Concepts and Applications in 3D Seismic Imaging

Concepts and Applications in 3D Seismic Imaging
Author: Biondo Biondi
Publsiher: SEG Books
Total Pages: 265
Release: 2007
Genre: Computers
ISBN: 9781560801399

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Providing a broad and intuitive understanding of seismic-imaging concepts and methods to enable geoscientists to make appropriate decisions during acquisition, processing, imaging, and interpretation, this book shows trends in imaging research and encourages the adoption of new technologies to facilitate the optimal use of these images.

3D Seismic Imaging

3D Seismic Imaging
Author: Biondo Biondi
Publsiher: Unknown
Total Pages: 224
Release: 2006
Genre: Seismic reflection method
ISBN: 093183046X

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Seismic images are crucial to today's exploration and reservoir monitoring. 3D Seismic Imaging by Biondo L. Biondi (SEG Investigations in Geophysics Series No.14) presents fundamental concepts and cutting-edge methods for imaging reflection seismic data. The book coherently presents the main components of seismic imaging-data-acquisition geometry, migration, and velocity estimation-by exposing the links that intertwine them. The book emphasizes graphical understanding over theoretical development. Several synthetic and field data examples illustrate the presentation of mathematical algorithms. The printed volume includes a DVD that includes a complete set of PDF slides that can be used to teach the material presented in the book and also contains a subset (C3-narrow-azimuth classic data set) of the SEG-EAGE salt data set and of the corresponding velocity model. That supplementary material is available for download by institutional subscribers. Note: This is a large file.

Elements of 3D Seismology third edition

Elements of 3D Seismology  third edition
Author: Christopher L. Liner
Publsiher: SEG Books
Total Pages: 363
Release: 2016-10-15
Genre: Science
ISBN: 9781560803379

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Elements of 3D Seismology, third edition is a thorough introduction to the acquisition, processing, and interpretation of 3D seismic data. This third edition is a major update of the second edition. Sections dealing with interpretation have been greatly revised in accordance with improved understanding and availability of data and software. Practice exercises have been added, as well as a 3D seismic survey predesign exercise. Discussions include: conceptual and historical foundations of modern reflection seismology; an overview of seismic wave phenomena in acoustic, elastic, and porous media; acquisition principles for land and marine seismic surveys; methods used to create 2D and 3D seismic images from field data; concepts of dip moveout, prestack migration, and depth migration; concepts and limitations of 3D seismic interpretation for structure, stratigraphy, and rock property estimation; and the interpretation role of attributes, impedance estimation, and AVO. This book is intended as a general text on reflection seismology, including wave propagation, data acquisition, processing, and interpretation and will be of interest to entry-level geophysicists, experts in related fields (geology, petroleum engineering), and experienced geophysicists in one subfield wishing to learn about another (e.g., interpreters wanting to learn about seismic waves or data acquisition).

3D Seismic Imaging

3D Seismic Imaging
Author: Biondo Biondi
Publsiher: SEG Books
Total Pages: 248
Release: 2006
Genre: Computers
ISBN: 9781560801375

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Accompanying CD-ROM includes PDF slides for teaching the material in the book and the C3-narrow-azimuth classic data set.

3D Seismic Imaging

3D Seismic Imaging
Author: Biondo L. Biondi
Publsiher: Unknown
Total Pages: 224
Release: 2006
Genre: Seismic reflection method
ISBN: 093183046X

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3C Seismic and VSP Converted waves and vector wavefield applications

3C Seismic and VSP  Converted waves and vector wavefield applications
Author: James Gaiser
Publsiher: SEG Books
Total Pages: 637
Release: 2016-06-30
Genre: Science
ISBN: 9781560803355

