Application of Structural Methods to Rocky Mountain Hydrocarbon Exploration and Development

With increasing industry emphasis on developing “unconventional” tight gas reservoirs and on enhancing recovery from existing fields, geologists are facing diverse challenges in the applications of structural geology. Identifying fracture characteristics within petroleum systems is essential. Understanding the timing of tectonics and the formation of structures is important, as these factors strongly influence hydrocarbon generation, migration, entrapment, and preservation. The purpose in publishing this collection of key papers is to aid future workers in addressing complex interrelationships between structural geology and hydrocarbon exploration and development. The first four chapters of this book focus on structural concepts and techniques. The second part of this book is a collection of Rocky Mountain fault and fracture studies. These well documented studies are valuable reference materials for all petroleum geologists.
Regional and Local Fractures of the Bakken Petroleum System, Williston Basin: Integrating Field Studies and 3-D Seismic Analysis
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Published:January 01, 2013
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CiteCitation
Stephen J. Angster, J. Frederick Sarg, 2013. "Regional and Local Fractures of the Bakken Petroleum System, Williston Basin: Integrating Field Studies and 3-D Seismic Analysis", Application of Structural Methods to Rocky Mountain Hydrocarbon Exploration and Development, Constance N. Knight, Jerome J. Cuzella, Leland D. Cress
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Abstract
The consistent low porosity and permeability of reservoirs in the Bakken petroleum system, in the Williston Basin, have increased the need for fracture studies. Although situated in an intracratonic setting, the Williston Basin displays evidence of deformation enabling the presence of regional and local fracturing. In this study, applicable fracture models are utilized to delineate regional and local fracture orientations within the Williston Region. Northwest and northeast regional fracture trends have been determined by integrating results from previous fracture studies, collecting field data at outcrop locations in the Williston Basin Region, and from subsurface three-dimensional (3-D) seismic data in...
- Absaroka Range
- Bakken Formation
- Beartooth Mountains
- Big Snowy Mountains
- carbonate rocks
- carbonatization
- Carboniferous
- clastic rocks
- Devonian
- dolomitization
- faults
- field studies
- fractures
- geophysical methods
- geophysical profiles
- geophysical surveys
- lateral faults
- lithostratigraphy
- Lodgepole Formation
- Lower Mississippian
- Mississippian
- Montana
- North America
- organic compounds
- outcrops
- Paleozoic
- permeability
- petroleum
- petroleum exploration
- porosity
- reflection methods
- reservoir rocks
- right-lateral faults
- Rocky Mountains
- sedimentary rocks
- seismic methods
- seismic profiles
- shale
- siltstone
- strain
- structural controls
- surveys
- U. S. Rocky Mountains
- United States
- upper Paleozoic
- Williston Basin
- wrench faults
- Three Forks Formation
- petroleum systems
- Cottonwood Canyon Formation