Handbook of concrete bridge management:
Gespeichert in:
Hauptverfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
[Reston, Va.]
ASCE Press
2004
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Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XXV, 468 S. Ill., graph. Darst. |
ISBN: | 0784405603 |
Internformat
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245 | 1 | 0 | |a Handbook of concrete bridge management |c Fernando A. Branco ; Jorge de Brito |
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adam_text | HANDBOOK OF CONCRETE BRIDGE MANAGEMENT FERNANDO A. BRANCO JORGE DE BRITO
CONTENTS LIST OF FIGURES XII LIST OF TABLES XXI FIGURE CREDITS XXIII
PREFACE XXV PART 1*BASIC CONCEPTS 1 CHAPTER 1 INTRODUCTION 3 1.1.
HISTORICAL NOTE 3 1.2. BRIDGE MANAGEMENT TODAY 7 CHAPTER 2 SERVICE LIFE
11 2.1. BASIC CONCEPTS 11 2.2. BRIDGE FUNCTIONAL LIFE 11 2.3. BRIDGE
STRUCTURAL LIFE 14 2.3.1. GENERAL 14 2.3.2. EVOLUTION OF LOADS 16 2.3.3.
EVOLUTION OF MATERIALS 17 2.4. SERVICE LIFE OF BRIDGE COMPONENTS 18 2.5.
SERVICE LIFE, SAFETY, AND DURABILITY 19 2.6. END OF LIFE AND DECISION
MAKING 21 CHAPTER 3 TESTING AND MONITORING 23 3.1. MATERIALS LAB TESTING
23 3.1.1. MECHANICAL PROPERTIES 24 3.1.2. DURABILITY PROPERTIES 28 3.2.
IN SITU TESTING 35 3.2.1. MECHANICAL AND GEOMETRICAL PROPERTIES 36
3.2.2. DURABILITY PROPEIHES 44 3.2.3. LOAD TESTING 51 3.3. BRIDGE
MONITORING 56 3.3.1. MONITORING STRATEGY 56 3.3.2. MEASUREMENT OF
STRUCTURAL PARAMETERS 57 3.3.3. ANALYSIS OF THE EXPERIMENTAL RESULTS 60
3.3.4. DURABILITY PARAMETERS MONITORING 61 VI CONTENTS PART 2*DESIGN AND
CONSTRUCTION 63 CHAPTER 4 DESIGN TOR DURABILITY 65 4.1. BASIS OF A
DURABILITY DESIGN 65 4.2. BRIDGE OWNER AND SERVICE LIFE 68 4.3.
DURABILITY DESIGN USING CODES 69 4.3.1. ENVIRONMENTAL CHARACTERISTICS 69
4.3.2. CODE RECOMMENDATIONS 71 4.4. DURABILITY DESIGN WITH DEGRADATION
MECHANISMS 73 4.4.1. DEGRADATION MODELS 73 4.4.2. DETERMINISTIC ANALYSIS
77 4.4.3. RELIABILITY-BASED, METHODS 79 4.5. INTERACTION WITH STRUCTURAL
DESIGN 81 4.6. COMPLEMENTARY REINFORCEMENT PROTECTION METHODS 81 4.7.
PROTECTION AGAINST WATER 82 4.7.1. DRAINAGE 83 4.7.2. WATERPROOFING 85
4.7.3. MOISTURE CONTROL 85 4.8. DESIGN WITH FLEXIBILITY 86 4.9. DESIGN
FOR EASY INSPECTION 87 4.10. DESIGN TO PREVENT HUMAN AND ANIMAL
INTRUSION 88 4.10.1. HUMAN INTRUSION 88 4.10.2. ANIMAL INTRUSION 90
4.11. MONITORING AND MAINTENANCE PLAN 90 4.12. TECHNICAL SPECIFICATIONS
93 4.13. DATA INFORMATION STORAGE 93 CHAPTER 5 CONSTRUCTION FOR
DURABILITY 95 5.1. GENERAL 95 5.2. THE PREPARATION OF THE CONSTRUCTION
96 5.2.1. CONSTRUCTION PLANNING 96 5.2.2. INITIAL CHARACTERIZATION OF
MATERIAL PROPERTIES 97 5.3. THE PRODUCTION 100 5.3.1. INSPECTION BEFORE
CONCRETING. 100 5.3.2. CONCRETE PLACING AND COMPACTING 102 5.3.3.