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3C seismic applications provide enhanced rock property characterization of the reservoir that can complement P-wave methods. Continued interest in converted P- to S-waves (PS-waves) and vertical seismic profiles (VSPs) has resulted in the steady development of advanced vector wavefield techniques. PS-wave images along with VSP data can be used to help P-wave interpretation of structure in gas obscured zones, of elastic and fluid properties for lithology discrimination from S-wave impedance and density inversion in unconventional reservoirs, and of fracture characterization and stress monitoring from S-wave birefringence (splitting) analysis. The book, which accompanies the 2016 SEG Distinguished Instructor Short Course, presents an overview of 3C seismic theory and practical application: from fundamentals of PS-waves and VSPs, through to acquisition and processing including interpretation techniques. The emphasis is on unique aspects of vector wavefields, anisotropy, and the important relationships that unify S-waves and P-waves. Various applications and case studies demonstrate image benefits from PS-waves, elastic properties and fluid discrimination from joint inversion of amplitude variations with offset/angle (AVO/A), and VSP methods for anisotropic velocity model building and improved reservoir imaging. The book will be of interest to geophysicists, geologists, and engineers, especially those involved with or considering the use of AVO/A inversion, fracture/stress characterization analyses, or interpretation in gas-obscured reservoirs.

Seismic Imaging a Practical Approach

Seismic Imaging  a Practical Approach
Author: Jean-Luc Mari,Manuela Manuela Mendes
Publsiher: Unknown
Total Pages: 0
Release: 2021
Genre: Science
ISBN: 2759823512

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In the geophysics of oil exploration and reservoir studies, the surface seismic method is the most commonly used method to obtain a subsurface model in 2 or 3 dimensions. This method plays an increasingly important role in soil investigations for geotechnical, hydrogeological and site characterization studies regarding seismic hazard issues. The goal of this book is to provide a practical guide, using examples from the field, to the application of seismic methods to surface imaging. After reviewing the current state of knowledge in seismic wave propagation, refraction and reflection seismic methods, the book aims to describe how seismic tomography and fullwave form inversion methods can be used to obtain seismic images of the subsurface. Through various synthetic and field examples, the book highlights the benefit of combining different sets of data: refracted waves with reflected waves, and body waves with surface waves. With field data targeting shallow structures, it shows how more accurate geophysical models can be obtained by using the proposed hybrid methods. Finally, it shows how the integration of seismic data (3D survey and VSP), logging data (acoustic logging) and core measurements, combined with a succession of specific and advanced processing techniques, enables the development of a 3D high resolution geological model in depth. In addition to these examples, the authors provide readers with guidelines to carry out these operations, in terms of acquisition, as well as processing and interpretation. In each chapter, the reader will find theoretical concepts, practical rules and, above all, actual application examples. For this reason, the book can be used as a text to accompany course lectures or continuing education seminars. This book aims to promote the exchange of information among geologists, geophysicists, and engineers in geotechnical fields.

Microseismic Imaging of Hydraulic Fracturing

Microseismic Imaging of Hydraulic Fracturing
Author: Shawn Mawell,Society of Exploration Geophysicists
Publsiher: SEG Books
Total Pages: 212
Release: 2014-01-01
Genre: Science
ISBN: 9781560803157

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Microseismic Imaging of Hydraulic Fracturing: Improved Engineering of Unconventional Shale Reservoirs (SEG Distinguished Instructor Series No. 17) covers the use of microseismic data to enhance engineering design of hydraulic fracturing and well completion. The book, which accompanies the 2014 SEG Distinguished Instructor Short Course, describes the design, acquisition, processing, and interpretation of an effective microseismic project. The text includes a tutorial of the basics of hydraulic fracturing, including the geologic and geomechanical factors that control fracture growth. In addition to practical issues associated with collecting and interpreting microseismic data, potential pitfalls and quality-control steps are discussed. Actual case studies are used to demonstrate engineering benefits and improved production through the use of microseismic monitoring. Providing a practical user guide for survey design, quality control, interpretation, and application of microseismic hydraulic fracture monitoring, this book will be of interest to geoscientists and engineers involved in development of unconventional reservoirs.