- boundaryThe list of boundary IDs from the mesh where this object applies
C++ Type:std::vector<BoundaryName>
Unit:(no unit assumed)
Controllable:No
Description:The list of boundary IDs from the mesh where this object applies
- variableThe name of the variable that this residual object operates on
C++ Type:NonlinearVariableName
Unit:(no unit assumed)
Controllable:No
Description:The name of the variable that this residual object operates on
ADVectorFunctionDirichletBC
Imposes the essential boundary condition , where components are calculated with functions.
Description
ADVectorFunctionDirichletBC
is the extension of FunctionDirichletBC
to Lagrange vector variables and is used for imposing so-called "essential" boundary conditions on systems of partial differential equations (PDEs). Such boundary conditions force a particular set of degrees of freedom (DOFs) defined by the boundary
parameter to take on controllable values. This class is appropriate to use for PDEs of the form
where is the domain, and is its boundary. In this case, a VectorFunctionDirichletBC
object is used to impose the condition (2) on the subset of the boundary denoted by . In this case, is supplied through the Function
parameters function_x
, function_y
, and function_z
. If any of those parameters are not supplied by the user, they take a default value of . The user must define one or more sidesets corresponding to the boundary subset .
Note that this BC computes its Jacobian using automatic differentiation
Input Parameters
- diag_save_inThe name of auxiliary variables to save this BC's diagonal jacobian contributions to. Everything about that variable must match everything about this variable (the type, what blocks it's on, etc.)
C++ Type:std::vector<AuxVariableName>
Unit:(no unit assumed)
Controllable:No
Description:The name of auxiliary variables to save this BC's diagonal jacobian contributions to. Everything about that variable must match everything about this variable (the type, what blocks it's on, etc.)
- displacementsThe displacements
C++ Type:std::vector<VariableName>
Unit:(no unit assumed)
Controllable:No
Description:The displacements
- functionThe boundary condition vector function. This cannot be supplied with the component parameters.
C++ Type:FunctionName
Unit:(no unit assumed)
Controllable:No
Description:The boundary condition vector function. This cannot be supplied with the component parameters.
- function_x0The function for the x component
Default:0
C++ Type:FunctionName
Unit:(no unit assumed)
Controllable:No
Description:The function for the x component
- function_y0The function for the y component
Default:0
C++ Type:FunctionName
Unit:(no unit assumed)
Controllable:No
Description:The function for the y component
- function_z0The function for the z component
Default:0
C++ Type:FunctionName
Unit:(no unit assumed)
Controllable:No
Description:The function for the z component
- presetTrueWhether or not to preset the BC (apply the value before the solve begins).
Default:True
C++ Type:bool
Unit:(no unit assumed)
Controllable:No
Description:Whether or not to preset the BC (apply the value before the solve begins).
- save_inThe name of auxiliary variables to save this BC's residual contributions to. Everything about that variable must match everything about this variable (the type, what blocks it's on, etc.)
C++ Type:std::vector<AuxVariableName>
Unit:(no unit assumed)
Controllable:No
Description:The name of auxiliary variables to save this BC's residual contributions to. Everything about that variable must match everything about this variable (the type, what blocks it's on, etc.)
- set_x_compTrueWhether to set the x-component of the variable
Default:True
C++ Type:bool
Unit:(no unit assumed)
Controllable:No
Description:Whether to set the x-component of the variable
- set_y_compTrueWhether to set the y-component of the variable
Default:True
C++ Type:bool
Unit:(no unit assumed)
Controllable:No
Description:Whether to set the y-component of the variable
- set_z_compTrueWhether to set the z-component of the variable
Default:True
C++ Type:bool
Unit:(no unit assumed)
Controllable:No
Description:Whether to set the z-component of the variable
Optional Parameters
- absolute_value_vector_tagsThe tags for the vectors this residual object should fill with the absolute value of the residual contribution
C++ Type:std::vector<TagName>
Unit:(no unit assumed)
Controllable:No
Description:The tags for the vectors this residual object should fill with the absolute value of the residual contribution
- extra_matrix_tagsThe extra tags for the matrices this Kernel should fill
C++ Type:std::vector<TagName>
Unit:(no unit assumed)
Controllable:No
Description:The extra tags for the matrices this Kernel should fill
- extra_vector_tagsThe extra tags for the vectors this Kernel should fill
C++ Type:std::vector<TagName>
Unit:(no unit assumed)
Controllable:No
Description:The extra tags for the vectors this Kernel should fill
- matrix_tagssystem timeThe tag for the matrices this Kernel should fill
Default:system time
C++ Type:MultiMooseEnum
Unit:(no unit assumed)
Controllable:No
Description:The tag for the matrices this Kernel should fill
- vector_tagsresidualThe tag for the vectors this Kernel should fill
Default:residual
C++ Type:MultiMooseEnum
Unit:(no unit assumed)
Controllable:No
Description:The tag for the vectors this Kernel should fill
Tagging Parameters
- control_tagsAdds user-defined labels for accessing object parameters via control logic.
C++ Type:std::vector<std::string>
Unit:(no unit assumed)
Controllable:No
Description:Adds user-defined labels for accessing object parameters via control logic.
- enableTrueSet the enabled status of the MooseObject.
Default:True
C++ Type:bool
Unit:(no unit assumed)
Controllable:Yes
Description:Set the enabled status of the MooseObject.
- implicitTrueDetermines whether this object is calculated using an implicit or explicit form
Default:True
C++ Type:bool
Unit:(no unit assumed)
Controllable:No
Description:Determines whether this object is calculated using an implicit or explicit form
- seed0The seed for the master random number generator
Default:0
C++ Type:unsigned int
Unit:(no unit assumed)
Controllable:No
Description:The seed for the master random number generator
- use_displaced_meshFalseWhether or not this object should use the displaced mesh for computation. Note that in the case this is true but no displacements are provided in the Mesh block the undisplaced mesh will still be used.
Default:False
C++ Type:bool
Unit:(no unit assumed)
Controllable:No
Description:Whether or not this object should use the displaced mesh for computation. Note that in the case this is true but no displacements are provided in the Mesh block the undisplaced mesh will still be used.