Explorer Article

Mexico is a country with enormous potential — but potential is only a first step in a hard struggle for success. And in Mexico, nothing is easy.

American Association of Petroleum Geologists (AAPG)
Explorer Article

Online Registration closes SEPTEMBER 23

American Association of Petroleum Geologists (AAPG)
Explorer Article

Speakers are now picked and preparing for this year's AAPG Distinguished Lecture slate of talks, both in the United States and around the world.

American Association of Petroleum Geologists (AAPG)
Explorer Emphasis Article

A new study of sunken vessels in the Gulf of Mexico has ramifications for the oil industry — and it asks the question, can man-made reefs be beneficial in the deep water, too?

American Association of Petroleum Geologists (AAPG)
Explorer Emphasis Article

Since Cognac was discovered in 1975 (we're talking oil fields here!) over 200 commercial fields have been discovered in the Gulf of Mexico province.

American Association of Petroleum Geologists (AAPG)
Explorer Emphasis Article

Continued success in the deepwater Gulf of Mexico especially involving the subsalt plays — may depend on how geologists 'see' the situation.

American Association of Petroleum Geologists (AAPG)
Explorer Emphasis Article

Ninety-nine percent of total Gulf of Mexico production is from Neogene-age reservoirs

American Association of Petroleum Geologists (AAPG)
Explorer Emphasis Article

Now, this is deep: A new MMS report officially establishes the deepwater regions as the big gorilla in the Gulf of Mexico.

American Association of Petroleum Geologists (AAPG)
Explorer A Look Back Column

Perhaps a review — and awareness — of the past may make us better geologists in the future.

American Association of Petroleum Geologists (AAPG)
Explorer Emphasis Article

Deepwater exploration is, well, deep -- but it also raises a question: How much deepwater potential remains?

American Association of Petroleum Geologists (AAPG)
VG Abstract

The carbonate sequences that were deposited in the now exhumed Tethyan Ocean influence many aspects of our lives today, either by supplying the energy that warms our homes and the fuel that powers our cars or providing the stunning landscapes for both winter and summer vacations. They also represent some of the most intensely studied rock formations in the world and have provided geoscientists with a fascinating insight into the turbulent nature of 250 Million years of Earth’s history. By combining studies from the full range of geoscience disciplines this presentation will trace the development of these carbonate sequences from their initial formation on the margins of large ancient continental masses to their present day locations in and around the Greater Mediterranean and Near East region. The first order control on growth patterns and carbonate platform development by the regional plate-tectonic setting, underlying basin architecture and fluctuations in sea level will be illustrated. The organisms that contribute to sequence development will be revealed to be treasure troves of forensic information. Finally, these rock sequences will be shown to contain all the ingredients necessary to form and retain hydrocarbons and the manner in which major post-depositional tectonic events led to the formation of some of the largest hydrocarbon accumulations in the world will be demonstrated.

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Request a visit from Keith Gerdes!

American Association of Petroleum Geologists (AAPG)
DL Abstract

As oil and gas exploration and production occur in deeper basins and more complex geologic settings, accurate characterization and modeling of reservoirs to improve estimated ultimate recovery (EUR) prediction, optimize well placement and maximize recovery become paramount. Existing technologies for reservoir characterization and modeling have proven inadequate for delivering detailed 3D predictions of reservoir architecture, connectivity and rock quality at scales that impact subsurface flow patterns and reservoir performance. Because of the gap between the geophysical and geologic data available (seismic, well logs, cores) and the data needed to model rock heterogeneities at the reservoir scale, constraints from external analog systems are needed. Existing stratigraphic concepts and deposition models are mostly empirical and seldom provide quantitative constraints on fine-scale reservoir heterogeneity. Current reservoir modeling tools are challenged to accurately replicate complex, nonstationary, rock heterogeneity patterns that control connectivity, such as shale layers that serve as flow baffles and barriers.

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Request a visit from Tao Sun!

American Association of Petroleum Geologists (AAPG)

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