11 to 20 of 682 Results
Sep 10, 2026 - Publication: Ultra High Performance Concrete (UHPC)
Ruf, Matthias; Madadi, Hamid; Steeb, Holger, 2026, "micro-XRCT data set of the final failure of a Berea sandstone core after high-frequency fatigue testing with 50 Hz", https://doi.org/10.18419/DARUS-4420, DaRUS, V1
The dataset contains micro X-ray computed tomography (micro-XRCT) data from a cylindrical Berea sandstone specimen subjected to high-frequency fatigue testing. The specimen had a diameter of 12 mm and a length of 30 mm. The fatigue test associated with the micro-XRCT measurements was performed at a loading frequency of 50 Hz. The compressive streng... |
Sep 10, 2026 -
micro-XRCT data set of the final failure of a Berea sandstone core after high-frequency fatigue testing with 50 Hz
Gzip Archive - 7.4 GB -
MD5: 2683455eba548b968a33abfcfd184c89
|
Sep 10, 2026 -
micro-XRCT data set of the final failure of a Berea sandstone core after high-frequency fatigue testing with 50 Hz
Gzip Archive - 18.4 GB -
MD5: a968f5c14151d1ae3e1bf9746d474e76
Projection images (360 deg, angle increment 0.2 deg), dark image (di) and open beam image (ob) in 16 bit *.tif file format. (internal ID: 20240515_01) |
Sep 10, 2026 -
micro-XRCT data set of the final failure of a Berea sandstone core after high-frequency fatigue testing with 50 Hz
Gzip Archive - 22.7 GB -
MD5: a2bc339815e263f5e534a0332befd934
Reconstructed micro-XRCT data set in 16 bit *.tif file format. 2940x2940x2141 voxels with a uniform voxel size of 4.2 µm. (internal ID: 20240515_01) |
Sep 10, 2026 - Publication: OpenFOAM-based numerical simulation of flow in porous media
Wang, Mingfeng; Karadimitriou, Nikolaos; Steeb, Holger, 2026, "Data for: The Role of Pore-Scale Geometry in Immiscible Displacement: A Numerical Comparison Between Chemical and Mechanical Erosion", https://doi.org/10.18419/DARUS-6435, DaRUS, V1
1. Introduction Fluid flow through porous media can alter the void space geometry theough chemical erosion, which dissolves and then shrinks solid grains, or mechanical erosion, which remove solid grains. The impacts of these distinct erosion mechanisms on two-phase flow behavior remain poorly understood, despite their broad relevance to subsurface... |
Sep 10, 2026 -
Data for: The Role of Pore-Scale Geometry in Immiscible Displacement: A Numerical Comparison Between Chemical and Mechanical Erosion
TAR Archive - 443.9 MB -
MD5: 335728bda63ea4dd75e3011236c1d7fb
|
Sep 10, 2026 -
Data for: The Role of Pore-Scale Geometry in Immiscible Displacement: A Numerical Comparison Between Chemical and Mechanical Erosion
TAR Archive - 234.9 MB -
MD5: 19fc30eb58d2c3d9fb2b6f1a52406de7
|
May 18, 2026 - Publication: OpenFOAM-based numerical simulation of flow in porous media
Wang, Mingfeng; Karadimitriou, Nikolaos; Steeb, Holger, 2026, "Data for: Pore-scale study of fluid-fluid interfacial area during primary drainage in porous media", https://doi.org/10.18419/DARUS-5952, DaRUS, V1
1. Introduction Fluid-fluid interfacial area plays an important role in many practical applications related to two-phase flow and mass transfer, such as enhanced oil recovery, CO2 sequestration, and groundwater contamination by non-aqueous phase liquids (NAPLs). This repository presents a reference workflow to investigate the influence of displacem... |
May 18, 2026 -
Data for: Pore-scale study of fluid-fluid interfacial area during primary drainage in porous media
Gzip Archive - 114.6 MB -
MD5: 4ed136cd084f06598fcbeb6c3638cb2f
|
May 18, 2026 -
Data for: Pore-scale study of fluid-fluid interfacial area during primary drainage in porous media
Gzip Archive - 6.6 MB -
MD5: f5bbf85c6ff2aefb1175b927528c726c
|