CONCRETE PROTECTION AND CURE 102 5.3.4. INSPECTION DURING AND AFTER
CONCRETING 105 5.4. QUALITY CONTROL 106 5.4.1. GENERAL 106 5.4.2.
CONCRETE PRODUCTION CONTROL 107 5.4.3. CONFORMITY CONTROL 108 5.5.
CONSTRUCTION ANOMALIES 108 5.5.1. CONCRETE ELEMENTS ANOMALIES 108 5.5.2.
OTHER ANOMALIES FROM CONSTRUCTION 113 5.6. CONSTRUCTION DATA FILES 116
CONTENTS VII PART 3*OVERVIEW OF BRIDGE MANAGEMENT SYSTEMS 119 CHAPTER 6
BRIDGE MANAGEMENT SYSTEMS IN NORTH AMERICA 121 6.1. INTRODUCTION 121
6.2. THE PENNSYLVANIA DEPARTMENT OF TRANSPORTATION BMS (US) ... 122
6.2.1. INTRODUCTION 122 6.2.2. THE MAINTENANCE SUBSYSTEM 122 6.2.3. THE
REHABILITATION/REPLACEMENT SUBSYSTEM 125 6.3. THE INVENTORY SYSTEM
PONTIS (US) 126 6.3.1. DATABASE 127 6.3.2. OPTIMIZATION OF
MAINTENANCE/REPAIR 127 6.3.3. OPTIMIZATION OF THE CAPACITY UPGRADING 128
6.3.4. PROJECT INTEGRATED PLANNING 129 6.3.5. RECENT DEVELOPMENTS 129
6.4. THE BRUFEM BRIDGE RATING SYSTEM (US) 129 6.5. THE AASHTO MANUAL FOR
MAINTENANCE INSPECTION OF BRIDGES (US) 130 6.6. STRUCTURAL EVALUATION OF
EXISTING BRIDGES (AASHTO-US) 130 6.7. OTHER BMS REFERENCES (US) 132 6.8.
THE ONTARIO MINISTRY OF TRANSPORTATION BMS (CANADA) 134 6.8.1.
INTRODUCTION 134 6.8.2. THEDATABASE 135 6.8.3. THE INSPECTION SYSTEM 135
6.8.4. THEDECISION SYSTEM 142 6.8.5. FURTHER CANADIAN BMS REFERENCES 153
CHAPTER 7 BRIDGE MANAGEMENT SYSTEMS OUTSIDE NORTH AMERICA 155 7.1.
BRIDGE MANAGEMENT IN SURREY (U.K.) 155 7.2. DEPARTMENT OF TRANSPORT
REHABILITATION STRATEGY (U.K.) 155 7.3. THE LONDON UNDERGROUND
INSPECTION SYSTEM (U.K.) 160 7.4. FURTHER U.K. BMS REFERENCES 160 7.4.1.
