Rock Engineering Risk

Rock Engineering Risk
Author: John A. Hudson,Xia-Ting Feng
Publsiher: CRC Press
Total Pages: 594
Release: 2015-05-05
Genre: Technology & Engineering
ISBN: 9781315738574

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This book provides a new, necessary and valuable approach to the consideration of risk in underground engineering projects constructed within rock masses. There are Chapters on uncertainty and risk, rock engineering systems, rock fractures and rock stress, the design of a repository for radioactive waste, plus two major case examples relating to th

Rock Engineering

Rock Engineering
Author: Arild Palmstrom,Hakan Stille
Publsiher: ICE Publishing
Total Pages: 0
Release: 2014-12-19
Genre: Technology & Engineering
ISBN: 0727759957

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Rock Engineering is a valuable reference tool for geotechnical engineers, geologists, consultants, contractors, and advanced students on rock engineering and engineering geology courses.

Harmonising Rock Engineering and the Environment

Harmonising Rock Engineering and the Environment
Author: Qihu Qian,Yingxin Zhou
Publsiher: CRC Press
Total Pages: 2048
Release: 2011-09-14
Genre: Technology & Engineering
ISBN: 9780203135259

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Harmonising Rock Mechanics and the Environment comprises the proceedings (invited and contributed papers) of the 12th ISRM International Congress on Rock Mechanics (Beijing, China, 18-21 October 2011). The contributions cover the entire scope of rock mechanics and rock engineering, with an emphasis on the critical role of both disciplines in sustai

Back Analysis in Rock Engineering

Back Analysis in Rock Engineering
Author: Shunsuke Sakurai
Publsiher: CRC Press
Total Pages: 287
Release: 2017-09-01
Genre: Technology & Engineering
ISBN: 9781315349541

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This book provides practicing engineers working in the field of design, construction and monitoring of rock structures such as tunnels and slopes with technical information on how to design, how to excavate and how to monitor the structures during their construction. Based on the long-term engineering experiences of the author, field measurements together with back analyses are presented as the most powerful tools in rock engineering practice. One of the purposes of field measurements is to assess the stability of the rock structures during their construction. However, field measurement results are only numbers unless they are quantitatively interpreted, a process in which back analyses play an important role. The author has developed both the concepts of “critical strain” and of the “anisotropic parameter” of rocks, which can make it possible not only to assess the stability of the structures during their construction, but also to verify the validity of design parameters by the back analysis of field measurement results during the constructions. Based on the back analysis results, the design parameters used at a design stage could be modified if necessary. This procedure is called an “Observational method”, a concept that is entirely different from that of other structures such as bridges and buildings. It is noted that in general, technical books written for practicing engineers mainly focus on empirical approaches which are based on engineers’ experiences. In this book, however, no empirical approaches will be described, instead, all the approaches are based on simple rock mechanics theory. This book is the first to describe an observational method in rock engineering practice, which implies that the potential readers of this book must be practicing engineers working on rock engineering projects.

Risk Assessment in Geotechnical Engineering

Risk Assessment in Geotechnical Engineering
Author: Gordon A. Fenton,D. V. Griffiths
Publsiher: John Wiley & Sons
Total Pages: 488
Release: 2008-09-02
Genre: Science
ISBN: STANFORD:36105131664711

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NEW PROBABILISTIC APPROACHES FOR REALISTIC RISK ASSESSMENT IN GEOTECHNICAL ENGINEERING. This text presents a thorough examination of the theories and methodologies available for risk assessment in geotechnical engineering, spanning the full range from established single-variable and "first order" methods to the most recent, advanced numerical developments. In response to the growing application of LRFD methodologies in geotechnical design, coupled with increased demand for risk assessments from clients ranging from regulatory agencies to insurance companies, authors Fenton and Griffiths have introduced an innovative reliability-based risk assessment method, the Random Finite Element Method (RFEM). The authors have spent more than fifteen years developing this statistically based method for modeling the real spatial variability of soils and rocks. As demonstrated in the book, RFEM performs better in real-world applications than traditional risk assessment tools that do not properly account for the spatial variability of geomaterials. This text is divided into two parts: Part One, Theory, explains the theory underlying risk assessment methods in geotechnical engineering. This part's seven chapters feature more than 100 worked examples, enabling you to develop a detailed understanding of the methods. Part Two, Practice, demonstrates how to use advanced probabilistic tools for several classical geotechnical engineering applications. Working with the RFEM, the authors show how to assess risk in problems familiar to all geotechnical engineers. All the programs used for the geotechnical applications discussed in Part Two may be downloaded from the authors' Web site at www.engmath.dal.ca/rfem/ at no charge, enabling you to duplicate the authors' results and experiment with your own data. In short, you get all the theory and practical guidance you need to apply the most advanced probabilistic approaches for managing uncertainty in geotechnical design.

Rock Fall Engineering

Rock Fall Engineering
Author: Duncan C. Wyllie
Publsiher: CRC Press
Total Pages: 264
Release: 2014-09-24
Genre: Technology & Engineering
ISBN: 9781482219982

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Rock falls can be a public safety issue. This book provides comprehensive information on identification of these hazards, and design and construction of protection methods.Rock Fall Engineering describes first, the theoretical background to rock fall behavior in terms of the impact and trajectory phases of rock falls, and second, how this informati

Engineering Rock Mechanics

Engineering Rock Mechanics
Author: John A Hudson,John P Harrison
Publsiher: Elsevier
Total Pages: 456
Release: 2000-06-12
Genre: Science
ISBN: 0080530966

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Engineering rock mechanics is the discipline used to design structures built in rock. These structures encompass building foundations, dams, slopes, shafts, tunnels, caverns, hydroelectric schemes, mines, radioactive waste repositories and geothermal energy projects: in short, any structure built on or in a rock mass. Despite the variety of projects that use rock engineering, the principles remain the same. Engineering Rock Mechanics clearly and systematically explains the key principles behind rock engineering. The book covers the basic rock mechanics principles; how to study the interactions between these principles and a discussion on the fundamentals of excavation and support and the application of these in the design of surface and underground structures. Engineering Rock Mechanics is recommended as an across-the-board source of information for the benefit of anyone involved in rock mechanics and rock engineering.

Rock Characterisation Modelling and Engineering Design Methods

Rock Characterisation  Modelling and Engineering Design Methods
Author: Xia-Ting Feng,John A. Hudson,Fei Tan
Publsiher: CRC Press
Total Pages: 932
Release: 2013-05-17
Genre: Technology & Engineering
ISBN: 9781315884929

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Rock Characterisation, Modelling and Engineering Design Methods contains the contributions presented at the 3rd ISRM SINOROCK Symposium (Shanghai, China, 1820 June 2013). The papers contribute to the further development of the overall rock engineering design process through the sequential linkage of the three themes of rock characterisation, model