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Explorer Article

There are approximately 90.55 billion barrels of undiscovered technically recoverable oil and a mean of 327.58 trillion cubic feet of undiscovered technically recoverable natural gas in the federal outer continental shelf of the United States. That’s according to a report issued by the United States Bureau of Ocean Energy Management. The exploration possibilities of all that, if not endless, are pretty encouraging.

American Association of Petroleum Geologists (AAPG)
Explorer Article

Is the United States about to get a tax on carbon emissions? Advocates of carbon pricing seem optimistic, even confident, that the U.S. Congress will legislate a carbon fee or some other form of emissions restriction. And this comes with surprisingly little public discussion of the issue.

American Association of Petroleum Geologists (AAPG)
Explorer Emphasis Article

A strategy gaining force to reduce risk and improve decision-making in recent years is “integration,” the practice of combining disparate teams to complete single projects. Integrated teams are increasingly common in the energy sector, where single business units include geologists, geophysicists, petrophysicists, engineers and other professionals who work on a common project.

American Association of Petroleum Geologists (AAPG)
Explorer Emphasis Article

The world is awash in oil at the moment, but with chronic underinvestment in exploration coupled with global energy demand steadily rising, the stage may be set for an oil price spike in the years to come, according to some analysts. Others, on the other hand, predict that improved production methods and project efficiency will go a long way toward meeting supply demands with existing reserves.

American Association of Petroleum Geologists (AAPG)
Learn! Blog

New technology has unconventional enhanced oil recovery  Welcome to an interview with Jeff Miller, Shale IOR. Jeff participated in AAPG’s U-Pitch at URTeC, which promotes and helps commercialize innovations and new technologies.

American Association of Petroleum Geologists (AAPG)
Learn! Blog

Enhanced Oil Recovery with CO2 is an important market, but sometimes there is a problem with securing CO2 supplies. Welcome to an interview with Gerald Blount, whose company has a new CO2 EOR solution. Gerald participated in AAPG’s U-Pitch at URTeC, which promotes and helps commercialize innovations and new technologies.

American Association of Petroleum Geologists (AAPG)
Learn! Blog

Cutting edge AI technologies suc as Depe Learning, Machine Learning, and Reinforcement Learning are transforming the way that geoscientists work. Welcome to an interview with Naser Tamimi, NeuDax. NeuDax participated in AAPG’s U-Pitch at URTeC, which promotes and helps commercialize innovations and new technologies.

American Association of Petroleum Geologists (AAPG)
Learn! Blog

We are pleased to announce that AAPG has scheduled this research conference to be held June 18-20, 2019 in Houston, Texas. Convenors for this conference are Dr. Dietmar (Deet) Schumacher and Dr. Gary K. Rice.

American Association of Petroleum Geologists (AAPG)
Learn! Blog

Welcome to an interview with Scott Crist, Chairman and CEO of Infrastructure Networks (INET). INET participated in AAPG’s U-Pitch at URTeC, which promotes and helps commercialize innovations and new technologies.

American Association of Petroleum Geologists (AAPG)
EMD Blog

On September 26, 2018, the U.S. Bureau of Land Management (BLM) issued their Record of Decision (ROD) to approve a 14-mile long “energy corridor” across public lands in Uintah County, Utah to support development of a planned 27,000 acre South Project oil shale mine to be developed by Estonia-based Enefit American Oil. The ROD followed a six-year environmental study and preparation of the Final Environmental Impact Study issued by the BLM following extensive public comment.

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American Association of Petroleum Geologists (AAPG)
Workshop
Houston, Texas
Thursday, 6 June Friday, 7 June 2024, 8:00 a.m.–1:00 p.m.

For the first time, the American Association of Petroleum Geologists and Geothermal Rising are bringing together geothermal, critical minerals and gases to explore the connections between them, either in the formation of the reservoirs or reserves, or in exploring for, evaluating, and producing them.  Specifically, the conference will bring together geothermal, lithium, geologic hydrogen, helium, iodine, and more in the form of technical presentations, probing panel discussions, poster sessions, and more.

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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)
DL Abstract

President Biden has laid out a bold and ambitious goal of achieving net-zero carbon emissions in the United States by 2050.  The pathway to that target includes cutting total greenhouse gas emissions in half by 2030 and eliminating them entirely from the nation’s electricity sector by 2035. The Office of Fossil Energy and Carbon Management will play an important role in the transition to net-zero carbon emissions by reducing the environmental impacts of fossil energy production and use – and helping decarbonize other hard-to abate sectors.

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Request a visit from Jennifer Wilcox!

American Association of Petroleum Geologists (AAPG)
VG Abstract

In comparison with the known boundary conditions that promote salt deformation and flow in sedimentary basins, the processes involved with the mobilization of clay-rich detrital sediments are far less well established. This talk will use seismic examples in different tectonic settings to document the variety of shale geometries that can be formed under brittle and ductile deformations.

Request a visit from Juan I. Soto!

American Association of Petroleum Geologists (AAPG)
DL Abstract

This presentation is a survey of subsurface machine learning concepts that have been formulated for unconventional asset development, described in the literature, and subsequently patented. Operators that utilize similar subsurface machine learning workflows and other data modelling techniques enjoy a competitive advantage at optimizing the development of unconventional plays.

Request a visit from Shane Prochnow!

