The geological basis and the representation of spatial variability in fractured media
Creators
- 1. Bern Univ. (Switzerland)
- 2. NAGRA, Wettingen (Switzerland)
Description
Spatial variability of features and parameters relevant for contaminant transport modelling occurs on all scales of interest for the quantification of processes that govern solute migration, typically decimeters to hundreds of meters. Two types of spatial variability are distinguished, namely the internal heterogeneity of each individual water-conducting feature (e.g. the complex architecture of a fault) and the larger-scale heterogeneity that results from the groundwater flow through different types of water-conducting features along the flow-path from the repository to the discharge areas. An up-scaling procedure is required to obtain hydraulic parameters and the properties of the overall flow-path, whereas the heterogeneity of many other geologic features (geometry of flow and matrix porosity, mineralogy, etc.) can be fed directly into coupled codes that quantify radionuclide transport. The procedures needed to derive conceptual models integrating geological and hydraulic field measurements and observations at a given site are illustrated by examples from both crystalline and sedimentary rock formations. (author)
Additional details
Publishing Information
- Publisher
- OECD
- Imprint Place
- Paris (France)
- ISBN
- 92-64-16099-X
- Imprint Title
- Modelling the effects of spatial variability on radionuclide migration
- Imprint Pagination
- [355 p.]
- Journal Page Range
- p. 101-112
Conference
- Title
- Basis for modelling the effects of spatial variability on radionuclide migration
- Dates
- 9-11 Jun 1997
- Place
- Paris (France)
INIS
- Country of Publication
- France
- Country of Input or Organization
- Nuclear Energy Agency of the OECD (NEA)
- INIS RN
- 29067485
- Subject category
- S58: GEOSCIENCES;
- Resource subtype / Literary indicator
- Conference
- Descriptors DEI
- FLOW MODELS; GEOLOGIC FRACTURES; GEOLOGIC MODELS; GROUND WATER; HYDRAULIC FRACTURES; IGNEOUS ROCKS; RADIONUCLIDE MIGRATION; SPATIAL DISTRIBUTION; UNDERGROUND DISPOSAL
- Descriptors DEC
- DISTRIBUTION; ENVIRONMENTAL TRANSPORT; FAILURES; FRACTURES; GEOLOGIC STRUCTURES; HYDROGEN COMPOUNDS; MANAGEMENT; MASS TRANSFER; MATHEMATICAL MODELS; OXYGEN COMPOUNDS; ROCKS; WASTE DISPOSAL; WASTE MANAGEMENT; WATER
Optional Information
- Notes
- 11 refs.