Project Z02 (Porous Media Lab) provides experimental infrastructure and expertise for studying flow, transport, and deformation in porous media. It supports CRC 1313 with microfluidics and in-situ XRCT, enabling high-resolution, real-time imaging. Key advances include custom micromodels, novel imaging setups, and 4D data tools. Research addressed fracture mechanics, salt precipitation, and carbonate dissolution. Upcoming goals focus on dynamic fatigue tests, spectral XRCT, and tracer-based microfluidic analysis. The lab drives benchmarking and validation efforts across the CRC. Strong collaborations amplify its scientific and technical impact.
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Comma Separated Values - 124.3 KB - MD5: a2c42257be9e1edb12f30f1046c7a8e6
Comma Separated Values - 137.1 KB - MD5: b8479a493959651be1ca92a664e2a02b
Jun 21, 2024 - POREMAPS: Code, Benchmarks, Applications
Krach, David; Ruf, Matthias; Steeb, Holger, 2024, "POREMAPS 1.0.0: Code, Benchmarks, Applications", https://doi.org/10.18419/DARUS-3676, DaRUS, V1
Initial release 1.0.0 for POREMAPS, PORous Media Anisotropic Permeability Solver for Stokes flow including benchmarks and applications according to Krach et al. (2024). POREMAPS is a Finite Difference Method (FDM) -based parallized Stokes flow solver using MPI, specifically designed to process large binarized 3D image datasets of porous media such...
Gzip Archive - 295.7 MB - MD5: 33f370752597896840865f475f86e655
Gzip Archive - 548.7 MB - MD5: ceb6b00fde672fa65e44145d222e3f17
Gzip Archive - 1.3 MB - MD5: d0c18da1f571980c07215c068039e5b3
Apr 18, 2024 - Publication: Microfluidic experiments
Karadimitriou, Nikolaos; Lee, Dongwon; Vahid Dastjerdi, Samaneh; Steeb, Holger, 2024, "Primary drainage experiments and fractal dimensions", https://doi.org/10.18419/DARUS-4114, DaRUS, V1
The current repository contains raw data in the shape of images collected during a systematic laboratory study, examining the usability of the fractal dimension in the characterization of the flow regime. The study is presented in the paper by Karadimitriou et al., 2024. The two fluids were the wetting phase (WP), FluorinertTM, FC-43, and the non-w...
TAR Archive - 279.3 MB - MD5: 83e234d9d149aa5926c31444fd3f455f
Capillary number for the invading phase equal to 10-2. Viscosity ratio between the invading and the defending phase equal to 0.2.
TAR Archive - 1.2 GB - MD5: 4d3a73cded5c324310705d1d470d5fa8
Capillary number for the invading phase equal to 10-2. Viscosity ratio between the invading and the defending phase equal to 10.
TAR Archive - 264.2 MB - MD5: bf1bff3713602a677c826ea502419491
Capillary number for the invading phase equal to 10-2. Viscosity ratio between the invading and the defending phase equal to 1.
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