Geotechnical earthquake engineering handbook:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
New York [u.a.]
McGraw-Hill
2002
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Schriftenreihe: | McGraw-Hill handbooks
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Schlagworte: | |
Online-Zugang: | Table of contents Inhaltsverzeichnis |
Beschreibung: | Includes bibliographical references (p. F1-F11) and index |
Beschreibung: | Getr. Zählung Ill., graph. Darst. |
ISBN: | 0071377824 |
Internformat
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245 | 1 | 0 | |a Geotechnical earthquake engineering handbook |c Robert W. Day |
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490 | 0 | |a McGraw-Hill handbooks | |
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650 | 4 | |a Earthquake engineering |v Handbooks, manuals, etc | |
650 | 4 | |a Engineering geology |v Handbooks, manuals, etc | |
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Datensatz im Suchindex
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adam_text | GEOTECHNICAL EARTHQUAKE ENGINEERING HANDBOOK ROBERT W. DAY MCGRAW-HILL
NEW YORK CHICAGO SAN FRANCISCO LISBON LONDON MADRID MEXICO CITY MILAN
NEW DELHI SAN JUAN SEOUL SINGAPORE SYDNEY TORONTO CONTENTS PREFACE XI
ACKNOWLEDGMENTS XII CHAPTER 1. INTRODUCTION 1.1 1.1 GEOTECHNICAL
EARTHQUAKE ENGINEERING / 1.1 1.2 ENGINEERING GEOLOGY / 1.2 1.3
GEOTECHNICAL ENGINEERING TERMS / 1.2 1.4 SYMBOLS AND UNITS / 1.3 1.5
BOOK OUTLINE / 1.3 PART 1 INTRODUCTION TO EARTHQUAKES CHAPTER 2. BASIC
EARTHQUAKE PRINCIPLES 2.3 2.1 PLATE TECTONICS / 2.3 2.1.1 TYPES OF
FAULTS I 2.11 2.2 SEISMOGRAPH / 2.13 2.3 SEISMIC WAVES / 2.14 2.4
MAGNITUDE OF AN EARTHQUAKE / 2.16 2.4.1 LOCAL MAGNITUDE SCALE M L I
2.16 2.4.2 SURFACE WAVE MAGNITUDE SCALE M S I 2.18 2.4.3 MOMENT
MAGNITUDE SCALE M W I 2.18 2.4.4 COMPARISON OF MAGNITUDE SCALES / 2.19
2.4.5 SUMMARY / 2.20 2.5 INTENSITY OF AN EARTHQUAKE / 2.21 2.6 PROBLEMS
/ 2.21 CHAPTER 3. COMMON EARTHQUAKE EFFECTS 3.1 3.1 INTRODUCTION I 3.1
3.2 SURFACE RUPTURE / 3.1 3.2.1 DESCRIPTION / 3.1 3.2.2 DAMAGE CAUSED BY
SURFACE RUPTURE / 3.2 3.3 REGIONAL SUBSIDENCE / 3.8 3.4 LIQUEFACTION /
3.14 3.4.1 INTRODUCTION I 3.14 3.4.2 SETTLEMENT AND BEARING CAPACITY
FAILURES / 3.15 CONTENTS 3.4.3 WATERFRONT STRUCTURES / 3.17 3.4.4 FLOW
SLIDES / 3.28 3.4.5 LATERAL SPREADING 7 3.31 3.5 SLOPE MOVEMENT / 3.33
3.5.1 TYPES OF EARTHQUAKE-INDUCED SLOPE MOVEMENT / 3.33 3.5.2 EXAMPLES
OF EARTHQUAKE-INDUCED SLOPE MOVEMENT / 3.34 3.5.3 SEISMIC EVALUATION OF
SLOPE STABILITY / 3.44 3.6 TSUNAMI AND SEICHE / 3.46 CHAPTER 4.
