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Best reservoir characterization

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Seismic Attributes for Prospect ID and Reservoir Characterization (Geophysical Developments No. 11) (Seg Geophysical Developments) Seismic Attributes for Prospect ID and Reservoir Characterization (Geophysical Developments No. 11) (Seg Geophysical Developments)
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Carbonate Reservoir Characterization: An Integrated Approach Carbonate Reservoir Characterization: An Integrated Approach
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Handbook of Borehole Acoustics and Rock Physics for Reservoir Characterization Handbook of Borehole Acoustics and Rock Physics for Reservoir Characterization
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Applied Geostatistics for Reservoir Characterization Applied Geostatistics for Reservoir Characterization
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Advances in Reservoir Characterization CD-ROM (SPE Reprint Series #60) Advances in Reservoir Characterization CD-ROM (SPE Reprint Series #60)
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Inverse Theory for Petroleum Reservoir Characterization and History Matching Inverse Theory for Petroleum Reservoir Characterization and History Matching
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Uncertainty Analysis in Reservoir Characterization - M96 (Aapg Memoir) Uncertainty Analysis in Reservoir Characterization - M96 (Aapg Memoir)
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Stratigraphic Reservoir Characterization for Petroleum Geologists, Geophysicists, and Engineers, Volume 61 (Developments in Petroleum Science) Stratigraphic Reservoir Characterization for Petroleum Geologists, Geophysicists, and Engineers, Volume 61 (Developments in Petroleum Science)
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1. Seismic Attributes for Prospect ID and Reservoir Characterization (Geophysical Developments No. 11) (Seg Geophysical Developments)

Description

Seismic attributes play a key role in exploration and exploitation of hydrocarbons. In "'Seismic Attributes for Prospect Identification and Reservoir Characterization" Satinder Chopra and Kurt J. Marfurt introduce the physical basis, mathematical implementation, and geologic expression of modern volumetric attributes including coherence, dip/azimuth, curvature, amplitude gradients, seismic textures, and spectral decomposition. The authors demonstrate the importance of effective color display and sensitivity to seismic acquisition and processing. Examples from different basins illustrate the attribute expression of tectonic deformation, clastic depositional systems, carbonate depositional systems and diagenesis, drilling hazards, and reservoir characterization. The book is illustrated generously with color figures throughout. 'Seismic Attributes' will appeal to seismic interpreters who want to extract more information from data; seismic processors and imagers who want to learn how their efforts impact subtle stratigraphic and fracture plays; sedimentologists, stratigraphers, and structural geologists who use large 3D seismic volumes to interpret their plays within a regional, basinwide context; and reservoir engineers whose work is based on detailed 3D reservoir models. Copublished with EAGE.

Also Available:

Edge and Tip Diffractions: Theory and Applications in Seismic Prospecting - ISBN 1560801492
A Handbook for Seismic Data Acquisition in Exploration - ISBN 1560800410

2. Carbonate Reservoir Characterization: An Integrated Approach

Feature

Used Book in Good Condition

Description

F. Jerry Lucia, working in Americas main oil-rich state, has produced a work that goes after one of the holy grails of oil prospecting. One main target in petroleum recovery is the description of the three-dimensional distribution of petrophysical properties on the interwell scale in carbonate reservoirs. Doing so would improve performance predictions by means of fluid-flow computer simulations. Lucias book focuses on the improvement of geological, petrophysical, and geostatistical methods, describes the basic petrophysical properties, important geology parameters, and rock fabrics from cores, and discusses their spatial distribution. A closing chapter deals with reservoir models as an input into flow simulators.

3. Handbook of Borehole Acoustics and Rock Physics for Reservoir Characterization

Description

The Handbook of Borehole Acoustics and Rock Physics for Reservoir Characterization combines in a single useful handbook the multidisciplinary domains of the petroleum industry, including the fundamental concepts of rock physics, acoustic logging, waveform processing, and geophysical application modeling through graphical examples derived from field data. It includes results from core studies, together with graphics that validate and support the modeling process, and explores all possible facets of acoustic applications in reservoir evaluation for hydrocarbon exploration, development, and drilling support.

