ASPECT
Modules
Here is a list of all modules:
[detail level
1
2
3
]
The main class implementing the mantle convection
▼
Postprocessing solutions
Visualizing solutions
Describing the material model
Describing the initial topography of the domain
Describing the properties of the domain
Describing the properties of the gravity
Describing terms on the right hand side of the temperature equation
Describing how to deform the mesh
Describing how to refine the mesh
Describing when to terminate a simulation
▼
Describing initial conditions
Describing initial conditions for the temperature
Describing initial conditions for compositional fields
Describing Adiabatic conditions
Describing prescribed velocity fields
▼
Describing boundary conditions
Describing temperature boundary conditions
Describing heat flux boundary conditions
Describing boundary conditions for compositional fields
Describing boundary conditions for the velocity field
Describing traction boundary conditions for the velocity field
Describing fluid pressure boundary conditions
▼
Describing advected particles
Describing the method to generate particles
Describing the method to integrate particles
Describing the method to interpolate particle properties to arbitrary positions
Describing the output method of particles
Describing the properties of particles
Automatic and symbolic differentiation
[external]
deal.II and Modern C++ standards
[external]
Concepts, or expectations on template parameters
[external]
▼
Degrees of Freedom
[external]
Constraints on degrees of freedom
[external]
Exceptions and assertions
[external]
▼
Finite elements
[external]
Base classes
[external]
▼
Finite element access/FEValues classes
[external]
Handling vector valued problems
[external]
Finite element space descriptions
[external]
Mappings between reference and real cell
[external]
How Mapping, FiniteElement, and FEValues work together
[external]
The interplay of UpdateFlags, Mapping, and FiniteElement in FEValues
[external]
Handling vector valued problems
[external]
Functions
[external]
The geodynamics demonstration suite
[external]
Geometric and other primitives
[external]
▼
Grids and Triangulations
[external]
▼
Iterators on mesh-like containers
[external]
Accessor classes of the mesh iterators
[external]
Manifold description for triangulations
[external]
Grid reordering and cell orientation
[external]
▼
hp-finite element support
[external]
hp-Collections
[external]
Integrators
[external]
▼
Input/Output
[external]
Input
[external]
Graphical output
[external]
Textual output
[external]
▼
Linear algebra classes
[external]
Linear Operators
[external]
▼
Matrix classes
[external]
Basic matrices
[external]
Derived matrices
[external]
Preconditioners and Relaxation Operators
[external]
Preconditioners and Relaxation Operators
[external]
Linear solver classes
[external]
Sparsity patterns
[external]
Vector memory management
[external]
Vector classes
[external]
Matrix-free infrastructure
[external]
The MeshWorker interface
[external]
Multilevel support
[external]
Numerical algorithms
[external]
▼
Parallel computing
[external]
Parallel computing with multiple processors using distributed memory
[external]
Parallel computing with multiple processors accessing shared memory
[external]
PETScWrappers
[external]
Physics
[external]
Polynomials and polynomial spaces
[external]
Quadrature formulas
[external]
Simplex support
[external]
SLEPcWrappers
[external]
TrilinosWrappers
[external]
▼
Utility functions and classes
[external]
Memory handling
[external]
Data storage primitives
[external]
TpetraWrappers
[external]
OpenCASCADE
[external]
ASPECT manual
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