HR: 0800h
AN: H31B-0370 [Abstracts]
TI: Effects of Micro-Heterogeneities on Laboratory-Scale Pc-Kr-S Relationships
AU: Das, D
EM: diganta.das@engineering-science.oxford.ac.uk
AF: The University of Oxford, Department of Engineering Science
The University of Oxford
Oxford, Oxford, OX13PJ
United Kingdom
AU: Hassanizadeh, M
EM: Hassanizadeh@geo.uu.nl
AF: Utrecht University, Department of Earth Sciences
Utrecht University
Budapestlaan 4
P.O. Box 80021
3508 TA
UTRECHT
The Netherlands, Utrecht, 3508 TA
Netherlands
AU: * Rotter, B
EM: Ben.Rotter@ed.ac.uk
AF: The University of Edinburgh, Institute for Infrastructure and the Environment
The University of Edinburgh
Alexander Graham Bell Building
The Kings Buildings
, Edinburgh, EH93JL
United Kingdom
AU: Ataie-Ashtiani, B
EM: Ataie@sharif.edu
AF: Sharif University of Technology, Department of Civil Engineering
Sharif University of Technology
P.O.Box 11365-9313, Tehran, x
Iran (Islamic Republic of)
AB:
Commonly, capillary pressure-saturation-relative permeability (Pc-S-Kr) relationships
are obtained by means of laboratory experiments carried out on soil samples that are up to 10-12 cm
long. In obtaining these relationships, it is implicitly assumed that the soil sample is homogeneous.
However, it is well known that even at such scales, some micro-heterogeneities may exist. These
heterogeneous regions will have distinct multiphase flow properties and will affect the saturation and
distribution of wetting and non-wetting phases within the soil sample. This, in turn, may affect
the measured two-phase flow relationships. In the present work, numerical simulations have been
carried out to investigate how the variations in type, quantity, and distribution of sub-sample scale
heterogeneities affect Pc-S-Kr relationships for dense non-aqueous phase liquid (DNAPL) and water
flow. Fourteen combinations of sand types and heterogeneous patterns have been defined. These
include binary combinations of coarse sand imbedded in fine sand and vice versa. The domain
size is chosen such that it represents typical laboratory samples used in the measurements of Pc-S-Kr
curves. Upscaled drainage and imbibition Pc-S-Kr relationships for various heterogeneity patterns
have been obtained and compared in order to determine the relative significance of the heterogeneity
patterns. The results show that for micro-heterogeneities of the type used in this work, the upscaled
Pc-S curve mainly follows the corresponding curve for the background sand. Irreducible water
saturation (in drainage) and residual DNAPL saturation (in imbibition) are affected by the presence
and intensity of heterogeneities.
DE: 1829 Groundwater hydrology
SC: Hydrology [H]
MN: 2004 AGU Fall Meeting