Difference between revisions of "Code development by Tobias Holzmann"

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* '''OpenFOAM version''':  4.x (all tutorials are updated to 4.x since 23.11.16)
 
* '''OpenFOAM version''':  4.x (all tutorials are updated to 4.x since 23.11.16)
 
* '''published under''': GPL v3 license  
 
* '''published under''': GPL v3 license  
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Go back to [https://wiki.openfoam.com/Programming Programming].
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Go back to [https://wiki.openfoam.com/Day_12 Day 12].
  
 
=[http://www.holzmann-cfd.de/index.php/en/5-programming Code Development]=
 
=[http://www.holzmann-cfd.de/index.php/en/5-programming Code Development]=

Revision as of 09:23, 20 July 2017

  • contributor: Tobias Holzmann
  • affiliation: Holzmann CFD
  • contact: click here for email address
  • OpenFOAM version: 4.x (all tutorials are updated to 4.x since 23.11.16)
  • published under: GPL v3 license

Go back to Programming.

Go back to Day 12.

Code Development

These screencasts will help you learn hot to develop a custom code in OpenFOAM.

5.1 Basic Information

  • General information about compiling and the programming environment

5.2 Preparing your System

  • General information about the new screencasts itself
  • Compiling OpenFOAM in debug mode
  • Building your own Doxygen project

5.3 Preparing the new Solver

  • Starting a new solver with an already existing one
  • Analyse the direction tree
  • The Make folder
  • Source and header files
  • Analyse the particular files that has to be changed

5.4 Analyzing the Code

  • Analyzing the source files
  • Discussion about some special and common header files
  • Analyzing header files
  • Using Doxygen the first time

5.5 Advanced Code Analyze

  • Analyzing the code and what it is doing
  • Going into the code in more detail
  • Using Doxygen

5.6 Building the new Solver

  • Creating new quantity fields
  • Building matrix systems
  • Solving matrix systems
  • Relaxing matrix systems
  • Relaxing fields
  • Implementing new functions
  • Building new libraries
  • Update libraries
  • The Roche-Magnus-Formulation
  • Temperature depended saturation pressure
  • Doxygen