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The European Physical Journal. E, Soft Matter
|
January 26, 2018
Pressure-driven growth in strongly heterogeneous systems
P Grassia
Proceedings. Mathematical, Physical, and Engineering Sciences
|
July 11, 2022
Analysis of a model for surfactant transport around a foam meniscus
P Grassia
Proceedings. Mathematical, Physical, and Engineering Sciences
|
January 7, 2021
Modelling foam improved oil recovery: towards a formulation of pressure-driven growth with flow reversal
M Eneotu, P Grassia
Proceedings. Mathematical, Physical, and Engineering Sciences
|
February 17, 2022
Viscous froth model applied to the motion and topological transformations of two-dimensional bubbles in a channel: three-bubble case
C Torres-Ulloa, P Grassia
The European Physical Journal. E, Soft Matter
|
July 26, 2012
Relaxation of the topological T1 process in a two-dimensional foam
P Grassia, C Oguey, R Satomi
Proceedings. Mathematical, Physical, and Engineering Sciences
|
January 4, 2019
Foam-liquid front motion in Eulerian coordinates
C Torres-Ulloa, S Berres, P Grassia
The European Physical Journal. E, Soft Matter
|
March 12, 2004
Foam drainage on a sloping weir
P Grassia, S J Neethling, J J Cilliers
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics
|
February 7, 2007
Viscous froth lens
T E Green, A Bramley, L Lue, et al.
The European Physical Journal. E, Soft Matter
|
February 13, 2008
A foam film propagating in a confined geometry: analysis via the viscous froth model
P Grassia, G Montes-Atenas, L Lue, et al.
The European Physical Journal. E, Soft Matter
|
April 20, 2016
Foam front propagation in anisotropic oil reservoirs
P Grassia, C Torres-Ulloa, S Berres, et al.
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Search research articles
Search
Showing results (1-10 of 17) with videos related to
Sort By:
Page
of 2
The European Physical Journal. E, Soft Matter
|
January 26, 2018
Pressure-driven growth in strongly heterogeneous systems
P Grassia
Proceedings. Mathematical, Physical, and Engineering Sciences
|
July 11, 2022
Analysis of a model for surfactant transport around a foam meniscus
P Grassia
Proceedings. Mathematical, Physical, and Engineering Sciences
|
January 7, 2021
Modelling foam improved oil recovery: towards a formulation of pressure-driven growth with flow reversal
M Eneotu, P Grassia
Proceedings. Mathematical, Physical, and Engineering Sciences
|
February 17, 2022
Viscous froth model applied to the motion and topological transformations of two-dimensional bubbles in a channel: three-bubble case
C Torres-Ulloa, P Grassia
The European Physical Journal. E, Soft Matter
|
July 26, 2012
Relaxation of the topological T1 process in a two-dimensional foam
P Grassia, C Oguey, R Satomi
Proceedings. Mathematical, Physical, and Engineering Sciences
|
January 4, 2019
Foam-liquid front motion in Eulerian coordinates
C Torres-Ulloa, S Berres, P Grassia
The European Physical Journal. E, Soft Matter
|
March 12, 2004
Foam drainage on a sloping weir
P Grassia, S J Neethling, J J Cilliers
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics
|
February 7, 2007
Viscous froth lens
T E Green, A Bramley, L Lue, et al.
The European Physical Journal. E, Soft Matter
|
February 13, 2008
A foam film propagating in a confined geometry: analysis via the viscous froth model
P Grassia, G Montes-Atenas, L Lue, et al.
The European Physical Journal. E, Soft Matter
|
April 20, 2016
Foam front propagation in anisotropic oil reservoirs
P Grassia, C Torres-Ulloa, S Berres, et al.
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of 2