SimPEG
0.14.2

Getting Started

  • Why SimPEG?
  • Contributing to SimPEG
  • Getting Started with SimPEG
  • Getting Started: for Developers
  • Practices
  • Gallery
    • Mappings
      • Maps: Parametric Block in a Layer
      • Maps: ComboMaps
      • Maps: Parametrized Layer
      • Maps: Mesh2Mesh
      • Maps: ComboMaps
    • Gravity
      • PF: Gravity: Tiled Inversion Linear
    • Magnetics
      • PF: Magnetics: Analytics
      • Magnetic inversion on a TreeMesh
      • Magnetic Amplitude inversion on a TreeMesh
    • DC Resistivity and Induced Polarization
      • DC Analytic Dipole
      • 3D DC inversion of Dipole Dipole array
      • Parametric DC inversion with Dipole Dipole array
      • Reading and Plotting data with DC.IO class
    • Frequency Domain Electromagnetics
      • Simulation with Analytic FDEM Solutions
      • 2D inversion of Loop-Loop EM Data
    • Time Domain Electromagnetics
      • Simulation with Analytic TDEM Solutions
      • Time-domain CSEM for a resistive cube in a deep marine setting
      • TDEM: Waveforms
      • EM: TDEM: 1D: Inversion
      • EM: TDEM: 1D: Inversion with VTEM waveform
      • EM: TDEM: Permeable Target, Inductive Source
    • Natural Source Electromagnetics
      • MT: 3D: Forward
    • Viscous Remanent Magnetization
      • Predict Response from a Conductive and Magnetically Viscous Earth
      • Method of Equivalent Sources for Removing VRM Responses
    • Richards Fluid Flow
      • FLOW: Richards: 1D: Forward Simulation
      • FLOW: Richards: 1D: Inversion
    • In Publication
      • Heagy et al., 2017 1D RESOLVE and SkyTEM Bookpurnong Inversions
      • Heagy et al., 2017 1D RESOLVE Bookpurnong Inversion
      • Effective Medium Theory Mapping
      • Heagy et al., 2017 Casing Example
      • Heagy et al., 2017 1D FDEM and TDEM inversions
      • PF: Gravity: Laguna del Maule Bouguer Gravity
      • Heagy et al., 2017 Load and Plot Bookpurnong Data
      • FLOW: Richards: 1D: Celia1990
      • EM: Schenkel and Morrison Casing Model
      • Straight Ray with Volume Data Misfit Term
      • FLOW: Vadose: van Genuchten

Tutorials

  • Models and Mapping
  • Linear Problems
  • Gravity
  • Magnetics
  • Direct Current Resistivity
  • Induced Polarization
  • Frequency-Domain Electromagnetics
  • Time-Domain Electromagnetics
  • Natural Source Electromagnetics
  • Viscous Remanent Magnetization
  • Flow
  • Seismic

Packages

  • Electromagnetics
  • Direct Current Resistivity
  • Induced Polarization
  • Potential Fields
  • Viscous Remanent Magnetization
  • Richards Equation

API

  • Finite Volume
  • Forward Simulation
  • Inversion Components
  • Maps
  • Utilities

Meta Information

  • Release Notes
SimPEG
  • Docs »
  • Gallery
  • Edit on GitHub

Gallery¶

Mappings¶

Maps: Parametric Block in a Layer

Maps: Parametric Block in a Layer¶

Maps: ComboMaps

Maps: ComboMaps¶

Maps: Parametrized Layer

Maps: Parametrized Layer¶

Maps: Mesh2Mesh

Maps: Mesh2Mesh¶

Maps: ComboMaps

Maps: ComboMaps¶

Gravity¶

PF: Gravity: Tiled Inversion Linear

PF: Gravity: Tiled Inversion Linear¶

Magnetics¶

PF: Magnetics: Analytics

PF: Magnetics: Analytics¶

Magnetic inversion on a TreeMesh

Magnetic inversion on a TreeMesh¶

Magnetic Amplitude inversion on a TreeMesh

Magnetic Amplitude inversion on a TreeMesh¶

DC Resistivity and Induced Polarization¶

DC Analytic Dipole

DC Analytic Dipole¶

3D DC inversion of Dipole Dipole array

3D DC inversion of Dipole Dipole array¶

Parametric DC inversion with Dipole Dipole array

Parametric DC inversion with Dipole Dipole array¶

Reading and Plotting data with DC.IO class

Reading and Plotting data with DC.IO class¶

Frequency Domain Electromagnetics¶

Simulation with Analytic FDEM Solutions

Simulation with Analytic FDEM Solutions¶

2D inversion of Loop-Loop EM Data

2D inversion of Loop-Loop EM Data¶

Time Domain Electromagnetics¶

Simulation with Analytic TDEM Solutions

Simulation with Analytic TDEM Solutions¶

Time-domain CSEM for a resistive cube in a deep marine setting

Time-domain CSEM for a resistive cube in a deep marine setting¶

TDEM: Waveforms

TDEM: Waveforms¶

EM: TDEM: 1D: Inversion

EM: TDEM: 1D: Inversion¶

EM: TDEM: 1D: Inversion with VTEM waveform

EM: TDEM: 1D: Inversion with VTEM waveform¶

EM: TDEM: Permeable Target, Inductive Source

EM: TDEM: Permeable Target, Inductive Source¶

Natural Source Electromagnetics¶

MT: 3D: Forward

MT: 3D: Forward¶

Viscous Remanent Magnetization¶

Predict Response from a Conductive and Magnetically Viscous Earth

Predict Response from a Conductive and Magnetically Viscous Earth¶

Method of Equivalent Sources for Removing VRM Responses

Method of Equivalent Sources for Removing VRM Responses¶

Richards Fluid Flow¶

FLOW: Richards: 1D: Forward Simulation

FLOW: Richards: 1D: Forward Simulation¶

FLOW: Richards: 1D: Inversion

FLOW: Richards: 1D: Inversion¶

In Publication¶

Heagy et al., 2017 1D RESOLVE and SkyTEM Bookpurnong Inversions

Heagy et al., 2017 1D RESOLVE and SkyTEM Bookpurnong Inversions¶

Heagy et al., 2017 1D RESOLVE Bookpurnong Inversion

Heagy et al., 2017 1D RESOLVE Bookpurnong Inversion¶

Effective Medium Theory Mapping

Effective Medium Theory Mapping¶

Heagy et al., 2017 Casing Example

Heagy et al., 2017 Casing Example¶

Heagy et al., 2017 1D FDEM and TDEM inversions

Heagy et al., 2017 1D FDEM and TDEM inversions¶

PF: Gravity: Laguna del Maule Bouguer Gravity

PF: Gravity: Laguna del Maule Bouguer Gravity¶

Heagy et al., 2017 Load and Plot Bookpurnong Data

Heagy et al., 2017 Load and Plot Bookpurnong Data¶

FLOW: Richards: 1D: Celia1990

FLOW: Richards: 1D: Celia1990¶

EM: Schenkel and Morrison Casing Model

EM: Schenkel and Morrison Casing Model¶

Straight Ray with Volume Data Misfit Term

Straight Ray with Volume Data Misfit Term¶

FLOW: Vadose: van Genuchten

FLOW: Vadose: van Genuchten¶

Download all examples in Python source code: examples_python.zip

Download all examples in Jupyter notebooks: examples_jupyter.zip

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