Tracer transfer in consolidated porous medium and fractured porous medium: experimentations and modelling
Description
We try to identify and model physical and chemical mechanisms governing the water flow and the solute transport in fractured consolidated porous medium. An original experimental device was built. The 'cube' consists of an idealized fractured medium reproduced by piling up consolidated porous cubes of 5 cm edge. Meanwhile, columns of the homogeneous consolidated porous medium are studied. The same anionic tracing technique is used in both cases. Using a system analysis approach, we inject concentration pulses in the device to obtain breakthrough curves. After identifying the mass balance and the residence time, we fit the CD and the MIM models to the experimental data. The MIM model is able to reproduce experimental curves of the homogeneous consolidated porous medium better than the CD model. The mobile water fraction is in accordance with the porous medium geometry. The study of the flow rate influence highlights an interference dispersion regime. It was not possible to highlight the observation length influence in this case. On the contrary, we highlight the effect of the observation scale on the fractured and porous medium, comparing the results obtained on a small 'cube' and a big 'cube'. The CD model is not satisfactory in this case. Even if the MIM model can fit the experimental breakthrough curves, it was not possible to obtain unique parameters for the set of experiments. (author)
Availability note (English)
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Additional details
Additional titles
- Original title (French)
- Transferts d'un traceur en milieu poreux consolide et en milieu poreux fissure: experimentations et modelisations
Publishing Information
- Imprint Pagination
- 215 p.
- Report number
- FRNC-TH--7300
INIS
- Country of Publication
- France
- Country of Input or Organization
- France
- INIS RN
- 39075108
- Subject category
- S12: MANAGEMENT OF RADIOACTIVE WASTES, AND NON-RADIOACTIVE WASTES FROM NUCLEAR FACILITIES; S11: NUCLEAR FUEL CYCLE AND FUEL MATERIALS; S54: ENVIRONMENTAL SCIENCES;
- Resource subtype / Literary indicator
- Thesis
- Descriptors DEI
- POROSITY; RESEARCH PROGRAMS; UNDERGROUND STORAGE; VALIDATION; WASTE STORAGE
- Descriptors DEC
- MANAGEMENT; STORAGE; TESTING; WASTE MANAGEMENT
Optional Information
- Notes
- 139 refs; Also available from Universite Joseph-Fourier Grenobel-1, 621, avenue Centrale, Domaine universitaire de Saint-Martin-D'Heres/Gieres, BP 53 X, 38041 - Grenoble Cedex 9 (France)