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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61 to 70 of 2,849 Results
Tabular Data - 588 B - 9 Variables, 6 Observations - UNF:6:oQPNjvUQh/x6AYpcvdIJjg==
Data
Sensitivity analysis of simulation outcomes to parameters a (aperture) and t (mean residence time) relative to the base case a2mm_t4min_pC1.0_T20. Experimental calcium concentration (cCa, mg/L) and pH values were derived by averaging the last 20 measurement data points of the experimental time series. The dataset compares these experimental values...
Tabular Data - 611 B - 9 Variables, 6 Observations - UNF:6:no9fu9YBaPLcwIqsVNk7Zw==
Data
Sensitivity analysis of simulation outcomes to parameters a (aperture) and t (mean residence time) relative to the base case a2mm_t6min_pC1.0_T20. Experimental calcium concentration (cCa, mg/L) and pH values were derived by averaging the last 7 measurement data points of the experimental time series. The dataset compares these experimental values a...
Adobe PDF - 20.3 KB - MD5: 54f0da375e11c4dfb0e770de07e5e2c0
PDF figure generated by `plot.py sherwood` showing the Sherwood number (Sh) versus reduced height (hred) for all numerical simulation cases (2 mm and 6 mm apertures, varying residence times and CO2 partial pressures) on a single plot. Shown in figure 8 in associated publication.
JSON - 1.2 KB - MD5: 300054be217d064dcf5c98c0d58a7ae9
Code
JSON configuration file used by the core analysis routines to define plot settings and case parameters.
Adobe PDF - 17.9 KB - MD5: 58fdc3001f96934c058b29343cc4ec4d
PDF figure generated by `plot.py time` illustrating the grid convergence study for the 2 mm aperture, 15 min residence time, 0.5 bar CO₂, and 21 °C case. Not shown in associated publication.
Adobe PDF - 18.0 KB - MD5: 81e28fb4d710a1391586a5141f3020f0
PDF figure generated by `plot.py time` illustrating the grid convergence study for the 2 mm aperture, 15 min residence time, 1.0 bar CO₂, and 22 °C case. Shown in figure A1 (a) in associated publication.
Adobe PDF - 17.6 KB - MD5: e533bc94fbc847caff2e21157f2b55c6
PDF figure generated by `plot.py time` illustrating the grid convergence study for the 2 mm aperture, 6 min residence time, 1.0 bar CO₂, and 20 °C case. Not shown in associated publication.
Adobe PDF - 16.4 KB - MD5: c74290e572bea07dc55f0abc5eddc237
PDF figure generated by `plot.py time` illustrating the grid convergence study for the 6 mm aperture, 10 min residence time, 0.5 bar CO₂, and 21 °C case. Not shown in associated publication.
Adobe PDF - 16.5 KB - MD5: 51b85ab0c3665e9a0e593b8848e3f0ec
PDF figure generated by `plot.py time` illustrating the grid convergence study for the 6 mm aperture, 10 min residence time, 1.0 bar CO₂, and 20 °C case. Not shown in associated publication.
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