GRINS-0.7.0
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GRINS::VelocityDrag< Viscosity > Class Template Reference

Physics class for Velocity Drag. More...

#include <velocity_drag.h>

Inheritance diagram for GRINS::VelocityDrag< Viscosity >:
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Collaboration diagram for GRINS::VelocityDrag< Viscosity >:
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Public Member Functions

 VelocityDrag (const std::string &physics_name, const GetPot &input)
 
 ~VelocityDrag ()
 
virtual void init_context (AssemblyContext &context)
 Initialize context for added physics variables. More...
 
virtual void element_time_derivative (bool compute_jacobian, AssemblyContext &context, CachedValues &cache)
 Time dependent part(s) of physics for element interiors. More...
 
- Public Member Functions inherited from GRINS::VelocityDragBase< Viscosity >
 VelocityDragBase (const std::string &physics_name, const GetPot &input)
 
 ~VelocityDragBase ()
 
bool compute_force (const libMesh::Point &point, const libMesh::Real time, const libMesh::NumberVectorValue &U, libMesh::NumberVectorValue &F, libMesh::NumberTensorValue *dFdU=NULL)
 
- Public Member Functions inherited from GRINS::IncompressibleNavierStokesBase< Viscosity >
 IncompressibleNavierStokesBase (const std::string &my_physics_name, const std::string &core_physics_name, const GetPot &input)
 
 ~IncompressibleNavierStokesBase ()
 
virtual void init_variables (libMesh::FEMSystem *system)
 Initialization of Navier-Stokes variables. More...
 
virtual void set_time_evolving_vars (libMesh::FEMSystem *system)
 Sets velocity variables to be time-evolving. More...
 
virtual void register_parameter (const std::string &param_name, libMesh::ParameterMultiAccessor< libMesh::Number > &param_pointer) const
 Each subclass will register its copy of an independent. More...
 
libMesh::Real get_viscosity_value (AssemblyContext &context, unsigned int qp) const
 
- Public Member Functions inherited from GRINS::Physics
 Physics (const GRINS::PhysicsName &physics_name, const GetPot &input)
 
virtual ~Physics ()
 
virtual bool enabled_on_elem (const libMesh::Elem *elem)
 Find if current physics is active on supplied element. More...
 
void set_is_steady (bool is_steady)
 Sets whether this physics is to be solved with a steady solver or not. More...
 
bool is_steady () const
 Returns whether or not this physics is being solved with a steady solver. More...
 
virtual void auxiliary_init (MultiphysicsSystem &system)
 Any auxillary initialization a Physics class may need. More...
 
virtual void register_postprocessing_vars (const GetPot &input, PostProcessedQuantities< libMesh::Real > &postprocessing)
 Register name of postprocessed quantity with PostProcessedQuantities. More...
 
virtual void side_time_derivative (bool compute_jacobian, AssemblyContext &context, CachedValues &cache)
 Time dependent part(s) of physics for boundaries of elements on the domain boundary. More...
 
virtual void nonlocal_time_derivative (bool compute_jacobian, AssemblyContext &context, CachedValues &cache)
 Time dependent part(s) of physics for scalar variables. More...
 
virtual void element_constraint (bool compute_jacobian, AssemblyContext &context, CachedValues &cache)
 Constraint part(s) of physics for element interiors. More...
 
virtual void side_constraint (bool compute_jacobian, AssemblyContext &context, CachedValues &cache)
 Constraint part(s) of physics for boundaries of elements on the domain boundary. More...
 
virtual void nonlocal_constraint (bool compute_jacobian, AssemblyContext &context, CachedValues &cache)
 Constraint part(s) of physics for scalar variables. More...
 
virtual void damping_residual (bool compute_jacobian, AssemblyContext &context, CachedValues &cache)
 Damping matrix part(s) for element interiors. All boundary terms lie within the time_derivative part. More...
 
virtual void mass_residual (bool compute_jacobian, AssemblyContext &context, CachedValues &cache)
 Mass matrix part(s) for element interiors. All boundary terms lie within the time_derivative part. More...
 
virtual void nonlocal_mass_residual (bool compute_jacobian, AssemblyContext &context, CachedValues &cache)
 Mass matrix part(s) for scalar variables. More...
 
