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Grantee Research Project Results

Journal Publications Details for Grant Number R825689C080

Three-Phase Flow in Fractured Media

RFA: Hazardous Substance Research Centers - HSRC (1989)

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Journal Article (8)
Reference Type Citation Progress Report Year Document Sources
Journal Article Dillard LA, Blunt MJ. Development of a pore network simulation model to study nonaqueous phase liquid dissolution. Water Resources Research 2000;36(2):439-454. R825689C079 (Final)
R825689C080 (Final)
  • Abstract: Wiley - Abstract
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Journal Article Dillard LA, Essaid HI, Blunt MJ. A functional relation for field-scale nonaqueous phase liquid dissolution developed using a pore network model. Journal of Contaminant Hydrology 2001;48(1-2):89-119. R825689C079 (Final)
R825689C080 (Final)
  • Abstract from PubMed
  • Full-text: Science Direct - Full Text HTML
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  • Abstract: Science Direct - Abstract
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  • Other: Science Direct - Full Text PDF
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Journal Article Keller AA, Roberts PV, Kitanidis PK. Prediction of single phase transport parameters in a variable aperture fracture. Geophysical Research Letters 1995;22(11):1425-1428. R825689C063 (Final)
R825689C080 (Final)
  • Abstract: Wiley - Abstract
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Journal Article Keller AA, Blunt MJ, Roberts PV. Micromodel observation of the role of oil layers in three-phase flow. Transport in Porous Media 1997;26(3):277-297. R825689C080 (Final)
  • Full-text: Springer - Full Text PDF
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  • Abstract: Springer - Abstract
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  • Other: Research Gate-Full Text PDF
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Journal Article Keller AA. High resolution, non-destructive measurement and characterization of fracture apertures. International Journal of Rock Mechanics and Mining Sciences 1998;35(8):1037-1050. R825689C080 (Final)
  • Abstract: Science Direct - Abstract
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Journal Article Keller AA, Roberts PV, Blunt MJ. Effect of fracture aperture variations on the dispersion of contaminants. Water Resources Research 1999;35(1):55-63. R825689C080 (Final)
  • Abstract: Wiley - Abstract
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Journal Article Keller AA, Blunt MJ, Roberts PV. Behavior of nonaqueous phase liquids in fractured porous media under two-phase flow conditions. Transport in Porous Media 2000;38(1-2):189-203. R825689C080 (Final)
  • Full-text: Springer - PDF
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  • Abstract: Springer - Abstract
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Journal Article Zhou D, Dillard LA, Blunt MJ. A physically based model of dissolution of nonaqueous phase liquids in the saturated zone. Transport in Porous Media 2000;39(2):227-255. R825689C079 (Final)
R825689C080 (Final)
  • Abstract: Springer - Abstract
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The perspectives, information and conclusions conveyed in research project abstracts, progress reports, final reports, journal abstracts and journal publications convey the viewpoints of the principal investigator and may not represent the views and policies of ORD and EPA. Conclusions drawn by the principal investigators have not been reviewed by the Agency.

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Last updated April 28, 2023
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