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Elissa Eggenweiler
Elissa Eggenweiler
Postdoctoral researcher, Institute of Applied Analysis & Numerical Simulation, Stuttgart University
Verifierad e-postadress på ians.uni-stuttgart.de - Startsida
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Unsuitability of the Beavers–Joseph interface condition for filtration problems
E Eggenweiler, I Rybak
Journal of Fluid Mechanics 892, A10, 2020
432020
Permeability estimation of regular porous structures: A benchmark for comparison of methods
A Wagner, E Eggenweiler, F Weinhardt, Z Trivedi, D Krach, C Lohrmann, ...
Transport in porous media 138, 1-23, 2021
382021
Validation and calibration of coupled porous-medium and free-flow problems using pore-scale resolved models
I Rybak, C Schwarzmeier, E Eggenweiler, U Rüde
Computational Geosciences 25, 621-635, 2021
362021
Effective Coupling Conditions for Arbitrary Flows in Stokes--Darcy Systems
E Eggenweiler, I Rybak
Multiscale Modeling & Simulation 19 (2), 731-757, 2021
272021
A modification of the Beavers–Joseph condition for arbitrary flows to the fluid–porous interface
P Strohbeck, E Eggenweiler, I Rybak
Transport in Porous Media 147 (3), 605-628, 2023
92023
A surrogate-assisted uncertainty-aware Bayesian validation framework and its application to coupling free flow and porous-medium flow
F Mohammadi, E Eggenweiler, B Flemisch, S Oladyshkin, I Rybak, ...
Computational Geosciences 27 (4), 663-686, 2023
72023
Analysis of the Stokes–Darcy problem with generalised interface conditions
E Eggenweiler, M Discacciati, I Rybak
ESAIM: Mathematical Modelling and Numerical Analysis 56 (2), 727-742, 2022
32022
Interface conditions for arbitrary flows in Stokes-Darcy systems: derivation, analysis and validation
E Eggenweiler
32022
Interface Conditions for Arbitrary Flows in Coupled Porous-Medium and Free-Flow Systems
E Eggenweiler, I Rybak
Finite Volumes for Complex Applications IX-Methods, Theoretical Aspects …, 2020
12020
Justification of Generalized Interface Conditions for Stokes–Darcy Problems
E Eggenweiler, J Nickl, I Rybak
International Conference on Finite Volumes for Complex Applications, 275-283, 2023
2023
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Artiklar 1–10