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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151 to 160 of 2,849 Results
MS Excel Spreadsheet - 477.3 KB - MD5: 5438f6b42fcfb213747e738c953e6594
This file contains the permeability measurement data for experiment EICP-1, organized by injection cycle. For each cycle, stepwise flow rates (mL s⁻¹) and the corresponding measured pressure drops (mbar) are reported. Permeability was determined from the linear relationship between pressure drop and flow rate according to Darcy’s law. The dataset e...
MS Excel Spreadsheet - 8.8 MB - MD5: 96b266903ff94fa25b1d6d2ed2f2370c
This file contains the raw injection data for experiment EICP-2, organized per injection cycle. For each cycle, time-resolved measurements of flow rate (mL s⁻¹) and inlet pressure (mbar) are provided. The dataset documents the evolution during treatment, including pressure buildup.
MS Excel Spreadsheet - 1.7 MB - MD5: f96c96c2f23267281e739077ed786dbd
This file contains the permeability measurement data for experiment EICP-2, organized by injection cycle. For each cycle, stepwise flow rates (mL s⁻¹) and the corresponding measured pressure drops (mbar) are reported. Permeability was determined from the linear relationship between pressure drop and flow rate according to Darcy’s law. The dataset e...
MS Excel Spreadsheet - 1.0 MB - MD5: e9e0f7c570edd54ab16972f45896ce3f
This file contains the raw injection data for experiment EICP-3, organized per injection cycle. For each cycle, time-resolved measurements of flow rate (mL s⁻¹) and inlet pressure (mbar) are provided. The dataset documents the evolution during treatment, including pressure buildup.
MS Excel Spreadsheet - 483.2 KB - MD5: e4597204d4da4859d8d3c0e12d33a1ae
This file contains the permeability measurement data for experiment EICP-1, organized by injection cycle. For each cycle, stepwise flow rates (mL s⁻¹) and the corresponding measured pressure drops (mbar) are reported. Permeability was determined from the linear relationship between pressure drop and flow rate according to Darcy’s law. The dataset e...
ZIP Archive - 4.3 GB - MD5: db2008351073c832c0f5b2f3055e3b4e
This dataset contains the raw MRI scan data acquired for all three EICP experiments. The dataset includes T₁ and T₂ relaxation scans as well as water content scans acquired in both vertical and horizontal orientations. An accompanying Excel file (“MRI scans”) lists the scan type and the corresponding file numbers for each measurement
Adobe PDF - 192.3 KB - MD5: 71cf73121103c4b0be1c26ae003a9adc
This file includes the information regarding this data set, please read first.
MS Excel Spreadsheet - 110.8 KB - MD5: 053387e72b31e228d38819b159e60461
This file contains representative elementary volume (REV)-scale parameters derived from co-registered XRCT and MRI datasets for all EICP experiments. For each axial REV segment, the dataset includes XRCT-derived structural metrics (porosity, tortuosity, surface-to-volume ratio) and MRI-derived parameters (volumetric water content, T₁, and T₂ relaxa...
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