EARTHQUAKE STRUCTURAL DAMAGE 4.1 4.1 INTRODUCTION I 4.1 A2
EARTHQUAKE-INDUCED SETTLEMENT / 4.2 A3 TORSION / 4.4 4.4 SOFT STORY /
4.6 4.4.1 DEFINITION AND EXAMPLES / 4.6 4.4.2 PANCAKING / 4.10 A A3
SHEAR WALLS / 4.15 4.4.4 WOOD-FRAME STRUCTURES / 4.16 4.5 POUNDING
DAMAGE / 4.18 4.5.1 IMPACT DAMAGE FROM COLLAPSE OF ADJACENT STRUCTURES /
4.18 4.5.2 ASYMMETRY / 4.19 4.6 RESONANCE OF THE STRUCTURE / 4.20 4.6.1
SOFT GROUND EFFECTS / 4.21 PART 2 GEOTECHNICAL EARTHQUAKE ENGINEERING
ANALYSES CHAPTER 5. SITE INVESTIGATION FOR GEOTECHNICAL EARTHQUAKE
ENGINEERING 5.3 5.1 INTRODUCTION / 5.4 5.1.1 SCOPE OF THE SITE
INVESTIGATION I 5.4 5.2 SCREENING INVESTIGATION / 5.6 5.3 QUANTITATIVE
EVALUATION / 5.10 5.4 SUBSURFACE EXPLORATION / 5.11 5.4.1 BORINGS, TEST
PITS, AND TRENCHES / 5.11 5.4.2 SOIL SAMPLING / 5.15 5.4.3 STANDARD
PENETRATION TEST / 5.17 5.4.4 CONE PENETRATION TEST / 5.22 5.5
LABORATORY TESTING / 5.25 5.5.1 SHEAR STRENGTH / 5.27 5.5.2 CYCLIC
TRIAXIAL TEST / 5.31 5.6 PEAK GROUND ACCELERATION / 5.33 5.6.1
INTRODUCTION / 5.33 5.6.2 METHODS USED TO DETERMINE THE PEAK GROUND
ACCELERATION / 5.34 5.6.3 EXAMPLE OF THE DETERMINATION OF PEAK GROUND
ACCELERATION / 5.36 5.6.4 LOCAL SOIL AND GEOLOGIC CONDITIONS / 5.41 5.7
REPORT PREPARATION / 5.41 5.8 PROBLEMS / 5.42 CHAPTER 6. LIQUEFACTION
6.1 6.1 INTRODUCTION / 6.2 6.2 LABORATORY LIQUEFACTION STUDIES / 6.2
6.2.1 LABORATORY DATA FROM ISHIHARA / 6.2 CONTENTS VII 6.2.2 LABORATORY
DATA FROM SEED AND LEE / 6.6 6.3 MAIN FACTORS THAT GOVERN LIQUEFACTION
IN THE FIELD / 6.6 6.4 LIQUEFACTION ANALYSIS / 6.10 6.4.1 INTRODUCTION /
6.10 6.4.2 CYCLIC STRESS RATIO CAUSED BY THE EARTHQUAKE / 6.11 6.4.3
CYCLIC RESISTANCE RATIO FROM THE STANDARD PENETRATION TEST / 6.14 6.A.A
FACTOR OF SAFETY AGAINST LIQUEFACTION / 6.17 6.4.5 EXAMPLE PROBLEM /
6.18 6.A.6 CYCLIC RESISTANCE RATIO FROM THE CONE PENETRATION TEST / 6.19
6.4.7 CYCLIC RESISTANCE RATIO FROM THE SHEAR WAVE VELOCITY / 6.19 6.5
REPORT PREPARATION / 6.22 6.6 PROBLEMS / 6.22 CHAPTER 7.
