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An incompressible immersed boundary solver for moving body flows using a cut cell discontinuous Galerkin method

Krause, Dennis and Kummer, Florian (2017):
An incompressible immersed boundary solver for moving body flows using a cut cell discontinuous Galerkin method.
In: Computers & Fluids, pp. 118-129, 153, ISSN 00457930, DOI: 10.1016/j.compfluid.2017.05.008, [Online-Edition: http://doi.org/10.1016/j.compfluid.2017.05.008],
[Article]

Item Type: Article
Erschienen: 2017
Creators: Krause, Dennis and Kummer, Florian
Title: An incompressible immersed boundary solver for moving body flows using a cut cell discontinuous Galerkin method
Language: English
Journal or Publication Title: Computers & Fluids
Volume: 153
Uncontrolled Keywords: BoSSS
Divisions: 16 Department of Mechanical Engineering
16 Department of Mechanical Engineering > Fluid Dynamics (fdy)
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 > B06: Higher Order Schemes for Direct Numerical Simulation for Wetting and De-Wetting Problems based on Discontinuous Galerkin Methods
Profile Areas
Profile Areas > Thermo-Fluids & Interfaces
Exzellenzinitiative
Exzellenzinitiative > Graduate Schools
Exzellenzinitiative > Graduate Schools > Graduate School of Computational Engineering (CE)
Date Deposited: 16 May 2017 06:40
DOI: 10.1016/j.compfluid.2017.05.008
Official URL: http://doi.org/10.1016/j.compfluid.2017.05.008
Identification Number: doi:10.1016/j.compfluid.2017.05.008
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