Evaluation of solitary waves as a mechanism for oil transport in poroelastic media: A case study of the South Eugene Island field, Gulf of Mexico basin

Author:

Joshi Ajit,Appold Martin S.,Nunn Jeffrey A.

Publisher

Elsevier BV

Subject

Stratigraphy,Economic Geology,Geology,Geophysics,Oceanography

Reference47 articles.

1. Geologic evolution of a Pliocene–Pleistocene salt-withdrawal minibasin, Eugene Island South Addition, Block 330, offshore Louisiana;Alexander;American Association of Petroleum Geologists Bulletin,1995

2. Fluid flow in a faulted reservoir system, South Eugene Island Block 330 field, offshore Louisiana;Alexander;American Association of Petroleum Geologists Bulletin,1998

3. Active fluid flow in the Eugene Island Area, offshore Louisiana;Anderson;Geophysics: The Leading Edge,1991

4. Gulf of Mexico growth fault drilled, seen as oil, gas migration pathway;Anderson;Oil and Gas Journal,1994

5. Numerical models of petroleum migration via buoyancy-driven porosity waves in viscously deformable sediments;Appold;Geofluids,2002

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2. On mass transport in porosity waves;Earth and Planetary Science Letters;2018-03

3. Pore Fluid Extraction by Reactive Solitary Waves in 3-D;Geophysical Research Letters;2017-09-21

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