EARTHQUAKE-INDUCED SETTLEMENT 7.1 7.1 INTRODUCTION / 7.2 7.2 SETTLEMENT
VERSUS FACTOR OF SAFETY AGAINST LIQUEFACTION / 7.3 7.2.1 INTRODUCTION /
7.3 7.2.2 METHODS OF ANALYSIS / 7.3. 7.2.3 LIMITATIONS / 7.7 7.3
LIQUEFACTION-INDUCED GROUND DAMAGE / 7.8 7.3.1 TYPES OF DAMAGE / 7.8
7.3.2 METHOD OF ANALYSIS / 7.9 7.3.3 EXAMPLE PROBLEM / 7.11 7.4
VOLUMETRIC COMPRESSION I 7.12 7.4.1 MAIN FACTORS CAUSING VOLUMETRIC
COMPRESSION / 7.12 7.4.2 SIMPLE SETTLEMENT CHART / 7.12 7.4.3 METHOD BY
TOKIMATSU AND SEED / 7.13 7.4.4 EXAMPLE PROBLEM / 7.17 7.4.5 LIMITATIONS
/ 7.19 7.5 SETTLEMENT DUE TO DYNAMIC LOADS CAUSED BY ROCKING / 7.20 7.6
PROBLEMS / 7.21 CHAPTER 8. BEARING CAPACITY ANALYSES FOR EARTHQUAKES 8.1
8.1 INTRODUCTION / 8.2 8.1.1 GENERAL, PUNCHING, AND LOCAL SHEAR / 8.2
8.1.2 BEARING CAPACITY FAILURES / 8.3 8.1.3 SHEAR STRENGTH / 8.6 8.1.4
ONE-THIRD INCREASE IN BEARING PRESSURE FOR SEISMIC CONDITIONS / 8.7 8.2
BEARING CAPACITY ANALYSES FOR LIQUEFIED SOIL / 8.8 8.2.1 INTRODUCTION /
8.8 8.2.2 PUNCHING SHEAR ANALYSIS / 8.10 8.2.3 TERZAGHI BEARING CAPACITY
EQUATION / 8.15 8.2.4 DEEP FOUNDATIONS / 8.19 8.2.5 OTHER DESIGN
CONSIDERATIONS / 8.21 8.2.6 EXAMPLE PROBLEM / 8.22 8.3 GRANULAR SOIL
WITH EARTHQUAKE-INDUCED PORE WATER PRESSURES / 8.27 8.3.1 INTRODUCTION /
8.27 8.3.2 BEARING CAPACITY EQUATION / 8.27 8.3.3 EXAMPLE PROBLEM / 8.28
8.4 BEARING CAPACITY ANALYSIS FOR COHESIVE SOIL WEAKENED BY THE
EARTHQUAKE / 8.30 8.4.1 INTRODUCTION / 8.30 8.4.2 BEARING CAPACITY
EQUATION / 8.30 8.4.3 EXAMPLE PROBLEM / 8.32 8.5 REPORT PREPARATION /
8.33 8.6 PROBLEMS / 8.36 F KIEDERS. 8TAAT8-U.ONIV.-I B1BU0THEK I OXNUGBM
VIII CONTENTS CHAPTER 9. SLOPE STABILITY ANALYSES FOR EARTHQUAKES 9.1
9.1 INTRODUCTION / 9.2 9.1.1 INERTIA SLOPE STABILITY ANALYSIS / 9.5
9.1.2 WEAKENING SLOPE STABILITY ANALYSIS / 9.8 9.1.3 CROSS SECTION AND
SOIL PROPERTIES / 9.9 9.2 INERTIA SLOPE STABILITY*PSEUDOSTATIC METHOD /
9.9 9.2.1 INTRODUCTION / 9.9 9.2.2 SELECTION OF THE SEISMIC COEFFICIENT
/ 9.10 9.2.3 WEDGE METHOD / 9.11 9.2.4 METHOD OF SLICES / 9.13 9.2.5
LANDSLIDE ANALYSIS / 9.14 9.2.6 OTHER SLOPE STABILITY CONSIDERATIONS /
9.16 9.2.7 EXAMPLE PROBLEM / 9.18 9.3 INERTIA SLOPE STABILITY*NEWMARK
METHOD / 9.25 9.3.1 INTRODUCTION / 9.25 9.3.2 EXAMPLE PROBLEM / 9.29
9.3.3 LIMITATION OF THE NEWMARK METHOD / 9.29 9.4 WEAKENING SLOPE
STABILITY*FLOW SLIDES / 9.32 9.4.1 INTRODUCTION / 9.32 9.4.2 FACTOR OF
SAFETY AGAINST LIQUEFACTION FOR SLOPES / 9.34 9.4.3 STABILITY ANALYSIS
FOR LIQUEFIED SOIL / 9.36 9.4.4 LIQUEFIED SHEAR STRENGTH / 9.42 9.5
WEAKENING SLOPE STABILITY*LIQUEFACTION-INDUCED LATERAL SPREADING / 9.44
9.5.1 INTRODUCTION / 9.44 9.5.2 EMPIRICAL METHOD / 9.46 9.5.3 EXAMPLE
PROBLEM / 9.48 9.5.4 SUMMARY / 9.49 9.6 WEAKENING SLOPE
STABILITY*STRAIN-SOFTENING SOIL / 9.50 9.7 MITIGATION OF SLOPE HAZARDS /
9.50 9.7.1 ALLOWABLE LATERAL MOVEMENT / 9.51 9.7.2 MITIGATION OPTIONS /
9.52 9.8 REPORT PREPARATION / 9.55 9.9 PROBLEMS / 9.56 CHAPTER 10.
