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? Download PDF Rock Quality, Seismic Velocity, Attenuation and Anisotropy, by Nick Barton

Download PDF Rock Quality, Seismic Velocity, Attenuation and Anisotropy, by Nick Barton

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Rock Quality, Seismic Velocity, Attenuation and Anisotropy, by Nick Barton

Rock Quality, Seismic Velocity, Attenuation and Anisotropy, by Nick Barton



Rock Quality, Seismic Velocity, Attenuation and Anisotropy, by Nick Barton

Download PDF Rock Quality, Seismic Velocity, Attenuation and Anisotropy, by Nick Barton

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Rock Quality, Seismic Velocity, Attenuation and Anisotropy, by Nick Barton

Seismic measurements take many forms, and appear to have a universal role in the Earth Sciences. They are the means for most easily and economically interpreting what lies beneath the visible surface. There are huge economic rewards and losses to be made when interpreting the shallow crust or subsurface more, or less accurately, as the case may be.

This book describes seismic behaviour at many scales and from numerous fields in geophysics, tectonophysics and rock physics, and from civil, mining and petroleum engineering. Addressing key items for improved understanding of seismic behaviour, it often interprets seismic measurements in rock mechanics terms, with particular attention to the cause of attenuation, its inverse seismic quality, and the anisotropy of fracture compliances and stiffnesses. 

Reviewed behaviour stretches over ten orders of magnitude, from micro-crack compliance in laboratory tests to cross-continent attenuation. Between these extremes lie seismic investigation of rock joints, boreholes, block tests, dam and bridge foundations, quarry blasting, canal excavations, hydropower and transportation tunnels, machine bored TBM tunnels, sub-sea sediment and mid-ocean ridge measurements, where the emphasis is on velocity-depth-age models. Attenuation of earthquake coda-waves is also treated, including in-well measurements.

In the later chapters, there is a general emphasis on deeper, higher stress, larger scale applications of seismic, such as shear-wave splitting for interpreting the attenuation, anisotropy and orientation of permeable 'open' fracture sets in petroleum reservoirs, and the 4D seismic effects of water-flood, oil production and compaction. The dispersive or frequency dependence of most seismic measurements and their dependence on fracture dimensions and fracture density is emphasized. The possibility that shear displacement may be required to explain permeability at depth is quantified.

This book is cross-disciplinary, non-mathematical and phenomenological in nature, containing a wealth of figures and a wide review of the literature from many fields in the Earth Sciences. Including a chapter of conclusions and an extensive subject index, it is a unique reference work for professionals, researchers, university teachers and students working in the fields of geophysics, civil, mining and petroleum engineering. It will be particularly relevant to geophysicists, engineering geologists and geologists who are engaged in the interpretation of seismic measurements in rock and petroleum engineering.

  • Sales Rank: #2772089 in Books
  • Published on: 2006-10-31
  • Original language: English
  • Number of items: 1
  • Dimensions: 11.14" h x 1.61" w x 8.72" l, 5.05 pounds
  • Binding: Hardcover
  • 756 pages

Review

"This important, wide-ranging compendium of rock physics research is intended to bridge the information gap that exists between rock mechanics engineers involved with projects in civil, mining and petroleum engineering and geophysicists working in areas such as petroleum reservoir and earthquake studies. [...] In the study, largely non-mathematical in nature, the author assembles and refers to a large body of literature concerned with experimental and theoretical studies in which both rock mechanics and geophysics at all scales are involved. [...] [A] most important contribution from which both rock mechanics engineers and geophysicists will benefit immensely." Michael King, Imperial College London, UK

"Let me first start my review by congratulating Barton for making such a cross-disciplinary effort in this book . . . Barton presents an excellent example of what could be accomplished with such collaboration by providing readers a wide perspective of the applications from both geophysics and geomechanics . . . I found the book particularly enjoyable to read since I am a strong advocate of the cross-discipline fertilization of geophysics and geomechanics. I would recommend it as a reference book to both geophysicists and even more to rock mechanics specialists because of the unique multidisciplinary coverage and immense references."

– Azra N. Tutuncu, in The Leading Edge, April 2009, Vol. 28 No. 4

About the Author

Nick Barton has over 40 years of international experience in rock engineering, and has been involved in numerous important and iconic tunnel, cavern and rock slope projects. He has developed many tools and methods, such as the widely used Q-system, for rock classification and support selection and the Barton-Bandis constitutive laws for rock joint computer modeling. He currently teaches at the University of São Paulo and manages an international consultancy (Nick Barton & Associates, São Paulo – Oslo).

Dr. Nick Barton was the 2011 recipient of the distinguished Müller Award, an award that honours the memory of Professor Leopold Müller, the founder of the ISRM (International Society of Rock Mechanics), and awarded in recognition of distinguished contributions to the profession of rock mechanics and rock engineering.

Most helpful customer reviews

2 of 2 people found the following review helpful.
Environmental & Engineering Geoscience, Dr. Keaton
By Nicholas Ryland Barton
This encyclopedic monograph expresses nearly 40 years of Nick Barton's research interests in engineering classification of rock masses. Rock Quality, Seismic Velocity, Attenuation, and Anisotropis organized into two basic parts: Chapters 1 through 9 in Part I pertain to civil engineering scales and applications, whereas Chapters 10 through 16 in Part II pertain to large-scale seismic phenomena and high pressure laboratory rock physics tests. Figures outnumber equations through Rock Quality,Seismic Velocity, Attenuation, and Anisotropy, and a random examination revealed at least two figures on just about any pair of facing pages. References for all chapters are combined into a single list that is 27 pages long. Conclusions are given for each chapter in numbered paragraphs. The largest number of paragraphs (51) is for Chapter 15 (Shear wave splitting in fractured reservoirs and resulting from earthquakes). The Index is impressive, occupying 64 pages. Rock Quality, Seismic Velocity, Attenuation, and Anisotropy contains so much valuable information that selecting one or two items to serve as examples is a challenge.The introduction to Rock Quality, Seismic Velocity, Attenuation, and Anisotropy includes comments regarding the different problems that civil engineers and engineering geologists face compared to problems that petroleum engineers or tectonophysicists face. Barton notes that it is understandable, but regrettable, that advances in the different areas have been largely unknown outside the boundaries of the technical area. Practitioners and researchers in these major fields participate in separate conferences and read and publish in separate journals. Barton notes that technical language complicates cross-discipline interactions. Rock Quality, Seismic Velocity, Attenuation, and Anisotropy is a major step toward overcoming the boundaries and cross-discipline complications to provide a comprehensive reference book that addresses important topics for civil engineers and engineering geologists, petroleum engineers, and tectonophysicists.

1 of 1 people found the following review helpful.
From Mike King review, Dec 07, Int.J.Rock Mech. Min. Sci.
By Nicholas Barton
This important, wide-ranging compendium of rock physics research is intended to bridge the information gap that exists between rock mechanics engineers involved with projects in civil, mining and petroleum engineering and geophysicists working in areas such as petroleum reservoir and earthquake studies. The common denominator throughout this work is shown to be the influence of rock mass and rock joint behaviour on the mechanical properties and seismic interpretation of the subsurface. The author assembles and refers to a large body of literature concerned with experimental and theoretical studies in which both rock mechanics and geophysics at all scales are involved.This is a most important contribution from which both rock mechanics engineers and geophysicists will benefit immensely.

See all 2 customer reviews...

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