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Rock Reinforcement and Rock Support: ISRM Book Series

Autor Ömer Aydan
en Limba Engleză Paperback – 30 iun 2021
The stability of underground and surface geotechnical structures during and after excavation is of great concern as any kind of instability may result in damage to the environment as well as time-consuming high cost repair work. The forms of instability, their mechanisms and the conditions associated with them must be understood so that correct stabilisation of the structure through rock reinforcement and/or rock support can be undertaken.


Rock Reinforcement and Rock Support elucidates the reinforcement functions of rock bolts/rock anchors and support systems consisting of shotcrete, steel ribs and concrete liners and evaluates their reinforcement and supporting effects both qualitatively and quantitatively. It draws on the research activities and practices carried out by the author for more than three decades and has culminated in a most extensive up-to-date and a complete treatise on rock reinforcement and rock support.
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Specificații

ISBN-13: 9781032095875
ISBN-10: 1032095873
Pagini: 500
Dimensiuni: 174 x 246 x 26 mm
Greutate: 0.85 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Seria ISRM Book Series


Public țintă

Postgraduate, Professional, Professional Practice & Development, and Undergraduate

Cuprins

Introduction. Mechanism of Failure in Rock Engineering Structures and its Influencing Factors. Rock Mass Supporting and Reinforcement. Experimental Studies. Modelling of Rockbolt and Rock Anchor Systems. Underground openings. Surface structures. Rockbolts and Rock Anchors Against Dynamic Loads. Conclusions. References

Notă biografică

Ömer Aydan was born in 1955, and studied Mining Engineering at the Technical University of Istanbul, Turkey (B.Sc., 1979), Rock Mechanics and Excavation Engineering at the University of Newcastle upon Tyne, UK (M.Sc., 1982), and received his Ph.D. in Geotechnical Engineering from Nagoya University, Japan in 1989.
Prof. Aydan worked at Nagoya University as a research associate (1987-1991), and then at the Department of Marine Civil Engineering at Tokai University, first as Assistant Professor (1991-1993), then as Associate Professor (1993-2001), and finally as Professor (2001-2010). He then became Professor of the Institute of Oceanic Research and Development at Tokai University, and is currently Professor at the University of Ryukyus, Department of Civil Engineering & Architecture, Nishihara, Okinawa, Japan.


Ömer has played an active role on numerous ISRM, JSCE, JGS, SRI and Rock Mech. National Group of Japan committees, and has organized several national and international symposia and conferences.

Recenzii

"This book offers a wide variety of scholarly and applied approaches that can be used for stabilizing excavations in rock masses underground and surface. The author connects the theory with practice through numerous examples involving numerical modeling, laboratory testing, and in situ experimentations. These examples are mostly based on the author's wide-ranging experience worldwide on the subject. Rich in photographs and illustrations, the book offers educational and practical outcomes that can be used by the educators. The book gives an extensive coverage of the mechanisms involved during the rock mass - support interaction process, which are demonstrated through a wide variety of case histories. Also incorporated in the book are the examples from the rock reinforcement practices presented through detailed sketches and photographs. Researchers and practitioners can benefit from the book too as a valuable supplement to their work through a wide variety of numerical and in situ modeling exercises."
Ugur Ozbay, Professor at the Department of Mining Engineering at the Colorado School of Mines. Reviewed Feb 2018.

Descriere

The stability of underground and surface geotechnical structures during and after excavation is of great concern as any kind of instability may result in damage to the environment as well as time-consuming high cost repair work. The forms of instability, their mechanisms and the conditions associated with them must be understood so that correct sta