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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191 to 200 of 269 Results
Gzip Archive - 21.1 GB - MD5: 016ef6d79be198d1f85742efed861115
Reconstructed micro-XRCT data set in 16 bit *.tif file format of the entire specimen. 2940x2940x2139 voxels with a uniform voxel size of 6.0 µm. (internal ID: 20200122_01/reconstructed)
Gzip Archive - 602.6 MB - MD5: 73582e0c26b7a6fd864b2a97bf6adbe8
Binarized images of the probabilities into glass beads, precipitated calcium carbonate, and pore space, as well as precipitated calcium carbonate and pore space (= initial pore space), each in a subfolder. In 8 bit *.png file format. 2682x2682x1340 voxels with a uniform voxel size of 2.2 µm.
Jul 11, 2022 - Publication: Enzymatically induced carbonate precipitation
Ruf, Matthias; Hommel, Johannes; Steeb, Holger, 2022, "Enzymatically induced carbonate precipitation and its effect on capillary pressure-saturation relations of porous media - micro-XRCT dataset of medium column (sample 3)", https://doi.org/10.18419/DARUS-2906, DaRUS, V1, UNF:6:jlP3pZtBY1BpGYRex5PnqA== [fileUNF]
This dataset contains a micro X-ray Computed Tomography (micro-XRCT) data set (projection, reconstructed, and segmented images) from a sintered glass beads column packing with enzymatically induced carbonate precipitation. The prepared sintered glass beads column sample has a diameter of about 5 mm and a length of 10 mm. It consists of glass beads...
Tabular Data - 388.6 KB - 5 Variables, 7574 Observations - UNF:6:jlP3pZtBY1BpGYRex5PnqA==
Log file of the applied injections and the recorded pressure with time stamps.
Gzip Archive - 18.1 GB - MD5: 88867368438b0a8a75fe75103fb30792
ilastik output: probabilities of phase identifiactions: red = glass beads, blue = precipitated calcium carbonate, green = pore space. In 24 bit *.png file format. 2680x2680x2141 voxels with a uniform voxel size of 1.9 µm.
Gzip Archive - 17.1 GB - MD5: 3b9bec4bef3b09ad1573a4d07f28a3e8
Projection images (360 deg, angle increment 0.20 deg), dark image (di) and open beam image (ob) in 16 bit *.tif file format. (internal ID: 20201218_01/projections)
Gzip Archive - 22.8 GB - MD5: 80deea8fc4472d3b285e8511681048f2
Reconstructed micro-XRCT data set in 16 bit *.tif file format. 2940x2940x2141 voxels with a uniform voxel size of 1.9 µm. (internal ID: 20201218_01/reconstructed)
Gzip Archive - 686.8 MB - MD5: 3d8268d3f0d6560959f155eef17a7cc5
Binarized images of the probabilities into glass beads, precipitated calcium carbonate, and pore space, as well as precipitated calcium carbonate and pore space (= initial pore space), each in a subfolder. In 8 bit *.png file format. 2682x2682x1340 voxels with a uniform voxel size of 1.9 µm.
Gzip Archive - 29.3 KB - MD5: 40d52c37792209dbc7c9e4a92e3adc9b
0.12 ml/min for the wetting phase, corresponding to a capillary number of 1.149e-4. Both pressure and flux were measured every 0.1 seconds.
Gzip Archive - 80.6 KB - MD5: 84363e9a87399100b17c13b58b5a76fb
0.015 ml/min for the wetting phase, corresponding to a capillary number of 1.437e-5. Both pressure and flux were measured every 0.1 seconds.
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