SFB 1313 is an interdisciplinary Collaborative Research Centre of the University of Stuttgart, consisting of four major project areas (A-D), divided in 17 individual research projects. It is funded by the German Research Foundation (DFG) and affiliated to the Cluster of Excellence "Data-integrated Simulation Science (SimTech)".

Interfaces have a great impact on multi-field processes (flow, transport and deformation) in porous-media systems. SFB 1313 aims to research these interfaces and to gain a fundamental understanding how they affect multi-field processes. An important step is therefore to quantify how the dynamics of fluid-fluid and fluid-solid interfaces in porous-media systems are affected by pore geometry, heterogeneity and fractures. Furthermore, developing experimental knowledge as well as mathematical and computational models will support SFB 1313‘s research.

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Apr 11, 2025 - DuMux
Veyskarami, Maziar; Bozkurt, Kerem; Buntic, Ivan; Chen, Zhixin; Flemisch, Bernd; Ghosh, Tufan; Gläser, Dennis; Grüninger, Christoph; Heckel, Caroline; Hommel, Johannes; Kaiser, Lars; Keim, Leon; Kelm, Mathis; Kiemle, Stefanie; Koch, Timo; Kohlhaas, Rebecca; Kostelecky, Anna Mareike; Langhans, Vivien; Lipp, David; Ospina De Los Rios, Santiago; Oukili, Hamza; Schneider, Martin; Schollenberger, Theresa; Stadler, Leopold; Utz, Martin; Wang, Yue; Weiß, Fiona; Wendel, Kai; Werner, David; Winter, Roman; Wu, Hanchuan, 2025, "DuMux 3.10.0", https://doi.org/10.18419/DARUS-4975, DaRUS, V2
Release 3.10.0 of DuMux, DUNE for Multi-{Phase, Component, Scale, Physics, ...} flow and transport in porous media. DuMux is a free and open-source simulator for flow and transport processes in and around porous media. It is based on the Distributed and Unified Numerics Environment DUNE.
Apr 11, 2025 - DuMux 3.10.0
Gzip Archive - 66.9 MB - MD5: c30db437388fb6c7629bc6989c5d711d
Apr 11, 2025 - DuMux 3.10.0
Gzip Archive - 4.5 MB - MD5: af950805db76013362abbe4d77b66a15
INF(Universität Stuttgart)
Apr 9, 2025
Apr 7, 2025 - DuMux 3.10.0
Gzip Archive - 38.9 MB - MD5: 101e9e32bc08e58e79ef09a9d9c21452
Mar 24, 2025 - Utrecht University
Müller, Johannes; Yan, Lifei; Raoof, Amir; Weigand, Bernhard, 2025, "Microfluidic experiments on single pore-filling instabilities with varying wettability, capillary number and viscosity ratio", https://doi.org/10.18419/DARUS-4683, DaRUS, V1
Microfluidic experiments performed at the Multi-Scale Porous Media Lab, Environmental Hydrogeology group, Earth Sciences, Utrecht University. Investigation of single pore fillings under three different intrinsic pore wall wettabilities, three flow rates and two viscosity ratios with simultaneous pressure recording. Naming convention for videos *.ti...
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