void init_ics (libMesh::FEMSystem *system, libMesh::CompositeFunction< libMesh::Number > &all_ics)
 
virtual void compute_element_time_derivative_cache (const AssemblyContext &context, CachedValues &cache)
 
virtual void compute_side_time_derivative_cache (const AssemblyContext &context, CachedValues &cache)
 
virtual void compute_nonlocal_time_derivative_cache (const AssemblyContext &context, CachedValues &cache)
 
virtual void compute_element_constraint_cache (const AssemblyContext &context, CachedValues &cache)
 
virtual void compute_side_constraint_cache (const AssemblyContext &context, CachedValues &cache)
 
virtual void compute_nonlocal_constraint_cache (const AssemblyContext &context, CachedValues &cache)
 
virtual void compute_damping_residual_cache (const AssemblyContext &context, CachedValues &cache)
 
virtual void compute_mass_residual_cache (const AssemblyContext &context, CachedValues &cache)
 
virtual void compute_nonlocal_mass_residual_cache (const AssemblyContext &context, CachedValues &cache)
 
virtual void compute_postprocessed_quantity (unsigned int quantity_index, const AssemblyContext &context, const libMesh::Point &point, libMesh::Real &value)
 
ICHandlingBaseget_ic_handler ()
 
- Public Member Functions inherited from GRINS::ParameterUser
 ParameterUser (const std::string &user_name)
 
virtual ~ParameterUser ()
 
virtual void set_parameter (libMesh::Number &param_variable, const GetPot &input, const std::string &param_name, libMesh::Number param_default)
 Each subclass can simultaneously read a parameter value from. More...
 
virtual void set_parameter (libMesh::ParsedFunction< libMesh::Number, libMesh::Gradient > &func, const GetPot &input, const std::string &func_param_name, const std::string &param_default)
 Each subclass can simultaneously read a parsed function from. More...
 
virtual void set_parameter (libMesh::ParsedFEMFunction< libMesh::Number > &func, const GetPot &input, const std::string &func_param_name, const std::string &param_default)
 Each subclass can simultaneously read a parsed function from. More...
 
virtual void move_parameter (const libMesh::Number &old_parameter, libMesh::Number &new_parameter)
 When cloning an object, we need to update parameter pointers. More...
 
virtual void move_parameter (const libMesh::ParsedFunction< libMesh::Number, libMesh::Gradient > &old_func, libMesh::ParsedFunction< libMesh::Number, libMesh::Gradient > &new_func)
 When cloning an object, we need to update parameter pointers. More...
 
virtual void move_parameter (const libMesh::ParsedFEMFunction< libMesh::Number > &old_func, libMesh::ParsedFEMFunction< libMesh::Number > &new_func)
 When cloning an object, we need to update parameter pointers. More...
 

Private Member Functions

 VelocityDrag ()
 

Additional Inherited Members

- Static Public Member Functions inherited from GRINS::Physics
static void set_is_axisymmetric (bool is_axisymmetric)
 Set whether we should treat the problem as axisymmetric. More...
 
static bool is_axisymmetric ()
 
- Static Public Attributes inherited from GRINS::ParameterUser
static std::string zero_vector_function = std::string("{0}")
 A parseable function string with LIBMESH_DIM components, all 0. More...
 
- Protected Member Functions inherited from GRINS::Physics
libMesh::UniquePtr< libMesh::FEGenericBase< libMesh::Real > > build_new_fe (const libMesh::Elem *elem, const libMesh::FEGenericBase< libMesh::Real > *fe, const libMesh::Point p)
 
void parse_enabled_subdomains (const GetPot &input, const std::string &physics_name)
 
- Protected Attributes inherited from GRINS::VelocityDragBase< Viscosity >
libMesh::Real _exponent
 
libMesh::ParsedFunction< libMesh::Number > _coefficient
 
- Protected Attributes inherited from GRINS::IncompressibleNavierStokesBase< Viscosity >
unsigned int _dim
 Physical dimension of problem. More...
 
VelocityFEVariables _flow_vars
 
PressureFEVariable _press_var
 
libMesh::Number _rho
 Material parameters, read from input. More...
 
Viscosity _mu
 Viscosity object. More...
 
