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Presents basic concepts of petroleum geology and proven petroleum exploration techniques for locating oil and gas accumulations with viable prospects, for professionals with two or more years' experience who have a basic knowledge of most aspects of exploration methods. For the most part, chapters f
This fully revised and updated edition introduces the reader to sedimentology and stratigraphic principles, and provides tools for the interpretation of sediments and sedimentary rocks. The processes of formation, transport and deposition of sediment are considered and then applied to develop conceptual models for the full range of sedimentary environments, from deserts to deep seas and reefs to rivers. Different approaches to using stratigraphic principles to date and correlate strata are also considered, in order to provide a comprehensive introduction to all aspects of sedimentology and stratigraphy. The text and figures are designed to be accessible to anyone completely new to the subject, and all of the illustrative material is provided in an accompanying CD-ROM. High-resolution versions of these images can also be downloaded from the companion website for this book at: www.wiley.com/go/nicholssedimentology.
Anatomy of a Paleozoic Basin: The Permian Basin, USA By any standard, the Permian Basin of West Texas and New Mexico is a "super basin." With cumulative oil production of nearly 40 billion barrels (Bbbl) and annual production of nearly 2 Bbbl, it's currently one of the most important hydrocarbon-producing basins in the world. More than 29 Bbbl of this production have come from conventional (carbonate and sandstone) reservoirs, about 75 percent from carbonate reservoirs. Approximately 9-10 Bbbl of the basin's cumulative oil production have come from unconventional targets-primarily organic-matter-rich mudrocks and associated facies-during the last 10 years. The Permian Basin contains perhaps a greater volume of these mudrocks than that of any other basin, a major reason for its current global prominence among hydrocarbon-producing basins. The Permian Basin also contains one of the most extensive data sets in terms of wells drilled, cored wells, and adjacent outcrop analogs, providing a basis for studies that not only helps define the distribution of hydrocarbons but also serves as an excellent laboratory for examining basin-forming processes.This two-volume Bureau of Economic Geology Report of Investigations and AAPG Memoir contains 26 papers covering a breadth of Permian Basin topics, including 4 papers on the basin's structural geology, tectonics, and Precambrian geology; 4 papers on its paleontology and biostratigraphy; 16 on its sedimentology and stratigraphy; 1 on its reservoir systems; and 1 that provides a history and synthesis of the major depositional and deformational events that formed the basin. The goal of this set of papers is to capture, in a single publication, the wealth of information and knowledge about Permian Basin geology that has been generated over the 60 years that have passed since John Galley's early comprehensive paper on the basin in 1958.
Elements of Petroleum Geology, Fourth Edition is a useful primer for geophysicists, geologists and petroleum engineers in the oil industry who wish to expand their knowledge beyond their specialized area. It is also an excellent introductory text for a university course in petroleum geoscience. This updated edition includes new case studies on non-conventional exploration, including tight oil and shale gas exploration, as well as coverage of the impacts on petroleum geology on the environment. Sections on shale reservoirs, flow units and containers, IOR and EOR, giant petroleum provinces, halo reservoirs, and resource estimation methods are also expanded. - Written by a preeminent petroleum geologist and sedimentologist with decades of petroleum exploration in remote corners of the world - Covers information pertinent to everyone working in the oil and gas industry, especially geophysicists, geologists and petroleum reservoir engineers - Fully revised with updated references and expanded coverage of topics and new case studies
"This book was written for students, new professionals in oil companies, and for anyone with an interest in reservoir geology. It explains the background to production geology in the context of oil field subsurface operations. It also gives practical guidelines as to how a production geologist can analyze the reservoir geology and fluid flow characteristics of an oil field with the aim of improving hydrocarbon recovery. Advice is given on how to search for the remaining oil volumes in a producing field, where these pockets are typically found, and then how to plan wells to target these volumes."--Publisher's description.
Carbonate rocks have diverse characteristics. They can be excellent reservoirs as well as prolific source rocks for oil. Oils from carbonate rocks commonly have distinctive bulk chemical and molecular characteristics that reveal their origin. The papers collected here are descriptions and interpretations (that is, case histories) of specific carbonate source rocks that range in age from Precambrian to Miocene.
An invaluable reference that helps geologists recognize and differentiate the many types of natural fractures, induced fractures and artefacts found in cores Atlas of Natural and Induced Fractures in Core offers a reference for the interpretation of natural and induced fractures in cores. The natural and induced fracture data contained in cores provides a wealth of information once they are recognized and properly interpreted. Written by two experts in the field, this resource provides a much-needed tool to help with the accurate interpretation of these cores. The authorsinclude the information needed to identify different fracture types as well as the criteria for distinguishing between the types of fractures. The atlas shows how to recognize non-fracture artefacts in a core since many of them provide other types of useful information. In addition, the text’s illustrated structures combined with their basic interpretations are designed to be primary building blocks of a complete fracture assessment and analysis. The authors show how to recognize and correctly interpret these building blocks to ensure that subsequent analyses, interpretations, and modeling efforts regarding fracture-controlled reservoir permeability are valid. Presented in full color throughout, this comprehensive reference is written for geologists charged with interpreting fracture-controlled permeability systems in reservoirs as well as for students or other scientists who need to develop the skills to accurately interpret the natural and induced fractures in cores.