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Title: Final Report - Advanced Conceptual Models for Unsaturated and Two-Phase Flow in Fractured Rock

Technical Report ·
DOI:https://doi.org/10.2172/886044· OSTI ID:886044

The Department of Energy Environmental Management Program is faced with two major issues involving two-phase flow in fractured rock; specifically, transport of dissolved contaminants in the Vadose Zone, and the fate of Dense Nonaqueous Phase Liquids (DNAPLs) below the water table. Conceptual models currently used to address these problems do not correctly include the influence of the fractures, thus leading to erroneous predictions. Recent work has shown that it is crucial to understand the topology, or ''structure'' of the fluid phases (air/water or water/DNAPL) within the subsurface. It has also been shown that even under steady boundary conditions, the influence of fractures can lead to complex and dynamic phase structure that controls system behavior, with or without the presence of a porous rock matrix. Complicated phase structures within the fracture network can facilitate rapid transport, and lead to a sparsely populated and widespread distribution of concentrated contaminants; these qualities are highly difficult to describe with current conceptual models. The focus of our work is to improve predictive modeling through the development of advanced conceptual models for two-phase flow in fractured rock.

Research Organization:
University of Idaho, Moscow, Idaho
Sponsoring Organization:
USDOE
DOE Contract Number:
FG07-02ER63499
OSTI ID:
886044
Report Number(s):
DOE/ER/63499-F; TRN: US200719%%196
Country of Publication:
United States
Language:
English