RETAINING WALL ANALYSES FOR EARTHQUAKES 10.1 10.1 INTRODUCTION / 10.2
10.1.1 RETAINING WALL ANALYSES FOR STATIC CONDITIONS / 10.2 10.1.2
RETAINING WALL ANALYSES FOR EARTHQUAKE CONDITIONS / 10.9 10.1.3
ONE-THIRD INCREASE IN SOIL PROPERTIES FOR SEISMIC CONDITIONS / 10.9 10.2
PSEUDOSTATIC METHOD / 10.10 10.2.1 INTRODUCTION / 10.10 10.2.2 METHOD BY
SEED AND WHITMAN / 10.12 10.2.3 METHOD BY MONONOBE AND OKABE / 10.12
10.2.4 EXAMPLE PROBLEM / 10.12 10.2.5 MECHANICALLY STABILIZED EARTH
RETAINING WALLS / 10.19 10.3 RETAINING WALL ANALYSES FOR LIQUEFIED SOIL
/ 10.23 10.3.1 INTRODUCTION / 10.23 10.3.2 DESIGN PRESSURES / 10.24
10.3.3 SHEET PILE WALLS / 70.25 10.3.4 SUMMARY / 10.31 10.4 RETAINING
WALL ANALYSES FOR WEAKENED SOIL / 10.31 10.5 RESTRAINED RETAINING WALLS
/ 10.32 10.5.1 INTRODUCTION / 10.32 10.5.2 METHOD OF ANALYSIS / 10.32
10.5.3 EXAMPLE PROBLEM / 10.32 CONTENTS IX 10.6 TEMPORARY RETAINING
WALLS / 10.33 10.6.1 STATIC DESIGN / 10.33 10.6.2 EARTHQUAKE ANALYSIS /
10.35 10.7 PROBLEMS / 10.35 CHAPTER 11. OTHER GEOTECHNICAL EARTHQUAKE
ENGINEERING ANALYSES 11.1 11.1 INTRODUCTION / 11.1 11.2 SURFACE RUPTURE
ZONE / 11.2 11.2.1 INTRODUCTION / 11.2 11.2.2 DESIGN APPROACH / 11.2
11.2.3 GROUNDWATER / 11.4 11.3 PAVEMENT DESIGN / 11.5 11.3.1
INTRODUCTION / 11.5 11.3.2 FLEXIBLE PAVEMENTS / 11.5 11.3.3 EARTHQUAKE
DESIGN / 11.6 11.4 PIPELINE DESIGN / 11.8 11.4.1 INTRODUCTION / 11.8
11.4.2 STATIC DESIGN / 11.10 11.4.3 EARTHQUAKE DESIGN / 11.15 11.5
RESPONSE SPECTRUM / 11.15 11.5.1 INTRODUCTION / 11.15 11.5.2 RESPONSE
SPECTRUM PER THE UNIFORM BUILDING CODE I 11.16 11.5.3 ALTERNATE METHOD /
11.20 11.5.4 EXAMPLE PROBLEM / 11.21 11.6 PROBLEMS / 11.21 PART 3 SITE
IMPROVEMENT METHODS TO MITIGATE EARTHQUAKE EFFECTS CHAPTER 12. GRADING
AND OTHER SOIL IMPROVEMENT METHODS 12.3 12.1 INTRODUCTION / 12.3 12.2
GRADING / 12.4 ; 12.3 OTHER SITE IMPROVEMENT METHODS / 12-5 12.3.1 SOIL
REPLACEMENT / 12.5 12.3.2 WATER REMOVAL / 12.5 12.3.3 SITE STRENGTHENING
/ 12.8 12.3.4 GROUTING / 12.8 12.3.5 THERMAL / 12.10 12.3.6 SUMMARY /
12.10 12.4 GROUNDWATER CONTROL / 12.10 12.4.1 INTRODUCTION / 12.10
12.4.2 METHODS OF GROUNDWATER CONTROL / 12.12 12.4.3 GROUNDWATER CONTROL
FOR SLOPES / 12.12 CHAPTER 13. FOUNDATION ALTERNATIVES TO MITIGATE
EARTHQUAKE EFFECTS 13.1 13.1 INTRODUCTION / 13.1 13.2 SHALLOW
FOUNDATIONS / 13.1 13.3 DEEP FOUNDATIONS / 13.2 13.3.1 INTRODUCTION /
13.2 CONTENTS 13.3.2 PIER AND GRADE BEAM SUPPORT / 13.5 13.3.3
PRESTRESSED CONCRETE PILES / 13.17 13.4 FOUNDATIONS FOR SINGLE-FAMILY
HOUSES / 13.32 13.4.1 RAISED WOOD FLOOR FOUNDATION / 13.34 13.4.2
SLAB-ON-GRADE / 13.36 13:4.3 CALIFORNIA NORTHRIDGE EARTHQUAKE / 13.38
13.5 PROBLEMS / 13.39 PART 4 BUILDING CODES CHAPTER 14. EARTHQUAKE
PROVISIONS IN BUILDING CODES 14.3 14.1 INTRODUCTION / 14.3 14.2 CODE
DEVELOPMENT / 14.3 14.3 LIMITATIONS OF BUILDING CODES / 14.4 APPENDIX A.