ESTIMATION OF BRIDGE COSTS 16 0 7.4.2. RISK-BASED ASSESSMENT AND
PRIORITIZATION OF BRIDGES 162 7.4.3. OTHER SUBJECTS 163 7.5. THE FRENCH
MINISTRY OF TRANSPORTATION BMS (FRANCE) 166 7.5.1. INTRODUCTION 166
7.5.2. SURVEILLANCE SCHEME 166 7.5.3. CONTINUOUS SURVEILLANCE 166 7.5.4.
PERIODIC SURVEILLANCE 167 7.5.5. BRIDGEFORM 167 7.5.6. INSPECTION
MANUALS 168 7.5.7. ANNUAL INSPECTION 169 7.5.8. DETAILED INSPECTIONS 169
7.5.9. HIGH SURVEILLANCE 171 7.5.10. POST-SURVEILLANCE MEASURES 172
7.5.11. MAINTENANCE AND REPAIR 173 VIII CONTENTS 7.6. THE BRIDGE
MAINTENANCE: SURVEILLANCE METHODOLOGY PHD THESIS (SWITZERLAND) 173
7.6.1. INTRODUCTION 173 7.6.2. ARCHITECTURE OF THE SYSTEM 173 7.6.3.
INSPECTION STRATEGY 175 7.6.4. DECISION CRITERIA 1 6 7.6.5. MAINTENANCE
AND REPAIR 177 7.6.6. OTHER SWISS REFERENCES 17 8 7.7. THE DANBRO BMS
(DENMARK) 179 7.7.1. INTRODUCTION 179 7.7.2. THEDATABASE AND THE
INVENTORY MODULE 179 7. 7.3. THE INSPECTION MODULE. 181 7. 7.4. THE
BEARING CAPACITY MODULE 181 7.7.5. THE RANKING AND BUDGETING MODULE 181
7.8. THE BRISA*PORTUGAL HIGHWAYS BMS (PORTUGAL) 182 7.9. THE MINISTRY OF
TRANSPORTS AND PUBLIC WORKS DATABASE (NETHERLANDS) 186 7.9.1.
INTRODUCTION 186 7.9.2. GENERAL ORGANIZATION OF THE DATABASE 186 7.9.3.
STATIC INFORMATION 186 7.9.4. UPDATEABLE INFORMATION 187 7.9.5.
MAINTENANCE MODELS 189 7.10. THE SWEDISH NATIONAL ROAD ADMINISTRATION
BMS (SWEDEN) .... 189 7.10.1. INTRODUCTION 189 7.10.2. GENERAL
ORGANIZATION OF THE SYSTEM 189 7.10.3. THEDATABASE 189 7.10.4.
INSPECTION 190 7.10.5. PLANNING 191 7.11. THE FINNISH ROADS
ADMINISTRATION BMS (FINLAND) 191 7.12. THE POLISH BMS (POLAND) 192 7.13.
THE SAMOA PROGRAM (ITALY) 193 7.14. BMS IN GERMANY 193 7.15. BMS
JAPANESE EXPERIENCE 194 7.16. THE SOUTH AFRICAN NATIONAL ROADS AGENCY
AND TAIWAN AREA NATIONAL FREEWAY BUREAU RATING SYSTEM 196 7.17. BMS IN
OTHER COUNTRIES 197 CHAPTER 8 MANAGEMENT DURING SERVICE LIFE 199 8.1.
GENERAL SUMMARY OF THE BRIDGE MANAGEMENT SYSTEMS ANALYZED 199 8.1.1.
GENERAL ORGANIZATION OF THE SYSTEMS 199 8.1.2. THEDATABASE 199 8.1.3.
THE INSPECTION MODULE 200 8.1.4. THE INSPECTION ACTIONS EXAMINATION
MODULE 200 8.2. THE ARCHITECTURE OF A STANDARD BRIDGE MANAGEMENT SYSTEM
202 8.2.1. INTRODUCTION 202 8.2.2. REQUIREMENTS OF A KNOWLEDGE-BASED
BRIDGE MANAGEMENT SYSTEM 203 8.2.3. GENERAL DESCRIPTION OF THE SYSTEM
206 CONTENTS IX 8.2.4. THEDATABASE 208 8.2.5. THE INSPECTION SYSTEM 210
8.2.6. COMPUTER-BASED INSPECTION SUPPORT MODULE 213 8.2. 7. DECISION
SYSTEM 217 PART 4*ORGANIZATION OF A BRIDGE MANAGEMENT SYSTEM 225 CHAPTER
9 THE DATABASE 227 9.1. INTRODUCTION 227 9.2. GENERAL ORGANIZATION 228
9.2.1. INTERNATIONAL EXPERIENCE 228 9.2.2. A REFERENCE DATABASE 23 1
9.3. UTILIZATION OPTIONS 237 9.4. IDENTIFICATION FORM 239 9.4.1. BRIDGE
SITE 239 9.4.2. DESIGN GENERAL INFORMATION 240 9.4.3. CONSTRUCTION
GENERAL INFORMATION 241 9.5. GRAPHIC INFORMATION 242 9.6. REFERENCE
STATE FORM 244 9.6.1. DESIGN STAGE 245 9.6.2. POST-CONSTRUCTION STAGE
251 9.7. INSPECTION FORMS 254 9.7.1. INSPECTION CHARACTERISTICS 258
9.7.2. DETECTED DEFECTS 258 9.7.3. INSPECTIONS HISTORY 262 9.8. REPORTS
GENERATION 262 9.9. DATABASE USERS MANUAL 265 CHAPTER 10 INSPECTION
STRATEGIES 267 10.1. PROCEDURES STANDARDIZATION 267 10.2. GENERAL
ORGANIZATION OF A KNOWLEDGE-BASED INSPECTION SYSTEM 268 10.2.1. ROUTINE
INSPECTION 269 10.2.2. DETAILED INSPECTION 272 10.2.3. STRUCTURAL
ASSESSMENT 275 10.2.4. BRIDGE INITIAL CHARACTERIZATION 277 10.2.5.