American Association of Petroleum Geologists (AAPG)
DL Abstract

Why H₂ is generated in subsurface? Which are the reactions and the promising geological setting? Example in countries where H₂ have already been found: Australia, Brazil. Kinetic reactions: i.e., Is the natural H₂ renewable? What we don't know yet about this resource and about the H₂ systems (generation/transport/accumulation). Overview of the current landscape (subsurface law, permitting, E&P activity)

Request a visit from Isabelle Moretti!

American Association of Petroleum Geologists (AAPG)
DL Abstract

For well over a century there have been conflicting indications of the strength of the crust and of faults and what controls them.  Much of our ignorance comes quite naturally from the general inaccessibility of the crust to measurement--in contrast with our understanding of the atmosphere, which is much more accessible to observation as well as more rapidly changing.  Crustal strength is best understood in deforming sedimentary basins where the petroleum industry has made great contributions, particularly in deforming petroleum basins because of the practical need to predict. In this talk we take a broad look at key issues in crustal strength and deformation and what we can learn from boreholes, earthquakes, active fault systems, and toy models.

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Request a visit from John Suppe!

American Association of Petroleum Geologists (AAPG)
VG Abstract

Production from unconventional petroleum reservoirs includes petroleum from shale, coal, tight-sand and oil-sand. These reservoirs contain enormous quantities of oil and natural gas but pose a technology challenge to both geoscientists and engineers to produce economically on a commercial scale. These reservoirs store large volumes and are widely distributed at different stratigraphic levels and basin types, offering long-term potential for energy supply. Most of these reservoirs are low permeability and porosity that need enhancement with hydraulic fracture stimulation to maximize fluid drainage. Production from these reservoirs is increasing with continued advancement in geological characterization techniques and technology for well drilling, logging, and completion with drainage enhancement. Currently, Australia, Argentina, Canada, Egypt, USA, and Venezuela are producing natural gas from low permeability reservoirs: tight-sand, shale, and coal (CBM). Canada, Russia, USA, and Venezuela are producing heavy oil from oilsand. USA is leading the development of techniques for exploring, and technology for exploiting unconventional gas resources, which can help to develop potential gas-bearing shales of Thailand. The main focus is on source-reservoir-seal shale petroleum plays. In these tight rocks petroleum resides in the micro-pores as well as adsorbed on and in the organics. Shale has very low matrix permeability (nano-darcies) and has highly layered formations with differences in vertical and horizontal properties, vertically non-homogeneous and horizontally anisotropic with complicate natural fractures. Understanding the rocks is critical in selecting fluid drainage enhancement mechanisms; rock properties such as where shale is clay or silica rich, clay types and maturation , kerogen type and maturation, permeability, porosity, and saturation. Most of these plays require horizontal development with large numbers of wells that require an understanding of formation structure, setting and reservoir character and its lateral extension. The quality of shale-gas resources depend on thickness of net pay (>100 m), adequate porosity (>2%), high reservoir pressure (ideally overpressure), high thermal maturity (>1.5% Ro), high organic richness (>2% TOC), low in clay (<50%), high in brittle minerals (quartz, carbonates, feldspars), and favourable in-situ stress. During the past decade, unconventional shale and tight-sand gas plays have become an important supply of natural gas in the US, and now in shale oil as well. As a consequence, interest to assess and explore these plays is rapidly spreading worldwide. The high production potential of shale petroleum resources has contributed to a comparably favourable outlook for increased future petroleum supplies globally. Application of 2D and 3D seismic for defining reservoirs and micro seismic for monitoring fracturing, measuring rock properties downhole (borehole imaging) and in laboratory (mineralogy, porosity, permeability), horizontal drilling (downhole GPS), and hydraulic fracture stimulation (cross-linked gel, slick-water, nitrogen or nitrogen foam) is key in improving production from these huge resources with low productivity factors.

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Request a visit from Ameed Ghori!

American Association of Petroleum Geologists (AAPG)
DL Abstract

Around 170 million years ago, the Gulf of Mexico basin flooded catastrophically, and the pre-existing landscape, which had been a very rugged, arid, semi-desert world, was drowned beneath an inland sea of salt water. The drowned landscape was then buried under kilometers of salt, perfectly preserving the older topography. Now, with high-quality 3D seismic data, the salt appears as a transparent layer, and the details of the drowned world can be seen in exquisite detail, providing a unique snapshot of the world on the eve of the flooding event. We can map out hills and valleys, and a system of river gullies and a large, meandering river system. These rivers in turn fed into a deep central lake, whose surface was about 750m below global sea level. This new knowledge also reveals how the Louann Salt was deposited. In contrast to published models, the salt was deposited in a deep water, hypersaline sea. We can estimate the rate of deposition, and it was very fast; we believe that the entire thickness of several kilometers of salt was laid down in a few tens of thousands of years, making it possibly the fastest sustained deposition seen so far in the geological record.

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Request a visit from Frank Peel!

American Association of Petroleum Geologists (AAPG)
DL Abstract

Physics is an essential component of geophysics but there is much that physics cannot know or address. 

Request a visit from John Castagna!

American Association of Petroleum Geologists (AAPG)
DL Abstract

Three-dimensional (3D) seismic-reflection surveys provide one of the most important data types for understanding subsurface depositional systems. Quantitative analysis is commonly restricted to geophysical interpretation of elastic properties of rocks in the subsurface. Wide availability of 3D seismic-reflection data and integration provide opportunities for quantitative analysis of subsurface stratigraphic sequences. Here, we integrate traditional seismic-stratigraphic interpretation with quantitative geomorphologic analysis and numerical modeling to explore new insights into submarine-channel evolution.

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Request a visit from Jacob Covault!

American Association of Petroleum Geologists (AAPG)

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