Difference between revisions of "Parallelization by Bahram Haddadi"

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[[category:parallelization]]
 
[[category:parallelization]]
 
* '''contributor''': Bahram Haddadi, Clemens Gößnitzer, Jozsef Nagy, Vikram Natarajan, Sylvia Zibuschka, Yitong Chen
 
* '''contributor''': Bahram Haddadi, Clemens Gößnitzer, Jozsef Nagy, Vikram Natarajan, Sylvia Zibuschka, Yitong Chen
* '''affiliation''': Forschungsgruppe Thermische Verfahrenstechnik & Fluiddynamische Simulation am Institut für Verfahrenstechnik der Technischen Universität Wien, Austria
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* '''affiliation''': Institute of Chemical, Environmental and Bioscience Engineering, TU Wien, Austira
 
* '''contact''': <mail address='bahram.haddadi.sisakht@tuwien.ac.at' description='author'>click here for email address</mail>
 
* '''contact''': <mail address='bahram.haddadi.sisakht@tuwien.ac.at' description='author'>click here for email address</mail>
 
* '''OpenFOAM version''': OpenFOAM 5.0 and v1712
 
* '''OpenFOAM version''': OpenFOAM 5.0 and v1712
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* Understanding the difference between incompressible and compressible solvers
 
* Understanding the difference between incompressible and compressible solvers
 
* Understanding parallel processing and different discretization methods
 
* Understanding parallel processing and different discretization methods
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Download pdf [http://cfd.at/downloads/FoamTutV4_9-ExampleNine.pdf here].
  
 
Picture: Bahram Haddadi, TU Wien
 
Picture: Bahram Haddadi, TU Wien

Revision as of 08:01, 30 March 2018

  • contributor: Bahram Haddadi, Clemens Gößnitzer, Jozsef Nagy, Vikram Natarajan, Sylvia Zibuschka, Yitong Chen
  • affiliation: Institute of Chemical, Environmental and Bioscience Engineering, TU Wien, Austira
  • contact: click here for email address
  • OpenFOAM version: OpenFOAM 5.0 and v1712
  • Published under: CC BY-NC-SA license (creative commons licenses)
  • Editorial board: Bahram Haddadi, Christian Jordan, Michael Harasek

Parallel processing

Explanation: Use the compressibleInterFoam solver, simulate the example case for 0.5 s.

Tuvienna9.png

Objectives:

  • Understanding the difference between incompressible and compressible solvers
  • Understanding parallel processing and different discretization methods

Download pdf here.

Picture: Bahram Haddadi, TU Wien