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Researcher
Hannelore Derluyn
- Disciplines:Geomatic engineering, Applied mathematics in specific fields, Other earth sciences, Aquatic sciences, challenges and pollution, Geophysics, Physical geography and environmental geoscience
Affiliations
- Department of Geology (Department)
Member
From1 Oct 2013 → 30 Sep 2016
Projects
1 - 1 of 1
- Multiscale characterization and modeling of crystallization processes in natural building stonesFrom1 Oct 2013 → 30 Sep 2016Funding: BOF - Other initiatives, FWO fellowships
Publications
1 - 10 of 42
- Salinity gradients and salt precipitation due to hydrogen injection in saline aquifers and reservoirs(2023)Number of pages: 1
- Recommendation of RILEM TC 271-ASC : new accelerated test procedure for the assessment of resistance of natural stone and fired-clay brick units against salt crystallization(2023)Published in: MATERIALS AND STRUCTURESISSN: 1871-6873Issue: 5Volume: 56
- A new accelerated laboratory test for the assessment of the durability of materials with respect to salt crystallization(2021)Pages: 55 - 67
- Texture and mineralogy influence on durability : the Macigno sandstone(2017)Published in: QUARTERLY JOURNAL OF ENGINEERING GEOLOGY AND HYDROGEOLOGYISSN: 1470-9236Issue: 4Volume: 50Pages: 393 - 401
- Numerical simulation of salt transport and crystallization in drying Prague sandstone using an experimentally consistent multiphase model(2017)Published in: BUILDING AND ENVIRONMENTISSN: 1873-684XVolume: 123Pages: 289 - 298
- A multi-scale approach for the analysis of the mechanical effects of salt crystallisation in porous media(2017)Published in: INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURESISSN: 1879-2146Volume: 126Pages: 225 - 239
- Freezing rocks : a pore scale study(2016)Pages: 200 - 200
- Comparison of different approaches for self-healing concrete in a large-scale lab test(2016)Published in: CONSTRUCTION AND BUILDING MATERIALSISSN: 0950-0618Volume: 107Pages: 125 - 137
- Quantifying salt crystallization dynamics in sandstone using 4D laboratory X-ray micro-CT(2016)Pages: 83 - 90
- Advancing the visualization of pure water transport in porous materials by fast, talbot interferometry-based multi-contrast x-ray micro-tomography(2016)Volume: 9967Number of pages: 1