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Table of contents
- Technology and Safety of Marine Systemsiii
- Copyright Pageiv
- Table of Contentsix
- Series Prefacev
- Prefacevii
- Chapter 1. Introduction1
- Summary1
- 1.1 Introduction1
- 1.2 Safety and Reliability Development in the Maritime Industry1
- 1.3 Present Status2
- 1.4 Databases3
- 1.5 Description of the Book4
- 1.6 References (Chapter 1)7
- Chapter 2. Ship Safety and Accident Statistics Summary9
- 2.1 Introduction9
- 2.2 The Code of Practice for the Safety of Small Fishing Vessels10
- 2.3 The Fishing Vessels (Safety Provisions) Safety Rules 197511
- 2.4 Accident Data for Fishing Vessels12
- 2.5 Data Analysis13
- 2.6.Containership Accident Statistics16
- 2.7.Conclusion18
- 2.8.References (Chapter 2)18
- Chapter 3. Safety Analysis Techniques Summary29
- 3.1 Introduction29
- 3.2 Qualitative Safety Analysis30
- 3.3 Quantitative Safety Analysis31
- 3.4 Cause and Effect Relationship33
- 3.5 Preliminary Hazard Analysis (PHA)34
- 3.6 What-If Analysis36
- 3.7 HAZard and OPerability (HAZOP) Studies36
- 3.8 Fault Tree Analysis (FTA)39
- 3.9 Event Tree Analysis45
- 3.10 Markov Chains46
- 3.11 Failure Mode, Effects and Critical Analysis (FMECA)46
- 3.12 Other Analysis Methods50
- 3.13 Conclusion50
- 3.14 References (Chapter 3)51
- Chapter 4. Formal Safety Assessment of Ships and Its Relation to Offshore Safety Case Approach Summ61
- 4.1 Offshore Safety Assessment61
- 4.2 Formal Ship Safety Assessment70
- 4.3 Risk Criteria72
- 4.4 Discussion and Conclusion73
- 4.5 References (Chapter 4)74
- Chapter 5. Formal Safety Assessment Summary81
- 5.1 Formal Safety Assessment81
- 5.2 A Formal Safety Assessment Framework for a Generic Fishing Vessel85
- 5.3 An Example93
- 5.4 Formal Safety Assessment of Containerships94
- 5.5 Discussions101
- 5.6 Conclusion103
- 5.7 References (Chapter 5)104
- Chapter 6. Risk Assessment Using Fuzzy Set Approach117
- 6.1 Introduction117
- 6.2 Uncertainty118
- 6.3 Fuzzy Set Theory Background120
- 6.4 Risk Assessment Using FST123
- 6.5 Application to a Hydraulic Winch System131
- 6.6 Conclusion134
- 6.7 References (Chapter 6)134
- Chapter 7. Modified Failure Mode and Effects Analysis Summary149
- 7.1 Introduction149
- 7.2 Some Weaknesses of FMEA151
- 7.3 Background of Grey Theory152
- 7.4 Fuzzy Rule Based Method153
- 7.5 Grey Theory Method155
- 7.6 Application to Fishing Vessels159
- 7.7 Analysis of Results163
- 7.8 Conclusion164
- 7.9 References (Chapter 7)164
- Chapter 8. Maintenance Modelling Summary179
- 8.1 Introduction179
- 8.2 Modern Maintenance Concepts180
- 8.3 Current Maintenance Practice on Fishing Vessels183
- 8.4 Background of Delay-Time Analysis185
- 8.5 Model Development186
- 8.6 An Example193
- 8.7 Conclusion198
- 8.8 References (Chapter 8)199
- Chapter 9. Human Error Assessment and Decision Making Using Analytical Hierarchy Processing Summary213
- 9.1 Introduction213
- 9.2 Review of Human Error Assessment Methods214
- 9.3 Human Error Probability217
- 9.4 Analytical Hierarchy Processing220
- 9.5 Application of AHP to Vessel Operations222
- 9.6 An Example225
- 9.7 Conclusion232
- 9.8 References (Chapter 9)233
- Chapter 10. Three Novel Risk Modelling and Decision Making Techniques Summary243
- 10.1 A Safety-Based Decision Support System Using Artificial Neural Network Techniques244
- 10.2 Taguchi Concepts and Their Applications in Maritime Safety Assessment250
- 10.3 A Multiple Criteria Decision Making Approach266
- 10.4 References (Chapter 10)281
- Chapter 11. Conclusions Summary305
- Appendix 1. Code of Practice for the Safety of Small Fishing Vessels307
- Appendix 2: Fishing Vessel (Safety Provisions) Safety Rules 1975311
- Appendix 3: Influence Diagram317
- Subject Index319
- Vendor Elsevier S & T
- SKU 9780080441481
- ISBN-13 9780080542249
Do you have questions about this book?
Traditionally society has regulated hazardous industries by detailed references to engineering codes, standards and hardware requirements. These days a risk-based approach is adopted. Risk analysis involves identifying hazards, categorizing the risks, and providing the necessary decision support to determine the necessary arrangements and measures to reach a "safe" yet economical operating level. When adopting such an approach the abundance of techniques available to express risk levels can often prove confusing and inadequate. This highly practical guide to safety and risk analysis in Marine Systems not only adds to the current techniques available, but more importantly identifies instances where traditional techniques fall short. Uncertainties that manifest within risk analysis are highlighted and alternative solutions presented. In addition to risk analysis techniques this book addresses influencing elements including: reliability, Maintenance Decision making and Human error. The highly practical approach of this title ensures it is accessible to the widest possible audience
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