Deep low-permeability clay layers are considered as possible suitable environments for disposal of high-level radioactive waste. In Belgium, the Boom Clay is the reference host formation and the Ieper Clay an alternative host formation for research and safety and feasibility assessment of deep disposal of nuclear waste. In this study, two hydrogeological models are built to calculate the radionuclide fluxes that would migrate from a potential repository through these two clay formations. Transport parameters heterogeneity is incorporated in the models using stochastic sequential simulation of hydraulic conductivity, diffusion coefficient and diffusion accessible porosity, using primary information and several types of secondary information,...
Clay mineral-rich sedimentary formations are currently under investigation to evaluate their potenti...
The paper describes deterministic simulation of radionuclide migration in the deep geological dispos...
International audienceThis paper presents 3D saturated flow and transport calculations performed usi...
Deep low-permeability clay layers are considered as suitable environments for disposal of high-level...
Deep low-permeability clay layers are considered as safe environments for disposal of high-level rad...
peer reviewedMost studies that incorporate subsurface heterogeneity in groundwater flow and transpor...
In Belgium, the Boom Clay is being considered as a potential host formation for the disposal of nucl...
peer reviewedaudience: researcher, professionalMost studies that incorporate subsurface heterogeneit...
High-level waste can be radiotoxic for thousands of years and should be carefully handled to prevent...
audience: researcher, professionalIn the North of Belgium the Boom Clay Formation, at a depth of 200...
International audienceIn the context of high level radioactive waste deep geological disposal safety...
peer reviewedUnderstanding flow and transport in low-permeability media is very important in the con...
The Dutch national research programme into the feasibility of retrievable storage of radioactive was...
Clay/shale has been considered as potential host rock for geological disposal of high-level radioact...
Radionuclide migration in clay-rich formations is typically dominated by diffusion considering the l...
Clay mineral-rich sedimentary formations are currently under investigation to evaluate their potenti...
The paper describes deterministic simulation of radionuclide migration in the deep geological dispos...
International audienceThis paper presents 3D saturated flow and transport calculations performed usi...
Deep low-permeability clay layers are considered as suitable environments for disposal of high-level...
Deep low-permeability clay layers are considered as safe environments for disposal of high-level rad...
peer reviewedMost studies that incorporate subsurface heterogeneity in groundwater flow and transpor...
In Belgium, the Boom Clay is being considered as a potential host formation for the disposal of nucl...
peer reviewedaudience: researcher, professionalMost studies that incorporate subsurface heterogeneit...
High-level waste can be radiotoxic for thousands of years and should be carefully handled to prevent...
audience: researcher, professionalIn the North of Belgium the Boom Clay Formation, at a depth of 200...
International audienceIn the context of high level radioactive waste deep geological disposal safety...
peer reviewedUnderstanding flow and transport in low-permeability media is very important in the con...
The Dutch national research programme into the feasibility of retrievable storage of radioactive was...
Clay/shale has been considered as potential host rock for geological disposal of high-level radioact...
Radionuclide migration in clay-rich formations is typically dominated by diffusion considering the l...
Clay mineral-rich sedimentary formations are currently under investigation to evaluate their potenti...
The paper describes deterministic simulation of radionuclide migration in the deep geological dispos...
International audienceThis paper presents 3D saturated flow and transport calculations performed usi...