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E-raamat: Rock Mechanics and Engineering Volume 3: Analysis, Modeling & Design

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Analysis, Modeling & Design is the third volume of the five-volume set Rock Mechanics and Engineering and contains twenty-eight chapters from key experts in the following fields: - Numerical Modeling Methods; - Back Analysis; - Risk Analysis; - Design and Stability Analysis: Overviews; - Design and Stability Analysis: Coupling Process Analysis; - Design and Stability Analysis: Blast Analysis and Design; - Rock Slope Stability Analysis and Design; - Analysis and Design of Tunnels, Caverns and Stopes.

The five-volume set Comprehensive Rock Engineering, which was published in 1993, has had an important influence on the development of rock mechanics and rock engineering. Significant and extensive advances and achievements in these fields over the last 20 years now justify the publishing of a comparable, new compilation. Rock Mechanics and Engineering represents a highly prestigious, multi-volume work edited by Professor Xia-Ting Feng, with the editorial advice of Professor John A. Hudson. This new compilation offers an extremely wideranging and comprehensive overview of the state-of-the-art in rock mechanics and rock engineering and is composed of peer-reviewed, dedicated contributions by all the key experts worldwide.

Key features of this set are that it provides a systematic, global summary of new developments in rock mechanics and rock engineering practices as well as looking ahead to future developments in the fields. Contributors are worldrenowned experts in the fields of rock mechanics and rock engineering, though younger, talented researchers have also been included. The individual volumes cover an extremely wide array of topics grouped under five overarching themes: Principles (Vol. 1), Laboratory and Field Testing (Vol. 2), Analysis, Modelling and Design (Vol. 3), Excavation, Support and Monitoring (Vol. 4) and Surface and Underground Projects (Vol. 5).

This multi-volume work sets a new standard for rock mechanics and engineering compendia and will be the go-to resource for all engineering professionals and academics involved in rock mechanics and engineering for years to come.

Arvustused

"There is no doubt that this compendium not only will be of great assistance to all those working in the subject area, whether in research or practice, but it also marks just how far the subject has developed in the 50+ years since 1962 and especially in the 20+ years since the last such survey."

John A. Hudson, Emeritus Professor, Imperial College London, UK. President of the International Society for Rock Mechanics (ISRM) 2007-2011

"Rock Mechanics and Engineering represents a highly prestigious, multi-volume work that, as with the first edition, is deftly edited by Professor Feng, along with the editorial advice of Professor John A. Hudson. This new compilation offers an extremely wide-ranging and comprehensive overview of the state-of-the-art in rock mechanics and rock engineering and is composed of peer-reviewed, dedicated contributions by all the key experts worldwide.

Impressively comprehensive, exceptionally well organized and presented, this five volume work clearly sets a new standard as a rock mechanics and engineering compendia that will be the indispensable go-to resource for all engineering professionals and academics involved in rock mechanics and engineering for years to come."

Paul T. Vogel in The Midwest Book Review, September 2017

Foreword ix
Introduction xi
Numerical Modeling Methods
1(200)
1 Coupled THMC modeling for safety assessment of geological disposal of radioactive wastes: The DECOVALEX project (1992--2015)
3(42)
J.A. Hudson
C.-F. Tsang
L. Jing
2 Dynamic relaxation applied to continuum and discontinuum numerical models in geomechanics
45(46)
P. Cundall
C. Detournay
3 The numerical Discontinuous Deformation Analysis (DDA) method: Benchmark tests
91(30)
G. Yagoda-Biran
Y.H. Hatzor
4 Continuum-discontinuum element method
121(30)
S.H. Li
D. Zhou
J. Wang
C. Feng
5 Discrete element modeling: Principle and application in weak cemented particulate materials
151(22)
T.G. Sitharam
S.D. Anitha Kumari
6 Practical equivalent continuum analyses of jointed rockmass: Experiments, numerical modeling, validation and field case studies
173(28)
T.G. Sitharam
Back Analysis
201(96)
7 Back analysis in rock engineering practice
203(34)
S. Sakurai
8 Back-analysis of rock landslides to infer rheological parameters
237(32)
S. Martino
M. Della Seta
C. Esposito
9 Multi-approach back analysis in mining
269(28)
L.R. Alejano
Risk Analysis
297(102)
10 Groundwater and underground excavations: From theory to practice
299(32)
M. Sharifzadeh
M. Javadi
11 Reliability assessment of ultimate and serviceability limit states of underground rock caverns
331(28)
A.T.C. Goh
W. Zhang
12 Risk assessment of C02 injection processes and storage
359(40)
L. Ribeiro E Sousa
R. Leal E Sousa
E. Vargas Jr.
R. Velloso
K. Karam
Design and Stability Analysis: Overviews
399(82)
13 Empirical design methods in underground mining
401(24)
P.B. Hughes
D. Milne
R.C. Pakalnis
A. Samaniego
14 20 years of intelligent rock mechanics
425(26)
X.T. Feng
C.X. Yang
15 Rock Engineering Systems (RES): An update
451(30)
J.A. Hudson
Design and Stability Analysis: Coupling Process Analysis
481(98)
16 Multiphysics of coal-gas interactions
483(30)
M.Y. Wei
Z.W. Chen
J.S. Liu
G.L. Cui
Y.L. Tan
S.W. Zhang
17 Geomechanical stability and integrity of nuclear waste disposal mines in salt structures
513(36)
S. Heusermann
S. Fahland
R. Eickemeier
18 Rock engineering in underground compressed air energy storage
549(30)
D. Ryu
H. Kim
D. Park
Design and Stability Analysis: Blast Analysis and Design
579(124)
19 Blast-induced damage
581(20)
F.G. Bastante
20 Blasting propagation velocity
601(36)
C. Gonzalez-Nicieza
M.I. Alvarez-Fernandez
21 Statistical estimation of blast fragmentation
637(32)
J.-H. Han
J.-J. Song
22 Blasting parameters
669(34)
E. Ghasemi
M. Rahmanpour
Rock Slope Stability Analysis and Design
703(116)
23 Application of fracture mechanics to rock slopes
705(32)
D. Elmo
D. Stead
24 Development and application of numerical limit analysis for geotechnical materials
737(48)
Z. Yingren
25 Open pit slope design
785(34)
J.R.L. Read
P.F. Stacey
Analysis and Design of Tunnels, Caverns and Stopes
819(96)
26 Q-system: An illustrated guide for tunneling
821(44)
N. Barton
E. Grimstad
27 TBM performance, prognosis and risk reduction
865(38)
N. Barton
28 Design guidelines for open stope support
903(12)
Y. Potvin
Series page 915
Xia-Ting Feng graduated in 1986 from the Northeast University of Technology and obtained his PhD in 1992 at the Northeastern University, China. He was then appointed and acted as Lecturer, Associate Professor and Professor at the same university. In 1998, he was admitted by the Hundred Talents Programme to the Chinese Academy of Sciences (CAS). Subsequently, he permanently joined CAS - Institute of Rock and Soil Mechanics at Wuhan, China. In 2003, he obtained the support of the China National Funds for Distinguished Young Scientists; in 2010, he became a Chair Professor of the Cheung Kong Scholars Programme, Ministry of Education, China; and, in 2009, he was elected as President of the International Society for Rock Mechanics for the period 2011-2015. He is currently Director of the State Key Laboratory of Geomechanics and Geotechnical Engineering in Wuhan. Additionally, in 2012, Professor Feng became the Co-President of the Chinese Society for Rock Mechanics and Engineering. He has made original contributions to the subject of "intelligent rock mechanics" and his methods have been applied to large rock engineering projects in China and other countries.