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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501 to 510 of 2,815 Results
Comma Separated Values - 22.0 KB - MD5: 231dd05549ef62ca6db460879603863f
Oscillatory deformation in three stages: (i) 0.1\% strain amplitude, 0.1 Hz (5 mins) (ii) 20\% strain amplitude, 1 Hz (3 mins) (iii) 0.1\% strain amplitude, 0.1 Hz (22 mins) (Fig. 2c)
Comma Separated Values - 10.5 KB - MD5: 11c0f4f8a5608380fd77c2224195a077
Oscillatory deformation in three stages: (i) 0.1\% strain amplitude, 0.1 Hz, 23 °C (5 mins) (ii) 20\% strain amplitude, 1 Hz, 23 °C (3 mins) (iii) 0.1\% strain amplitude, 0.1 Hz, 37 °C (22 mins) (Fig. 2d)
Comma Separated Values - 13.6 KB - MD5: 38cfcc5e7a8ce3266be6fc8c08e663bd
Rotational shear stress was applied in steps of (i) 0 Pa (ii) 100 Pa (iii) 0 Pa (iv) 500 Pa (v) 0 Pa (vi) 2000 Pa (vii) 0 Pa, of one minute each, to evaluate creep behaviour. (Fig. 3a)
Comma Separated Values - 13.7 KB - MD5: 8df10ee0d241e3c0dc7691027a46066f
Rotational shear strain was applied in steps of (i) 0\% (ii) 1\% (iii) 0\%, of two minutes each. (Fig. 3b)
Comma Separated Values - 12.8 KB - MD5: 51ab666159b6260f569baf2f3e5f7c2f
Rotational shear strain was applied in steps of (i) 0\% (ii) 100\% (iii) 0\%, of two minutes each. (Fig. 3b)
Comma Separated Values - 10.6 KB - MD5: 1f038eae89de2e048231fbce416e37b5
Amplitude sweep test, where the strain amplitude was gradually increased from 0.01\% to 1000\%. The test was done at 1 Hz frequency (Fig. 3c, 3d)
Comma Separated Values - 19.9 KB - MD5: 2148cf17656ea3d56bbc388547e5ec03
Amplitude sweep test, where the strain amplitude was gradually increased from 0.01\% to 1000\%. The test was done at 1 Hz frequency (Fig. 3c, 3d)
Comma Separated Values - 59.2 KB - MD5: 764145a3c548242cca5883063f9a3e9d
Amplitude sweep test, where the strain amplitude was gradually increased from 0.01\% to 1000\%. The test was done at 1 Hz frequency (Fig. 3c, 3d)
Comma Separated Values - 11.7 KB - MD5: 8626ce51a7bd7f86ce042e5d31a78b72
Frequency sweep test, where the frequency was gradually increased from 0.1 Hz to 100 Hz at 200% strain amplitude (Fig. 5)
Comma Separated Values - 13.5 KB - MD5: 041b7244787dfc3a4636d56b79c0b09a
Frequency sweep test, where the frequency was gradually increased from 0.1 Hz to 100 Hz at 0.01% strain amplitude (Fig. 3e, 3f)
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