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Pressure and shear flow singularities: Fluid splitting and printing nip hydrodynamics

Rieckmann, M. E. ; Brumm, P. ; Sauer, H. M. ; Dörsam, E. ; Kummer, F. (2023)
Pressure and shear flow singularities: Fluid splitting and printing nip hydrodynamics.
In: Physics of Fluids, 35 (3)
doi: 10.1063/5.0139000
Article, Bibliographie

Item Type: Article
Erschienen: 2023
Creators: Rieckmann, M. E. ; Brumm, P. ; Sauer, H. M. ; Dörsam, E. ; Kummer, F.
Type of entry: Bibliographie
Title: Pressure and shear flow singularities: Fluid splitting and printing nip hydrodynamics
Language: English
Date: 28 March 2023
Publisher: AIP Publishing
Journal or Publication Title: Physics of Fluids
Volume of the journal: 35
Issue Number: 3
DOI: 10.1063/5.0139000
Additional Information:

Art.No.: 032120

Divisions: 16 Department of Mechanical Engineering
16 Department of Mechanical Engineering > Institute of Printing Science and Technology (IDD)
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
DFG-Collaborative Research Centres (incl. Transregio) > Collaborative Research Centres > CRC 1194: Interaction between Transport and Wetting Processes > Research Area C: New and Improved Applications
DFG-Collaborative Research Centres (incl. Transregio) > Collaborative Research Centres > CRC 1194: Interaction between Transport and Wetting Processes > Research Area C: New and Improved Applications > C01: Forced Wetting with Hydrodynamic Assist on Gravure Print Cylinders
Date Deposited: 28 Mar 2023 13:32
Last Modified: 13 Jul 2023 13:22
PPN: 509606288
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