Difference between revisions of "Multi-Phase and Free Surface Flows by Kenneth Hoste and Hrvoje Jasak"
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* '''affiliation''': Wikki Ltd and Dept. of Electronics and Information Systems (ELIS) of Ghent University | * '''affiliation''': Wikki Ltd and Dept. of Electronics and Information Systems (ELIS) of Ghent University | ||
* '''contact''': <mail address='kenneth.hoste@ugent.be' description='author'>click here for email address</mail> - <mail address='h.jasak@wikki.co.uk' description='author'>click here for email address</mail> | * '''contact''': <mail address='kenneth.hoste@ugent.be' description='author'>click here for email address</mail> - <mail address='h.jasak@wikki.co.uk' description='author'>click here for email address</mail> | ||
− | * '''OpenFOAM version''': | + | * '''OpenFOAM version''': general OpenFOAM |
* '''published under''': CC BY license ([https://creativecommons.org/licenses creative commons licenses]) | * '''published under''': CC BY license ([https://creativecommons.org/licenses creative commons licenses]) | ||
* '''additional acknowledgements''': | * '''additional acknowledgements''': |
Latest revision as of 06:40, 22 December 2021
- contributor: Hrvoje Jasak and Kenneth Hoste
- affiliation: Wikki Ltd and Dept. of Electronics and Information Systems (ELIS) of Ghent University
- contact: click here for email address - click here for email address
- OpenFOAM version: general OpenFOAM
- published under: CC BY license (creative commons licenses)
- additional acknowledgements:
Go back to Day 9.
Multiphase, free surface flows and rising bubbles
In these videos you will listen to the lecture of Professor Hrvoje Jasak on multiphase, free surface flows as well as rising bubbles in OpenFOAM held at Ghent University in May 2016. The applied version of OpenFOAM here is foam-extend 3.2, but most of the information is relevant for all versions. Feel free to follow the lecture or just sit back, relax and listen to the talk. You will learn about
- multiphase flow modeling
- Eulerian multiphase model
- free surface flow modeling
- free surface tracking
- Lagrangian particle tracking
- liquid film model
The videos can be found here: