Mechanics of Jointed and Faulted Rock

Mechanics of Jointed and Faulted Rock PDF

Author: H.P. Rossmanith

Publisher: CRC Press

Published: 2020-12-17

Total Pages: 1011

ISBN-13: 1000108236

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This book focuses on the implementation and application of new concepts and methods to modelling, analysis, building, performance control and repair of structures of and in jointed rock and rock masses. It provides a forum for presentation of new research results and discussion for researchers.

Mechanics of Jointed and Faulted Rock

Mechanics of Jointed and Faulted Rock PDF

Author: H.P. Rossmanith

Publisher: Routledge

Published: 2018-04-27

Total Pages: 676

ISBN-13: 1351432443

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Topics covered in this text include: geology and structural geology; mechanics; dynamics of jointed and faulted rock; physical modelling and testing; constitutive modelling; seismicity and tectonics; instrumentation; hydraulics; and applications.

TBM Tunnelling in Jointed and Faulted Rock

TBM Tunnelling in Jointed and Faulted Rock PDF

Author: Nick R. Barton

Publisher: CRC Press

Published: 2000-01-01

Total Pages: 192

ISBN-13: 9789058093417

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This practical guide describes the stage-by-stage development of a method for predicting the penetration rate (PR) and the advance rate (AR) for tunnel boring machines based on an expanded version of the Q-value, QTBM. The author analyzes 145 TBM tunnels that total 1,000km in length. He then develops simple formulae to estimate PR and AR from the QTBM value and to back-calculate QTBM from performance data. The book quantitatively explains actual advance rates as high as five m/hr for one day or as low as 0.005 m/hr for several months. It also covers logging methods, empirical TBM tunnel support design, and numerical verification of support.

Rock Joints

Rock Joints PDF

Author: Georg Mandl

Publisher: Springer Science & Business Media

Published: 2005-11-10

Total Pages: 223

ISBN-13: 3540264574

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Rock Joints deals exclusively with the mechanical genesis of joints in rocks. It is aimed at a coherent, critical and comprehensible presentation of the underlying mechanical processes of various types of joints and joint systems. Special care is taken to elucidate and quantify the role of high fluid pressures in the formation of joints. The background is an offshoot of the author's courses on "Genesis of Rock Joints" in the Department of Rock Mechanics and Tunneling at the Technical University of Graz, Austria.

Engineering in Jointed and Faulted Rock

Engineering in Jointed and Faulted Rock PDF

Author: Nick Barton

Publisher: CRC Press

Published: 2016-06-01

Total Pages: 800

ISBN-13: 9781138027299

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Engineering in Jointed and Faulted Rock aims to provide the background knowledge, necessary tools, and guidelines for rationalized and consistent engineering approaches to design and construction in and on jointed and faulted rock. Three avenues will be exploited to that effect: mechanics, empiricism and analysis (including numerical analysis). The book is uniquely dedicated to the theme of engineering in jointed rock to a much greater degree than earlier texts in rock mechanics and rock engineering, and there will be fundamental treatment and examples of the characterization, strength, deformability and permeability of joints and, in separate chapters, the same for rock masses. These fundamentals will be followed by their application in numerical models, for developing the engineering design for rock slopes, tunnels, bridge foundations, dam abutments, nuclear waste disposal, mine shafts and roadways. Empirical design will be validated and improved by numerical modelling where necessary. The text will be permeated with informative and illustrated case records from the authors’ total of 40 countries sphere of experience. Solutions of every-day problems will be interspersed with experiences from the longest tunnel, the widest cavern, the highest dam, the site of the largest underground power house, and the problems with the deepest TBM tunnels. This much needed text on the mechanics of jointed rock, based on extensive experiments and measurements both in the laboratory and in the field, will be indispensable for the rock engineering and rock mechanics community.

Fault and Joint Development

Fault and Joint Development PDF

Author: Neville J. Price

Publisher: Elsevier

Published: 2016-07-04

Total Pages: 188

ISBN-13: 1483139220

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Fault and Joint Development in Brittle and Semi-brittle Rock deals with theories of fault and joint development in rock when they behave as brittle or semi-brittle material. The book contains three chapters, the first of which deals with some of the concepts and criteria of brittle failure along with an attempt to define limits of temperature and pressure below which rocks may behave in a brittle or semi-brittle manner. The second and third chapters discuss the application of these concepts of brittle failure and elastic theory to the problems of faulting and jointing, respectively. It is emphasized that since this book deals with theoretical aspects of structural geology it is concerned with generalizations and approximations. It must be left to the reader to decide how closely these theories approximate to any particular field data. This book is primarily intended for senior undergraduates and postgraduates in geology interested in the interpretation of geological structures. It may also be of interest to some mining and civil engineers.

Rock Joints

Rock Joints PDF

Author: Georg Mandl

Publisher: Springer Science & Business Media

Published: 2005-05-20

Total Pages: 240

ISBN-13: 9783540245537

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Joints in rocks, as distinct from tectonic faults, are fractures that form without "visible" displacement along the fracture plane. They are usually interpreted as tension fractures and analysed mechanically by employing a continuum mechanical theory of this fracture mode. "Rock Joints" deals exclusively with the mechanical genesis of joints in rocks. It is aimed at a coherent, critical and comprehensible presentation of the underlying mechanical processes of various types of joints and joint systems. In addition to tension fractures, the book extensively treats jointing from a different origin, i.e. hydraulic intrusion fractures, cleavage fractures, and shear joints. Throughout, special care is taken to elucidate and quantify the role of high fluid pressures in joint formation. Field examples illustrate formational aspects of jointing, and Mohr's stress circle used where possible to simplify the mathematics.