- Protected Attributes inherited from GRINS::Physics
const PhysicsName _physics_name
 Name of the physics object. Used for reading physics specific inputs. More...
 
GRINS::ICHandlingBase_ic_handler
 
std::set< libMesh::subdomain_id_type > _enabled_subdomains
 Subdomains on which the current Physics class is enabled. More...
 
- Static Protected Attributes inherited from GRINS::Physics
static bool _is_steady = false
 Caches whether or not the solver that's being used is steady or not. More...
 
static bool _is_axisymmetric = false
 Caches whether we are solving an axisymmetric problem or not. More...
 

Detailed Description

template<class Viscosity>
class GRINS::VelocityDrag< Viscosity >

Physics class for Velocity Drag.

Definition at line 52 of file velocity_drag.h.

Constructor & Destructor Documentation

template<class Mu >
GRINS::VelocityDrag< Mu >::VelocityDrag ( const std::string &  physics_name,
const GetPot &  input 
)

Definition at line 41 of file velocity_drag.C.

42  : VelocityDragBase<Mu>(physics_name, input)
43  {}
template<class Viscosity >
GRINS::VelocityDrag< Viscosity >::~VelocityDrag ( )
inline

Definition at line 58 of file velocity_drag.h.

58 {};
template<class Viscosity >
GRINS::VelocityDrag< Viscosity >::VelocityDrag ( )
private

Member Function Documentation

template<class Mu >
void GRINS::VelocityDrag< Mu >::element_time_derivative ( bool  compute_jacobian,
AssemblyContext context,
CachedValues cache 
)
virtual

Time dependent part(s) of physics for element interiors.

Reimplemented from GRINS::Physics.

Definition at line 56 of file velocity_drag.C.