GENERAL FLOWCHART OF THE INSPECTION SYSTEM 278 10.3. CLASSIFICATION
SYSTEM 278 10.3.1. DEFECTS 279 10.3.2. POSSIBLE CAUSES OF THE DEFECTS
284 10.3.3. REPAIR TECHNIQUES 28 7 10.3.4. DIAGNOSTIC METHODS 293 10.4.
CORRELATION MATRICES 298 10.4.1. DEFECTS VERSUS PROBABLE CAUSES 300
10.4.2. DEFECTS VERSUS REPAIR TECHNIQUES 301 10.4.3. DEFECTS VERSUS
DIAGNOSTIC METHODS 301 10.5. INSPECTION MANUAL 303 10.5.1. GENERAL
PRINCIPLES 304 10.5.2. INSPECTION TYPES 305 X CONTENTS 10.5.3.
TERMINOLOGY 305 10.5.4. SYMPTOMATOLOGY 305 10.5.5. DIAGNOSTIC METHODS
306 10.5.6. INSPECTION SUPPORT MODULE 306 10.5.7. DEFECT RATING SYSTEM
307 10.5.8. MAINTENANCE 307 10.5.9. REPAIR/REHABILITATION 307 10.5.10.
BRIDGEDOSSIER 307 10.5.11. DEFECTSFORMS 307 10.5.12. REPAIRFORMS 308
10.5.13. SCHEMATIC DIAGRAMS 310 10.5.14. IDENTIFICATION, REFERENCE
STATE, AND INSPECTION FORMS 311 10.5.15. OTHER APPENDICES 312 10.6.
COMPUTER-BASED INSPECTION SUPPORT MODULE 313 10.6.1. GENERAL
ORGANIZATION OF THE MODULE 313 10.6.2. GENERAL INFORMATION ABOUT THE
BRIDGE 314 10.6.3. RELATED DIAGNOSTIC METHODS 315 10.6.4. PROBABLE
CAUSES 316 10.6.5. ASSOCIATED DEFECTS 316 10.6.6. RECOMMENDED REPAIR
TECHNIQUES 319 10.6.7. PROVISIONAL INSPECTION REPORT 320 10.7. BRIDGE
DOSSIER 320 10.7.1. DESIGN/PRELIMINARY STUDIES 321 10.7.2.
CONSTRUCTION/LOAD TESTS 322 10.7.3. REFERENCE STATE 322 10.7.4.
OPERATION/MAINTENANCE 323 10.7.5. REPAIR/REHABILITATION 324 CHAPTER 11
MAINTENANCE STRATEGIES 325 11.1. INTRODUCTION 325 11.2. MAINTENANCE OR
REPAIR? 325 11.3. DEFECTS RATING SYSTEM 326 11.4. DECISION CRITERIA 330
11.5. MAINTENANCE/SMALL REPAIR SUBSYSTEM WORKING PROCEDURE ... 331
11.5.1. SUBSYSTEM INPUT 331 11.5.2. SUBSYSTEM OUTPUT 331 11.5.3.
SUBSYSTEM FLOWCHART. 332 11.6. SUBSYSTEM IMPLEMENTATION STRATEGY 332
11.6.1. DEVELOPMENT STAGES OF THE SUBSYSTEM 333 11.6.2. CLASSIFICATION
OF THE INFORMATION NECESSARY FOR THE SUBSYSTEM 334 11.6.3. FLOWCHARTS OF
THE EVOLUTION OF THE SUBSYSTEM 338 PART 5*LONG-TERM COST ANALYSIS 339
CHAPTER 12 LONG-TERM COSTS QUANTIFICATION 341 12.1. INTRODUCTION 341
12.2. PRESENT VALUE PRICES ANALYSIS 341 CONTENTS XI 12.3. THE GLOBAL
COST FUNCTION C 347 12.3.1. PRELIMINARY CONSIDERATIONS 347 12.3.2.
