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An extended volume of fluid method and its application to single bubbles rising in a viscoelastic liquid

Niethammer, Matthias ; Brenn, Günter ; Marschall, Holger ; Bothe, Dieter (2019)
An extended volume of fluid method and its application to single bubbles rising in a viscoelastic liquid.
In: Journal of Computational Physics, 387
doi: 10.1016/j.jcp.2019.02.021
Article, Bibliographie

Item Type: Article
Erschienen: 2019
Creators: Niethammer, Matthias ; Brenn, Günter ; Marschall, Holger ; Bothe, Dieter
Type of entry: Bibliographie
Title: An extended volume of fluid method and its application to single bubbles rising in a viscoelastic liquid
Language: German
Date: 2019
Journal or Publication Title: Journal of Computational Physics
Volume of the journal: 387
DOI: 10.1016/j.jcp.2019.02.021
URL / URN: https://doi.org/10.1016/j.jcp.2019.02.021
Divisions: DFG-Collaborative Research Centres (incl. Transregio)
DFG-Collaborative Research Centres (incl. Transregio) > Collaborative Research Centres
DFG-Collaborative Research Centres (incl. Transregio) > Collaborative Research Centres > CRC 1194: Interaction between Transport and Wetting Processes
DFG-Collaborative Research Centres (incl. Transregio) > Collaborative Research Centres > CRC 1194: Interaction between Transport and Wetting Processes > Research Area B: Modeling and Simulation
DFG-Collaborative Research Centres (incl. Transregio) > Collaborative Research Centres > CRC 1194: Interaction between Transport and Wetting Processes > Research Area B: Modeling and Simulation > B01: Modelling and VOF based Simulation of the Multiphysics of Irreversible Thermodynamic Transfer Processes at Dynamic Contact Lines
Profile Areas
Profile Areas > Thermo-Fluids & Interfaces
04 Department of Mathematics
04 Department of Mathematics > Analysis
04 Department of Mathematics > Analysis > Mathematical Modeling and Analysis
04 Department of Mathematics > Mathematical Modelling and Analysis
Date Deposited: 29 May 2019 07:28
Last Modified: 07 Feb 2024 11:55
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