59  {
60 #ifdef GRINS_USE_GRVY_TIMERS
61  this->_timer->BeginTimer("VelocityDrag::element_time_derivative");
62 #endif
63 
64  // Element Jacobian * quadrature weights for interior integration
65  const std::vector<libMesh::Real> &JxW =
66  context.get_element_fe(this->_flow_vars.u())->get_JxW();
67 
68  // The shape functions at interior quadrature points.
69  const std::vector<std::vector<libMesh::Real> >& u_phi =
70  context.get_element_fe(this->_flow_vars.u())->get_phi();
71 
72  const std::vector<libMesh::Point>& u_qpoint =
73  context.get_element_fe(this->_flow_vars.u())->get_xyz();
74 
75  // The number of local degrees of freedom in each variable
76  const unsigned int n_u_dofs = context.get_dof_indices(this->_flow_vars.u()).size();
77 
78  // The subvectors and submatrices we need to fill:
79  libMesh::DenseSubMatrix<libMesh::Number> &Kuu = context.get_elem_jacobian(this->_flow_vars.u(), this->_flow_vars.u()); // R_{u},{u}
80  libMesh::DenseSubMatrix<libMesh::Number> &Kuv = context.get_elem_jacobian(this->_flow_vars.u(), this->_flow_vars.v()); // R_{u},{v}
81  libMesh::DenseSubMatrix<libMesh::Number> &Kvu = context.get_elem_jacobian(this->_flow_vars.v(), this->_flow_vars.u()); // R_{v},{u}
82  libMesh::DenseSubMatrix<libMesh::Number> &Kvv = context.get_elem_jacobian(this->_flow_vars.v(), this->_flow_vars.v()); // R_{v},{v}
83 
84  libMesh::DenseSubMatrix<libMesh::Number>* Kwu = NULL;
85  libMesh::DenseSubMatrix<libMesh::Number>* Kwv = NULL;
86  libMesh::DenseSubMatrix<libMesh::Number>* Kww = NULL;
87  libMesh::DenseSubMatrix<libMesh::Number>* Kuw = NULL;
88  libMesh::DenseSubMatrix<libMesh::Number>* Kvw = NULL;
89 
90  libMesh::DenseSubVector<libMesh::Number> &Fu = context.get_elem_residual(this->_flow_vars.u()); // R_{u}
91  libMesh::DenseSubVector<libMesh::Number> &Fv = context.get_elem_residual(this->_flow_vars.v()); // R_{v}
92  libMesh::DenseSubVector<libMesh::Number>* Fw = NULL;
93 
94  if( this->_dim == 3 )
95  {
96  Kuw = &context.get_elem_jacobian(this->_flow_vars.u(), this->_flow_vars.w()); // R_{u},{w}
97  Kvw = &context.get_elem_jacobian(this->_flow_vars.v(), this->_flow_vars.w()); // R_{v},{w}
98 
99  Kwu = &context.get_elem_jacobian(this->_flow_vars.w(), this->_flow_vars.u()); // R_{w},{u}
100  Kwv = &context.get_elem_jacobian(this->_flow_vars.w(), this->_flow_vars.v()); // R_{w},{v}
101  Kww = &context.get_elem_jacobian(this->_flow_vars.w(), this->_flow_vars.w()); // R_{w},{w}
102  Fw = &context.get_elem_residual(this->_flow_vars.w()); // R_{w}
103  }
104 
105  unsigned int n_qpoints = context.get_element_qrule().n_points();
106 
107  for (unsigned int qp=0; qp != n_qpoints; qp++)
108  {
109  // Compute the solution at the old Newton iterate.
110  libMesh::Number u, v;
111  u = context.interior_value(this->_flow_vars.u(), qp);
112  v = context.interior_value(this->_flow_vars.v(), qp);
113 
114  libMesh::NumberVectorValue U(u,v);
115  if (this->_dim == 3)
116  U(2) = context.interior_value(this->_flow_vars.w(), qp); // w
117 
118  libMesh::NumberVectorValue F;
119  libMesh::NumberTensorValue dFdU;
120  libMesh::NumberTensorValue* dFdU_ptr =
121  compute_jacobian ? &dFdU : NULL;
122  if (!this->compute_force(u_qpoint[qp], context.time, U, F, dFdU_ptr))
123  continue;
124 
125  libMesh::Real jac = JxW[qp];
126 
127  for (unsigned int i=0; i != n_u_dofs; i++)
128  {
129  const libMesh::Number jac_i = jac * u_phi[i][qp];
130 
131  Fu(i) += F(0)*jac_i;
132  Fv(i) += F(1)*jac_i;
133 
134  if( this->_dim == 3 )
135  (*Fw)(i) += F(2)*jac_i;
136 
137  if( compute_jacobian )
138  {
139  for (unsigned int j=0; j != n_u_dofs; j++)
140  {
141  const libMesh::Number jac_ij =
142  jac_i * context.get_elem_solution_derivative() *
143  u_phi[j][qp];
144  Kuu(i,j) += jac_ij * dFdU(0,0);
145  Kuv(i,j) += jac_ij * dFdU(0,1);
146  Kvu(i,j) += jac_ij * dFdU(1,0);
147  Kvv(i,j) += jac_ij * dFdU(1,1);
148 
149  if( this->_dim == 3 )
150  {
151  (*Kuw)(i,j) += jac_ij * dFdU(0,2);
152  (*Kvw)(i,j) += jac_ij * dFdU(1,2);
153  (*Kwu)(i,j) += jac_ij * dFdU(2,0);
154  (*Kwv)(i,j) += jac_ij * dFdU(2,1);
155  (*Kww)(i,j) += jac_ij * dFdU(2,2);
156  }
157  }
158  }
159  }
160  }
161 
162 
163 #ifdef GRINS_USE_GRVY_TIMERS
164  this->_timer->EndTimer("VelocityDrag::element_time_derivative");
165 #endif
166 
167  return;
168  }
bool compute_force(const libMesh::Point &point, const libMesh::Real time, const libMesh::NumberVectorValue &U, libMesh::NumberVectorValue &F, libMesh::NumberTensorValue *dFdU=NULL)
unsigned int _dim
Physical dimension of problem.
template<class Mu >
void GRINS::VelocityDrag< Mu >::init_context ( AssemblyContext context)
virtual

Initialize context for added physics variables.

Reimplemented from GRINS::IncompressibleNavierStokesBase< Viscosity >.

Definition at line 46 of file velocity_drag.C.

47  {
48  context.get_element_fe(this->_flow_vars.u())->get_xyz();
49  context.get_element_fe(this->_flow_vars.u())->get_phi();
50 
51  return;
52  }

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

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