FUNCTION ORGANIZATION 348 12.3.3. SOFTWARE ALGORITHM GENERAL DATA 349
12.3.4. EXAMPLE OF APPLICATION OF THE COSTS ALGORITHM 350 12.4. INITIAL
COSTS 351 12.4.1. DEFINITION 351 12.4.2. QUANTIFICATION AND PREDICTION
353 12.4.3. RELATIVE IMPORTANCE 355 12.5. INSPECTION COSTS 356 12.5.1.
THE INSPECTION STRATEGY 356 12.5.2. DEFINITION 357 12.5.3.
QUANTIFICATION AND PREDICTION 358 12.5.4. RELATIVE IMPORTANCE 364 12.6.
MAINTENANCE COSTS 364 12.6.1. DEFINITION 364 12.6.2. QUANTIFICATION AND
PREDICTION 365 12.6.3. RELATIVE IMPORTANCE 370 12.7. REPAIR COSTS 370
12.7.1. DEFINITION 370 12.7.2. QUANTIFICATION AND PREDICTION 371 12.7.3.
RELATIVE IMPORTANCE 374 12.8. FAILURE COSTS 374 12.8.1. DEFINITION 374
12.8.2. QUANTIFICATION AND PREDICTION 375 12.9. GENERAL ARCHITECTURE OF
THE COSTS ALGORITHM 410 12.9.1. SHORT DESCRIPTION OF THE SUBROUTINES 410
12.9.2. DATAFILES 413 12.9.3. SENSITIVITY ANALYSIS 413 CHAPTER 13 REPAIR
STRATEGIES 417 13.1. INTRODUCTION 417 13.2. SUBMODULE OF INSPECTION
STRATEGY 417 13.2.1. DECISION BY RATING OF THE STRUCTURAL DEFECTS 418
13.2.2. DECISION BASED ON STRUCTURAL RELIABILITY ANALYSIS 418 13.3.
SUBMODULE OF REPAIR WORK SELECTION 427 13.3.1. DECISION CRITERIA 427
13.3.2. REPAIR WORK SELECTION SUBMODULE PROCEDURES 433 13.3.3. SUBMODULE
IMPLEMENTATION STRATEGY 434 13.3.4. EXAMPLES OF APPLICATION OF THE
ALGORITHM COSTS TO THE SUBMODULE 439 13.3.5. RELIABILITY-BASED DECISION
MAKING. 447 13.3.6. DECISION-MAKING AND STRUCTURAL ASSESSMENT. 449
REFERENCES 451 INDEX 463
|
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author | Branco, Fernando A. Brito, Jorge de |
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building | Verbundindex |
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dewey-ones | 624 - Civil engineering |
dewey-raw | 624.20288 |
dewey-search | 624.20288 |
dewey-sort | 3624.20288 |
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spelling | Branco, Fernando A. Verfasser aut Handbook of concrete bridge management Fernando A. Branco ; Jorge de Brito [Reston, Va.] ASCE Press 2004 XXV, 468 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Betonbrücke (DE-588)4144981-2 gnd rswk-swf Bauunterhaltung (DE-588)4347377-5 gnd rswk-swf Betonbrücke (DE-588)4144981-2 s Bauunterhaltung (DE-588)4347377-5 s DE-604 Brito, Jorge de Verfasser aut GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017437957&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Branco, Fernando A. Brito, Jorge de Handbook of concrete bridge management Betonbrücke (DE-588)4144981-2 gnd Bauunterhaltung (DE-588)4347377-5 gnd |
subject_GND | (DE-588)4144981-2 (DE-588)4347377-5 |
title | Handbook of concrete bridge management |
title_auth | Handbook of concrete bridge management |
title_exact_search | Handbook of concrete bridge management |
title_full | Handbook of concrete bridge management Fernando A. Branco ; Jorge de Brito |
title_fullStr | Handbook of concrete bridge management Fernando A. Branco ; Jorge de Brito |
title_full_unstemmed | Handbook of concrete bridge management Fernando A. Branco ; Jorge de Brito |
title_short | Handbook of concrete bridge management |
title_sort | handbook of concrete bridge management |
topic | Betonbrücke (DE-588)4144981-2 gnd Bauunterhaltung (DE-588)4347377-5 gnd |
topic_facet | Betonbrücke Bauunterhaltung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017437957&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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