domega_domega::alphaR0
private

Definition at line 892 of file EshelbianOperators.hpp.

◆ alphaViscousOmega

double OpSpatialRotation_domega_domega::alphaViscousOmega
private

Definition at line 897 of file EshelbianOperators.hpp.

◆ alphaViscousOmega0

double OpSpatialRotation_domega_domega::alphaViscousOmega0
private

Definition at line 898 of file EshelbianOperators.hpp.

◆ alphaViscousR

double OpSpatialRotation_domega_domega::alphaViscousR
private

Definition at line 895 of file EshelbianOperators.hpp.

◆ alphaViscousR0

double OpSpatialRotation_domega_domega::alphaViscousR0
private

Definition at line 896 of file EshelbianOperators.hpp.


The documentation for this struct was generated from the following files: