Design analysis in rock mechanics:
Gespeichert in:
1. Verfasser: | |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Boca Raton [u.a.]
CRC Press/Balkema
2012
|
Ausgabe: | 2. ed. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | "This comprehensive introduction to rock mechanics treats the basics of rock mechanics in a clear and straightforward manner and discusses important design problems in terms of the mechanics of materials. Numerous exercises and examples familiarize the reader with solving basic practical problems in rock mechanics through various design analysis techniques and their applications. A large selection of problems at the end of each chapter are available for home assignment, and a course instructor's solution manual is available for home assignments that may be selected from the extensive list of problems given at the end of each chapter. Explanatory and illustrative in character, this book is an ideal course book in rock mechanics for undergraduate and first year graduate students in mining and civil engineering and a useful introduction to rock mechanics for earth scientists and engineers from other disciplines. In this second edition important design problems are discussed from a mechanics of materials approach. Numerous exercises and examples familiarize the reader with solving practical problems in rock mechanics through various design analysis techniques and their applications.Major applications addressed are:rock slope stability in surface excavations, from planar block and wedge slides to rotational and toppling failuresshaft and tunnel stability, ranging from naturally-supported openings to analysis and design of artificial support and reinforcement systemsentries and pillars in stratified groundthree-dimensional caverns, with emphasis on cable bolting and backfillgeometry and forces of chimney caving, combination support and trough subsidencerock bursts and bumps in underground excavations, with focus on dynamic phenomena and on fast and sometimes catastrophic failures.Supporting the main text, appendices provide supplementary information about rock, joint, a Includes bibliographical references and index |
Beschreibung: | XIII, 682 S. zahlr. graph. Darst. |
ISBN: | 9780415893398 9780203136607 |
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adam_text | Titel: Design analysis in rock mechanics
Autor: Pariseau, William G
Jahr: 2012
Design Analysis in
Rock Mechanics
2nd Edition
William G. Pariseau
Malcolm McKinnon Endowed Chair, Emeritus
Department of Mining Engineering,
University of Utah, Salt Lake City, Utah, USA
CRC Press
Taylor Francis Group
Boca Raton London New York Leiden
CRC Press is an Imprint of the
Taylor Francis Group, an informa business
A BALKEMA BOOK
Contents
Preface xi
Acknowledgments xv
1 Introduction 1
1.1 A practical design objective 3
1.2 Problem solving 4
1.3 Units 5
1.4 Background information 7
Rock mechanics literature 7
Mechanical properties of rock 7
1.5 Problems 14
Basics 14
Review of stress 15
Review of strain and elasticity 17
Additional Problems 20
2 Slope stability 21
2.1 Translational rock slopefailures 24
Planar block slides 24
Safety factor improvement 37
Wedge failures 44
2.2 Rotational slopefailures 66
Remedial measures 74
Base failures 77
Toppling failures 80
2.3 Problems 85
Planar block slides 85
Wedge failures 90
Rotational slides 93
Dynamics, toppling 97
Additional Problems 98
vi Contents
3 Shafts 103
3.1 Single unlined naturally supported shafts 103
Shaft wall stress concentration 104
Unlined circular shafts 105
Unlined elliptical shafts 110
Unlined rectangular shafts 117
Shaft wall strengths 129
3.2 Shaft wall support and liners 137
Shaft wall bolting 138
Circular shaft liners 146
Circular steel rings 156
3.3 Multiple naturally supported shafts 15 8
Circular shafts in a row 158
Shaft pillar safety 164
Two circular shafts of different diameter 169
Elliptical shafts in a row 171
Rectangular shafts in a row 174
3.4 Problems 187
Single, naturally supported shafts 187
Supported shafts, liners, bolts, rings 194
Multiple shafts 198
Additional Problems 199
4 Tunnels 201
4.1 Naturally supported tunnels 201
Single tunnels 203
Single tunnel joints 210
Multiple tunnels 215
4.2 Tunnel support 220
Fixed steel sets 220
Partem bolting -
rock reinforcement 234
Combination support 238
Yieldable steel arches 244
Light segment liner 245
4.3 Problems 252
Naturally supported tunnels 252
Supported tunnels 253
Rock mass classification schemes, RQD 258
Additional Problems 258
5 Entries in stratified ground 261
5.7 Review ofbeam analysis 261
Basic beam formulas 262
Important special cases 266
Contents vii
5.2 Softrock entries 275
Naturally supported roof 275
Bolted roof 287
Point anchored roof bolting 287
Distributed anchorage roof bolting 293
Roof trusses 296
Additional Examples 298
5.3 Problems 314
Naturally supported roof 314
Bolted roof 315
Additional Problems 323
6 Pillars in stratified ground 327
6.1 Pillars in a single seam 327
Tributary area, extraction ratio analysis 327
Size effect on strength 331
6.2 Pillars in dipping strata 339
Extraction ratio formulas for pillars in dipping seams 339
An unconventional Mohr s circle representation 343
Generalized Mohr s circle 348
Backfill effects on pillar safety factors 350
6.3 Pillars withjoints 356
Flat seam pillars with joints 356
Dipping seam pillars with joints 360
6.4 Pillars in several seams 365
Columnized main entry pillars 365
Staggered chain entry pillars 3 71
6.5 Barrier pillars 374
6.6 Problems 379
7 Three-dimensional excavations 395
7.1 Naturally supported caverns and stopes 396
Spheroidal excavations 397
Cubical and brick-shaped excavations 406
7.2 Joints in cavern and stope walls 413
7.3 Tabular excavations 414
7.4 Cavern and stope support
416
Hardrock mine fill 417
Cable bolts support
436
Additional Examples 440
7.5 Problems 451
3D Caverns 451
Back fill 452
Cable bolting 454
Additional Problems 456
viii Contents
8 Subsidence 459
8.1 Chimneys 459
Chimney cave geometry 460
Caving rock flow 467
Chimney cave forces 469
Chimney cave water forces 479
Support near caving ground 483
8.2 Troughs 492
Limit of subsidence 493
Maximum subsidence 495
Critical width 495
NCB subsidence profile 497
Angle of draw and subsidence factor adjustments 502
NCB strain profile 506
Surface damage 513
Multipanel, multiseam subsidence 517
Alternative approaches to subsidence 523
8.3 Problems 530
Chimney caving 530
Combination support 533
Subsidence troughs 535
Profile and influence functions 537
9 Dynamic Phenomena 541
9. / Fundamentals ofwave propagation 542
Simple wave propagation models 542
Reflection at free and fixed faces under normal incidence 550
Reflection and transmission at an interface under normal incidence 551
Reflection and transmission at an interface under oblique incidence 553
9.2 Rock bursts and bumps 556
Face bursts and bumps 558
Pillar bursts and bumps 560
Fault Slip 566
9.3 Event location 568
9.4 Problems 575
Appendix A: Background literature 587
A.l Books aboutfundamentals ofmechanics 587
A.2 Books about rock mechanics 588
A.3 Books containing rock properties 590
A. 4 General sources ofrock mechanics information 590
Appendix B: Mechanical properties of intact rock and joints 593
B.l Elastic moduli ofintact rock 594
Young s modulus 594
Poisson s ratio 597
Shear modulus 599
Anisotropy 600
Contents ix
B.2 Strength ofintact rock 602
Tensile strength 602
Unconfined compressive strength 605
Compressive strength under confining pressure 615
Mohr-Coulomb strength 617
Hoek-Brown strength 619
Drucker-Prager strength 619
Nonlinear n-type strength 621
Compressive strength test data 621
B.3 Joint stiffness 627
Normal stiffness 628
Shear stiffness 629
B.4 Joint strength 629
B. 5 Simple combinations ofintact rock andjoints 632
Continuouslyjointed rock mass moduli 634
Discontinuously jointed rock mass moduli 638
Continuously jointed rock mass strengths 640
Discontinuously jointed rock mass strengths 643
Appendix C: Rock mass classification schemes for engineering 649
C. 1 Rock quality designation 649
C.2 Terzaghi modified scheme 649
C 3 RSR, RMR, and Q 650
C.4 Comparisons ofHp estimates 651
C.5 GSI 652
C. 6 Comment 653
Appendix D: Some useful formulas 655
D. l Stress 655
Normal and shear stress on a plane 657
Principal (normal) stresses 658
Principal shear stresses 659
Mohr s circle 660
D.2 Strain 661
Strain rosettes 661
Small strain-displacement relations 663
D.3 Stress-strain relationships, Hooke s law 663
Hooke s law in one dimension -
Young s modulus and shear modulus 663
Hooke s law in two-dimensions -
plane stress and plane strain 671
References 673
Index 679
|
any_adam_object | 1 |
author | Pariseau, William G. |
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edition | 2. ed. |
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id | DE-604.BV040452272 |
illustrated | Illustrated |
indexdate | 2024-07-10T00:24:14Z |
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physical | XIII, 682 S. zahlr. graph. Darst. |
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publisher | CRC Press/Balkema |
record_format | marc |
spelling | Pariseau, William G. Verfasser aut Design analysis in rock mechanics William G. Pariseau 2. ed. Boca Raton [u.a.] CRC Press/Balkema 2012 XIII, 682 S. zahlr. graph. Darst. txt rdacontent n rdamedia nc rdacarrier "This comprehensive introduction to rock mechanics treats the basics of rock mechanics in a clear and straightforward manner and discusses important design problems in terms of the mechanics of materials. Numerous exercises and examples familiarize the reader with solving basic practical problems in rock mechanics through various design analysis techniques and their applications. A large selection of problems at the end of each chapter are available for home assignment, and a course instructor's solution manual is available for home assignments that may be selected from the extensive list of problems given at the end of each chapter. Explanatory and illustrative in character, this book is an ideal course book in rock mechanics for undergraduate and first year graduate students in mining and civil engineering and a useful introduction to rock mechanics for earth scientists and engineers from other disciplines. In this second edition important design problems are discussed from a mechanics of materials approach. Numerous exercises and examples familiarize the reader with solving practical problems in rock mechanics through various design analysis techniques and their applications.Major applications addressed are:rock slope stability in surface excavations, from planar block and wedge slides to rotational and toppling failuresshaft and tunnel stability, ranging from naturally-supported openings to analysis and design of artificial support and reinforcement systemsentries and pillars in stratified groundthree-dimensional caverns, with emphasis on cable bolting and backfillgeometry and forces of chimney caving, combination support and trough subsidencerock bursts and bumps in underground excavations, with focus on dynamic phenomena and on fast and sometimes catastrophic failures.Supporting the main text, appendices provide supplementary information about rock, joint, a Includes bibliographical references and index Geologie Geowissenschaften Rock mechanics Textbooks SCIENCE / Earth Sciences / General bisacsh SCIENCE / Earth Sciences / Geology bisacsh TECHNOLOGY & ENGINEERING / Civil / General bisacsh Tunnelbau (DE-588)4061215-6 gnd rswk-swf Gebirgsmechanik (DE-588)4126280-3 gnd rswk-swf Unterirdisches Bauwerk (DE-588)4223830-4 gnd rswk-swf Geotechnik (DE-588)4156771-7 gnd rswk-swf Untertagebau (DE-588)4062035-9 gnd rswk-swf Tagebau (DE-588)4058898-1 gnd rswk-swf Konstruktion (DE-588)4032231-2 gnd rswk-swf Felsbau (DE-588)4153971-0 gnd rswk-swf Bergbau (DE-588)4005614-4 gnd rswk-swf Gebirgsmechanik (DE-588)4126280-3 s Unterirdisches Bauwerk (DE-588)4223830-4 s Untertagebau (DE-588)4062035-9 s Tagebau (DE-588)4058898-1 s Konstruktion (DE-588)4032231-2 s DE-604 Geotechnik (DE-588)4156771-7 s Felsbau (DE-588)4153971-0 s Bergbau (DE-588)4005614-4 s Tunnelbau (DE-588)4061215-6 s HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=025299893&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Pariseau, William G. Design analysis in rock mechanics Geologie Geowissenschaften Rock mechanics Textbooks SCIENCE / Earth Sciences / General bisacsh SCIENCE / Earth Sciences / Geology bisacsh TECHNOLOGY & ENGINEERING / Civil / General bisacsh Tunnelbau (DE-588)4061215-6 gnd Gebirgsmechanik (DE-588)4126280-3 gnd Unterirdisches Bauwerk (DE-588)4223830-4 gnd Geotechnik (DE-588)4156771-7 gnd Untertagebau (DE-588)4062035-9 gnd Tagebau (DE-588)4058898-1 gnd Konstruktion (DE-588)4032231-2 gnd Felsbau (DE-588)4153971-0 gnd Bergbau (DE-588)4005614-4 gnd |
subject_GND | (DE-588)4061215-6 (DE-588)4126280-3 (DE-588)4223830-4 (DE-588)4156771-7 (DE-588)4062035-9 (DE-588)4058898-1 (DE-588)4032231-2 (DE-588)4153971-0 (DE-588)4005614-4 |
title | Design analysis in rock mechanics |
title_auth | Design analysis in rock mechanics |
title_exact_search | Design analysis in rock mechanics |
title_full | Design analysis in rock mechanics William G. Pariseau |
title_fullStr | Design analysis in rock mechanics William G. Pariseau |
title_full_unstemmed | Design analysis in rock mechanics William G. Pariseau |
title_short | Design analysis in rock mechanics |
title_sort | design analysis in rock mechanics |
topic | Geologie Geowissenschaften Rock mechanics Textbooks SCIENCE / Earth Sciences / General bisacsh SCIENCE / Earth Sciences / Geology bisacsh TECHNOLOGY & ENGINEERING / Civil / General bisacsh Tunnelbau (DE-588)4061215-6 gnd Gebirgsmechanik (DE-588)4126280-3 gnd Unterirdisches Bauwerk (DE-588)4223830-4 gnd Geotechnik (DE-588)4156771-7 gnd Untertagebau (DE-588)4062035-9 gnd Tagebau (DE-588)4058898-1 gnd Konstruktion (DE-588)4032231-2 gnd Felsbau (DE-588)4153971-0 gnd Bergbau (DE-588)4005614-4 gnd |
topic_facet | Geologie Geowissenschaften Rock mechanics Textbooks SCIENCE / Earth Sciences / General SCIENCE / Earth Sciences / Geology TECHNOLOGY & ENGINEERING / Civil / General Tunnelbau Gebirgsmechanik Unterirdisches Bauwerk Geotechnik Untertagebau Tagebau Konstruktion Felsbau Bergbau |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=025299893&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT pariseauwilliamg designanalysisinrockmechanics |