OpenLB 1.7
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Public Member Functions | List of all members
olb::SuperLatticePhysDarcyForce3D< T, DESCRIPTOR > Class Template Referencefinal

computes pointwise -nu/K*u on the lattice, can be used with SuperSum3D as objective More...

#include <latticePhysDarcyForce3D.h>

+ Inheritance diagram for olb::SuperLatticePhysDarcyForce3D< T, DESCRIPTOR >:
+ Collaboration diagram for olb::SuperLatticePhysDarcyForce3D< T, DESCRIPTOR >:

Public Member Functions

 SuperLatticePhysDarcyForce3D (SuperLattice< T, DESCRIPTOR > &sLattice, SuperGeometry< T, 3 > &superGeometry, const int material, const UnitConverter< T, DESCRIPTOR > &converter)
 
bool operator() (T output[], const int input[])
 
- Public Member Functions inherited from olb::SuperLatticePhysF3D< T, DESCRIPTOR >
UnitConverter< T, DESCRIPTOR > const & getConverter () const
 
- Public Member Functions inherited from olb::SuperLatticeF3D< T, DESCRIPTOR >
SuperLattice< T, DESCRIPTOR > & getSuperLattice ()
 
bool operator() (T output[], const int input[])
 
- Public Member Functions inherited from olb::SuperF3D< T, T >
SuperF3D< T, T > & operator- (SuperF3D< T, T > &rhs)
 
SuperF3D< T, T > & operator+ (SuperF3D< T, T > &rhs)
 
SuperF3D< T, T > & operator* (SuperF3D< T, T > &rhs)
 
SuperF3D< T, T > & operator/ (SuperF3D< T, T > &rhs)
 
SuperStructure< T, 3 > & getSuperStructure ()
 
int getBlockFSize () const
 
BlockF3D< T > & getBlockF (int iCloc)
 
bool operator() (T output[], const int input[])
 
- Public Member Functions inherited from olb::GenericF< T, S >
virtual ~GenericF ()=default
 
int getSourceDim () const
 read only access to member variable _m
 
int getTargetDim () const
 read only access to member variable _n
 
std::string & getName ()
 read and write access to name
 
std::string const & getName () const
 read only access to name
 
virtual bool operator() (T output[], const S input[])=0
 has to be implemented for 'every' derived class
 
bool operator() (T output[])
 wrapper that call the pure virtual operator() (T output[], const S input[]) from above
 
bool operator() (T output[], S input0)
 
bool operator() (T output[], S input0, S input1)
 
bool operator() (T output[], S input0, S input1, S input2)
 
bool operator() (T output[], S input0, S input1, S input2, S input3)
 

Additional Inherited Members

- Public Types inherited from olb::SuperLatticeF3D< T, DESCRIPTOR >
using identity_functor_type = SuperLatticeIdentity3D<T,DESCRIPTOR>
 
- Public Types inherited from olb::SuperF3D< T, T >
using identity_functor_type
 
- Public Types inherited from olb::GenericF< T, S >
using targetType = T
 
using sourceType = S
 
- Public Attributes inherited from olb::GenericF< T, S >
std::shared_ptr< GenericF< T, S > > _ptrCalcC
 memory management, frees resouces (calcClass)
 
- Static Public Attributes inherited from olb::SuperF3D< T, T >
static constexpr bool isSuper
 
static constexpr unsigned d
 
- Protected Member Functions inherited from olb::SuperLatticePhysF3D< T, DESCRIPTOR >
 SuperLatticePhysF3D (SuperLattice< T, DESCRIPTOR > &sLattice, const UnitConverter< T, DESCRIPTOR > &converter, int targetDim)
 
- Protected Member Functions inherited from olb::SuperLatticeF3D< T, DESCRIPTOR >
 SuperLatticeF3D (SuperLattice< T, DESCRIPTOR > &superLattice, int targetDim)
 
- Protected Member Functions inherited from olb::SuperF3D< T, T >
 SuperF3D (SuperStructure< T, 3 > &superStructure, int targetDim)
 
- Protected Member Functions inherited from olb::GenericF< T, S >
 GenericF (int targetDim, int sourceDim)
 
- Protected Attributes inherited from olb::SuperLatticePhysF3D< T, DESCRIPTOR >
const UnitConverter< T, DESCRIPTOR > & _converter
 
- Protected Attributes inherited from olb::SuperLatticeF3D< T, DESCRIPTOR >
SuperLattice< T, DESCRIPTOR > & _sLattice
 
- Protected Attributes inherited from olb::SuperF3D< T, T >
SuperStructure< T, 3 > & _superStructure
 
std::vector< std::unique_ptr< BlockF3D< T > > > _blockF
 Super functors may consist of several BlockF3D<W> derived functors.
 

Detailed Description

template<typename T, typename DESCRIPTOR>
class olb::SuperLatticePhysDarcyForce3D< T, DESCRIPTOR >

computes pointwise -nu/K*u on the lattice, can be used with SuperSum3D as objective

Definition at line 51 of file latticePhysDarcyForce3D.h.

Constructor & Destructor Documentation

◆ SuperLatticePhysDarcyForce3D()

template<typename T , typename DESCRIPTOR >
olb::SuperLatticePhysDarcyForce3D< T, DESCRIPTOR >::SuperLatticePhysDarcyForce3D ( SuperLattice< T, DESCRIPTOR > & sLattice,
SuperGeometry< T, 3 > & superGeometry,
const int material,
const UnitConverter< T, DESCRIPTOR > & converter )

Definition at line 45 of file latticePhysDarcyForce3D.hh.

48 : SuperLatticePhysF3D<T, DESCRIPTOR>(sLattice, converter, 3),
49 _superGeometry(superGeometry), _material(material)
50{
51 this->getName() = "alphaU";
52}
std::string & getName()
read and write access to name
Definition genericF.hh:51

References olb::GenericF< T, S >::getName().

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Member Function Documentation

◆ operator()()

template<typename T , typename DESCRIPTOR >
bool olb::SuperLatticePhysDarcyForce3D< T, DESCRIPTOR >::operator() ( T output[],
const int input[] )

Definition at line 55 of file latticePhysDarcyForce3D.hh.

56{
57 SuperLatticePhysPermeability3D<T, DESCRIPTOR> permeability(this->_sLattice, this->_converter);
58 SuperLatticeVelocity3D<T, DESCRIPTOR> velocity(this->_sLattice);
59
60 T nu = this->_converter.getPhysViscosity();
61 T K;
62 T u[velocity.getTargetDim()];
63 permeability(&K,input);
64 velocity(u,input);
65
66 output[0] = -nu / K * u[0];
67 output[1] = -nu / K * u[1];
68 output[2] = -nu / K * u[2];
69
70 return true;
71}
SuperLattice< T, DESCRIPTOR > & _sLattice
const UnitConverter< T, DESCRIPTOR > & _converter

References olb::GenericF< T, S >::getTargetDim().

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