The Handbook of Borehole Acoustics and Rock Physics for Reservoir Characterization serves as a technical guide and research reference for oil and gas professionals, scientists, and students in the multidisciplinary field of reservoir characterization through the use of petrosonics. It overviews the fundamentals of borehole acoustics and rock physics, with a focus on reservoir evaluation applications, explores current advancements through updated research, and identifies areas of future growth.

  • Presents theory, application, and limitations of borehole acoustics and rock physics through field examples and case studies
  • Features "Petrosonic Workflows" for various acoustic applications and evaluations, which can be easily adapted for practical reservoir modeling and interpretation
  • Covers the potential advantages of acoustic-based techniques and summarizes key results for easy geophysical application

4. Applied Geostatistics for Reservoir Characterization

Feature

Used Book in Good Condition

Description

Book by Kelkar, Mohan, Ph.D., Perez, Godofredo, Chopra, Anil

5. Advances in Reservoir Characterization CD-ROM (SPE Reprint Series #60)

Description

The CD-ROM contains 20 papers.

6. Inverse Theory for Petroleum Reservoir Characterization and History Matching

Description

This book is a guide to the use of inverse theory for estimation and conditional simulation of flow and transport parameters in porous media. It describes the theory and practice of estimating properties of underground petroleum reservoirs from measurements of flow in wells, and it explains how to characterize the uncertainty in such estimates. Early chapters present the reader with the necessary background in inverse theory, probability and spatial statistics. The book demonstrates how to calculate sensitivity coefficients and the linearized relationship between models and production data. It also shows how to develop iterative methods for generating estimates and conditional realizations. The text is written for researchers and graduates in petroleum engineering and groundwater hydrology, and can be used as a textbook for advanced courses on inverse theory in petroleum engineering. It includes many worked examples to demonstrate the methodologies and a selection of exercises.

7. Uncertainty Analysis in Reservoir Characterization - M96 (Aapg Memoir)

Description

Uncertainty Analysis and Reservoir Modeling: Developing and Managing Assets in an Uncertain World presents a comprehensive survey of cutting-edge approaches used by industry to quantify the uncertainty in both conventional and unconventional reservoirs. Balanced between case histories and theory, the chapters in this volume equip experienced practitioners and those just entering the field with the theory, workflows and case history examples needed to make better reservoir management decisions in the uncertain world of the modern oil and gas field.

American Association of Petroleum Geologists (AAPG)

Founded in 1917, AAPG is the world's largest professional geological society.

AAPG is a pillar of the world-wide scientific community. Our books foster timely scientific research, advance the science of geology and promote the most efficient methods of energy exploration & processing technology and practices available today.

Some of the areas we publish in include:
Well Log Analysis
Geological Modeling
Carbonate Petrology
Seismic Imaging
Reservoir Characterization
Regional Petroleum Analysis
Tectonics and Sedimentation
Stratigraphy

8. Stratigraphic Reservoir Characterization for Petroleum Geologists, Geophysicists, and Engineers, Volume 61 (Developments in Petroleum Science)

Description

Reservoir characterization as a discipline grew out of the recognition that more oil and gas could be extracted from reservoirs if the geology of the reservoir was understood. Prior to that awakening, reservoir development and production were the realm of the petroleum engineer. In fact, geologists of that time would have felt slighted if asked by corporate management to move from an exciting exploration assignment to a more mundane assignment working with an engineer to improve a reservoirs performance.

Slowly, reservoir characterization came into its own as a quantitative, multidisciplinary endeavor requiring a vast array of skills and knowledge sets. Perhaps the biggest attractor to becoming a reservoir geologist was the advent of fast computing, followed by visualization programs and theaters, all of which allow young geoscientists to practice their computing skills in a highly technical work environment. Also, the discipline grew in parallel with the evolution of data integration and the advent of asset teams in the petroleum industry. Finally, reservoir characterization flourished with the quantum improvements that have occurred in geophysical acquisition and processing techniques and that allow geophysicists to image internal reservoir complexities.

  • Practical resource describing different types of sandstone and shale reservoirs
  • Case histories of reservoir studies for easy comparison
  • Applications of standard, new, and emerging technologies

Conclusion

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Elsie Butler