simpeg.maps.InjectActiveCells#
- class simpeg.maps.InjectActiveCells(mesh, active_cells=None, value_inactive=0.0, nC=None, **kwargs)[source]#
- Bases: - IdentityMap- Map active cells model to all cell of a mesh. - The - InjectActiveCellsclass is used to define the mapping when the model consists of physical property values for a set of active mesh cells; e.g. cells below topography. For a discrete set of model parameters \(\mathbf{m}\) defined on a set of active cells, the mapping \(\mathbf{u}(\mathbf{m})\) is defined as:\[\mathbf{u}(\mathbf{m}) = \mathbf{Pm} + \mathbf{d}\, m_\perp\]- where \(\mathbf{P}\) is a (nC , nP) projection matrix from active cells to all mesh cells, and \(\mathbf{d}\) is a (nC , 1) matrix that projects the inactive cell value \(m_\perp\) to all inactive mesh cells. - Parameters:
- meshdiscretize.BaseMesh
- A discretize mesh 
- active_cellsnumpy.ndarray
- Active cells array. Can be a boolean - numpy.ndarrayof length mesh.nC or a- numpy.ndarrayof- intcontaining the indices of the active cells.
- value_inactivefloatornumpy.ndarray
- The physical property value assigned to all inactive cells in the mesh 
 
- mesh
 - Attributes - A boolean array representing the active values in the map's output array. - active_cells.indActive has been deprecated. - Determine whether or not this mapping is a linear operation. - The mesh used for the mapping - Number of parameters the model acts on. - Dimensions of the mapping - value_inactive.valInactive has been deprecated. - The physical property value assigned to all inactive cells in the mesh. - Methods - deriv(m[, v])- Derivative of the mapping with respect to the input parameters. - dot(map1)- Multiply two mappings to create a - simpeg.maps.ComboMap.- inverse(u)- Recover the model parameters (active cells) from a set of physical property values defined on the entire mesh. - test([m, num, random_seed])- Derivative test for the mapping. 
Galleries and Tutorials using simpeg.maps.InjectActiveCells#
 
Predict Response from a Conductive and Magnetically Viscous Earth
 
Method of Equivalent Sources for Removing VRM Responses
 
Heagy et al., 2017 1D RESOLVE and SkyTEM Bookpurnong Inversions
 
Heagy et al., 2017 1D RESOLVE Bookpurnong Inversion
 
2.5D DC Resistivity and IP Least-Squares Inversion
 
3D Forward Simulation for Transient Response on a Cylindrical Mesh
 
Cross-gradient Joint Inversion of Gravity and Magnetic Anomaly Data
 
Joint PGI of Gravity + Magnetic on an Octree mesh using full petrophysical information
 
Joint PGI of Gravity + Magnetic on an Octree mesh without petrophysical information
 
     
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
