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ogstools 0.5.0 documentation - Home ogstools 0.5.0 documentation - Home
  • User Guide
  • Examples
  • API reference
  • Development
  • Release notes
    • Motivation
  • GitLab
  • User Guide
  • Examples
  • API reference
  • Development
  • Release notes
  • Motivation
  • GitLab

Section Navigation

  • Quick start
    • Read mesh from file (vtu or xdmf) into pyvista mesh
    • Stress analysis
  • Pre-processing: preparing the simulation
    • Creating a BHE mesh (Borehole Heat Exchanger)
    • Setting initial properties and variables in bulk meshes
    • Creating meshes from pyvista surfaces
    • Creating meshes from vtu surface files
    • Remeshing with triangle elements
    • Meshing a shapefile
    • Terrain meshing
  • Create and manipulate prj-files
    • How to Create Simple Mechanics Problem
    • How to Manipulate Prj-Files
  • Running the simulation
    • Logparser: Introduction
    • Logparser: Predefined Analyses
    • Logparser: Advanced topics
  • Post-processing: reading and analyzing the data
    • Aggregation of Meshseries Data
    • Calculate differences between meshes
    • Spatial & temporal refinement - nuclear decay
    • Spatial refinement - steady state diffusion
    • Analyzing integration point data
    • Plotting nuclear waste heat over time
    • Plot data of a sampling lines
    • Variable presets and data transformation
  • Plotting the data
    • How to create Animations
    • Aspect ratios
    • Visualizing 2D model data
    • Visualizing 3D model data
    • How to plot data at observation points
    • Shared axes
    • How to Create Time Slices
    • Plotting different process variables on already existing Matplotlib figures / axes
  • Conversion tools
    • Feflowlib: How to get started with the FEFLOW converter.
    • Feflowlib: How to modify boundary conditions after conversion of a FEFLOW model.
    • Feflowlib: How to modify the project-file after converting a FEFLOW model.
    • Workflow: Component-transport model - conversion, simulation, postprocessing
    • Workflow: Hydraulic model - conversion, simulation and post-processing
    • Workflow: Hydro-thermal model - conversion, simulation and post-processing
  • Examples
  • Running the simulation

Running the simulation#

This section covers tools, that can be used to monitor OGS simulations at runtime. Examples about running simulations from Python will be added in the future.

Logparser: Introduction

Logparser: Introduction

Logparser: Predefined Analyses

Logparser: Predefined Analyses

Logparser: Advanced topics

Logparser: Advanced topics

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How to Manipulate Prj-Files

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Logparser: Introduction

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