#include <CardiacElectroMechProbRegularGeom.hpp>
Inherits CardiacElectroMechanicsProblem< DIM >.

Public Member Functions | |
| CardiacElectroMechProbRegularGeom (CompressibilityType compressibilityType, double width, unsigned numMechanicsElementsEachDir, unsigned numElectricsElementsEachDir, AbstractCardiacCellFactory< DIM > *pCellFactory, ContractionModelName contractionModel, double mechanicsSolveTimestep, double contractionModelOdeTimeStep, std::string outputDirectory="") | |
Child class of CardiacElectroMechanicsProblem for setting up cardiac electromechanics problems on a square (currently just 2d). The user just has to specify the number of elements in each direction.
This class can only be used to set up highly-restricted problems (square geometry, fibres in X-direction, X=0 side fixed in space, no tractions, pressures or MEF) - use the more general class CardiacElectroMechanicsProblem if you want to do anything more complex.
Note: the X=0 surface is fixed in the deformation.
Definition at line 53 of file CardiacElectroMechProbRegularGeom.hpp.
| CardiacElectroMechProbRegularGeom< DIM >::CardiacElectroMechProbRegularGeom | ( | CompressibilityType | compressibilityType, | |
| double | width, | |||
| unsigned | numMechanicsElementsEachDir, | |||
| unsigned | numElectricsElementsEachDir, | |||
| AbstractCardiacCellFactory< DIM > * | pCellFactory, | |||
| ContractionModelName | contractionModel, | |||
| double | mechanicsSolveTimestep, | |||
| double | contractionModelOdeTimeStep, | |||
| std::string | outputDirectory = "" | |||
| ) | [inline] |
Constructor.
| compressibilityType | Should be either INCOMPRESSIBLE or COMPRESSIBLE | |
| width | Width and height of the square | |
| numMechanicsElementsEachDir | Number of elements in each direction in the mechanics mesh | |
| numElectricsElementsEachDir | Number of elements in each direction in the electrics mesh | |
| pCellFactory | factory to use to create cells | |
| contractionModel | contraction model (see the enum "ContractionModel" for the options). | |
| mechanicsSolveTimestep | how often the mechanics is solved for (should be a multiple of electrics PDE timestep) | |
| contractionModelOdeTimeStep | Step size for contraction model (of active tension in cardiac cells) being used. | |
| outputDirectory | the output directory |
Definition at line 70 of file CardiacElectroMechProbRegularGeom.hpp.
References AbstractTetrahedralMesh< ELEMENT_DIM, SPACE_DIM >::ConstructRegularSlabMesh(), AbstractMesh< ELEMENT_DIM, SPACE_DIM >::GetNumNodes(), CardiacElectroMechanicsProblem< DIM >::mpElectricsMesh, CardiacElectroMechanicsProblem< DIM >::mpMechanicsMesh, and CardiacElectroMechanicsProblem< DIM >::mpProblemDefinition.
1.6.2