Publications

I. Kröker, S. Oladyshkin, and I. Rybak. Global sensitivity analysis using multi-resolution polynomial chaos expansion for coupled Stokes-Darcy flow problems. Comput. Geosci., 2023. [PUMA: imported flupor from:brittalenz am vorlaeufig ians]

Samuel Burbulla, Maximilian Hörl, and Christian Rohde. Flow in Porous Media with Fractures of Varying Aperture. SIAM J. Sci. Comput, (45)4:A1519-A1544, 2023. [PUMA: imported PN1 SFB1313 Simtech 390740016 from:brittalenz EXC2075 am updated vorlaeufig ians] URL

F. Mohammadi, E. Eggenweiler, B. Flemisch, S. Oladyshkin, I. Rybak, M. Schneider, and K. Weishaupt. A Surrogate-Assisted Uncertainty-Aware Bayesian Validation Framework and its Application to Coupling Free Flow and Porous-Medium Flow. Comput. Geosci., 2023. [PUMA: imported am vorlaeufig ians]

I. Kröker, S. Oladyshkin, and I. Rybak. Global sensitivity analysis using multi-resolution polynomial chaos expansion for coupled Stokes-Darcy flow problems. Comput. Geosci. (submitted), 2022. [PUMA: imported vorlaeufig ians]

Lars von Wolff, and Iuliu Sorin Pop. Upscaling of a Cahn–Hilliard Navier–Stokes model with precipitation and dissolution in a thin strip. Journal of Fluid Mechanics, (941):A49--, Cambridge University Press, 2022. [PUMA: imported from:brittalenz vorlaeufig ians] URL

E. Eggenweiler, M. Discacciati, and I. Rybak. Analysis of the Stokes-Darcy problem with generalised interface conditions. ESAIM Math. Model. Numer. Anal., (56):727-742, 2022. [PUMA: imported from:mathematik vorlaeufig ians]

E. Eggenweiler, M. Discacciati, and I. Rybak. Analysis of the Stokes-Darcy problem with generalised interface conditions. ESAIM Math. Model. Numer. Anal., (56):727-742, 2022. [PUMA: imported vorlaeufig ians]

Samuel Burbulla, Andreas Dedner, Maximilian Hörl, and Christian Rohde. Dune-MMesh: The Dune Grid Module for Moving Interfaces. J. Open Source Softw., (7)74:3959, The Open Journal, 2022. [PUMA: imported from:brittalenz am vorlaeufig ians] URL

Samuel Burbulla, and Christian Rohde. A finite-volume moving-mesh method for two-phase flow in fracturing porous media. J. Comput. Phys., 111031, 2022. [PUMA: imported vorlaeufig ians] URL

Jim Magiera, and Christian Rohde. Analysis and Numerics of Sharp and Diffuse Interface Models for Droplet Dynamics. In Kathrin Schulte, Cameron Tropea, and Bernhard Weigand (Eds.), Droplet Dynamics under Extreme Ambient Conditions, Springer International Publishing, 2022. [PUMA: imported vorlaeufig ians from:sylviazur] URL

F. Massa, L. Ostrowski, F. Bassi, and C. Rohde. An artificial Equation of State based Riemann solver for a discontinuous Galerkin discretization of the incompressible Navier–Stokes equations. J. Comput. Phys., 110705, 2022. [PUMA: imported vorlaeufig ians from:sylviazur] URL

Jim Magiera, and Christian Rohde. A Molecular--Continuum Multiscale Model for Inviscid Liquid--Vapor Flow with Sharp Interfaces. arXiv e-prints, 2022. [PUMA: imported myown vor:mathematik vorlaeufig ians] URL

E. Eggenweiler, M. Discacciati, and I. Rybak. Analysis of the Stokes-Darcy problem with generalised interface conditions. ESAIM Math. Model. Numer. Anal., 2022. [PUMA: imported vorlaeufig ians]

Samuel Burbulla, and Christian Rohde. A finite-volume moving-mesh method for two-phase flow in fracturing porous media. Journal of Computational Physics, 111031, 2022. [PUMA: imported from:brittalenz vorlaeufig ians] URL

Samuel Burbulla, Andreas Dedner, Maximilian Hörl, and Christian Rohde. Dune-MMesh: The Dune Grid Module for Moving Interfaces. J. Open Source Softw., (7)74:3959, The Open Journal, 2022. [PUMA: imported vorlaeufig ians] URL

Lars Von Wolff, and Iuliu Sorin Pop. Upscaling of a Cahn–Hilliard Navier–Stokes model with precipitation and dissolution in a thin strip. Journal of Fluid Mechanics, (941):A49--, Cambridge University Press, 2022. [PUMA: imported from:brittalenz vorlaeufig ians] URL

Lars von Wolff, and Iuliu Sorin Pop. Upscaling of a Cahn–Hilliard Navier–Stokes model with precipitation and dissolution in a thin strip. Journal of Fluid Mechanics, (941):A49--, Cambridge University Press, 2022. [PUMA: imported vorlaeufig ians] URL

Lars von Wolff, Felix Weinhardt, Holger Class, Johannes Hommel, and Christian Rohde. Investigation of Crystal Growth in Enzymatically Induced Calcite Precipitation by Micro-Fluidic Experimental Methods and Comparison with Mathematical Modeling. Transport in Porous Media, (137)2:327--343, Mar 1, 2021. [PUMA: imported from:brittalenz vorlaeufig ians] URL

Lars Von Wolff, Felix Weinhardt, Holger Class, Johannes Hommel, and Christian Rohde. Investigation of Crystal Growth in Enzymatically Induced Calcite Precipitation by Micro-Fluidic Experimental Methods and Comparison with Mathematical Modeling. Transport in Porous Media, (137)2:327--343, Mar 1, 2021. [PUMA: imported from:brittalenz vorlaeufig ians] URL

Lars von Wolff, Felix Weinhardt, Holger Class, Johannes Hommel, and Christian Rohde. Investigation of Crystal Growth in Enzymatically Induced Calcite Precipitation by Micro-Fluidic Experimental Methods and Comparison with Mathematical Modeling. Transport in Porous Media, (137)2:327--343, Mar 1, 2021. [PUMA: imported vorlaeufig ians] URL