GLOSSARIES A.I GLOSSARY 1 FIELD TESTING TERMINOLOGY / A.2 GLOSSARY 2
LABORATORY TESTING TERMINOLOGY / A.5 GLOSSARY 3 TERMINOLOGY FOR
ENGINEERING ANALYSIS AND COMPUTATIONS / A. 11 GLOSSARY 4 COMPACTION,
GRADING, AND CONSTRUCTION TERMINOLOGY / A. 16 GLOSSARY 5 EARTHQUAKE
TERMINOLOGY / A.21 GLOSSARY REFERENCES / A.27 APPENDIX APPENDIX M C.
APPENDIX D, EARTHQUAKE APPENDIX APPENDIX E. F. EQSEARCH, EQFAULT, AND
CONVERSION FACTORS . EXAMPLE OF A GEOTECHNICAL ENGINEERING SOLUTION TO
PROBLEMS REFERENCES FRISKSP COMPUTER PROGRAMS REPORT DEALING WITH B.I
C.I D.1 E.1 F.1 INDEX 1.1
|
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author | Day, Robert W. |
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series2 | McGraw-Hill handbooks |
spelling | Day, Robert W. Verfasser aut Geotechnical earthquake engineering handbook Robert W. Day New York [u.a.] McGraw-Hill 2002 Getr. Zählung Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier McGraw-Hill handbooks Includes bibliographical references (p. F1-F11) and index Earthquake engineering Handbooks, manuals, etc Engineering geology Handbooks, manuals, etc Ingenieurgeologie (DE-588)4125674-8 gnd rswk-swf Erdbeben (DE-588)4015134-7 gnd rswk-swf Erdbeben (DE-588)4015134-7 s Ingenieurgeologie (DE-588)4125674-8 s DE-604 http://www.loc.gov/catdir/toc/mh023/2002278152.html Table of contents GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009883444&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Day, Robert W. Geotechnical earthquake engineering handbook Earthquake engineering Handbooks, manuals, etc Engineering geology Handbooks, manuals, etc Ingenieurgeologie (DE-588)4125674-8 gnd Erdbeben (DE-588)4015134-7 gnd |
subject_GND | (DE-588)4125674-8 (DE-588)4015134-7 |
title | Geotechnical earthquake engineering handbook |
title_auth | Geotechnical earthquake engineering handbook |
title_exact_search | Geotechnical earthquake engineering handbook |
title_full | Geotechnical earthquake engineering handbook Robert W. Day |
title_fullStr | Geotechnical earthquake engineering handbook Robert W. Day |
title_full_unstemmed | Geotechnical earthquake engineering handbook Robert W. Day |
title_short | Geotechnical earthquake engineering handbook |
title_sort | geotechnical earthquake engineering handbook |
topic | Earthquake engineering Handbooks, manuals, etc Engineering geology Handbooks, manuals, etc Ingenieurgeologie (DE-588)4125674-8 gnd Erdbeben (DE-588)4015134-7 gnd |
topic_facet | Earthquake engineering Handbooks, manuals, etc Engineering geology Handbooks, manuals, etc Ingenieurgeologie Erdbeben |
url | http://www.loc.gov/catdir/toc/mh023/2002278152.html http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009883444&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT dayrobertw geotechnicalearthquakeengineeringhandbook |