Marine Structural Design

Other | August 1, 2003

byBai, Yong, Yong Bai

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This new reference describes the applications of modern structural engineering to marine structures. It will provide an invaluable resource to practicing marine and offshore engineers working in oil and gas as well as those studying marine structural design. The coverage of fatigue and fracture criteria forms a basis for limit-state design and re-assessment of existing structures and assists with determining material and inspection requirements. Describing applications of risk assessment to marine and offshore industries, this is a practical and useful book to help engineers conduct structural design.

*Presents modern structural design principles helping the engineer understand how to conduct structural design by analysis
*Offers practical and usable theory for industrial applications of structural reliability theory

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From the Publisher

This new reference describes the applications of modern structural engineering to marine structures. It will provide an invaluable resource to practicing marine and offshore engineers working in oil and gas as well as those studying marine structural design. The coverage of fatigue and fracture criteria forms a basis for limit-state de...

Dr. Yong Bai obtained a Ph.D. in Offshore Structures at Hiroshima University, Japan in 1989. He is currently President of Offshore Pipelines and Risers (OPR Inc., a design/consulting firm in the field of subsea pipelines, risers and floating systems. In the 1990's, he had been a technical leader for several Asgard Transport pipeline an...

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Format:OtherDimensions:626 pages, 1 × 1 × 1 inPublished:August 1, 2003Publisher:Elsevier ScienceLanguage:English

The following ISBNs are associated with this title:

ISBN - 10:0080535836

ISBN - 13:9780080535838

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Extra Content

Table of Contents

Part I: Structural Design Principles

CHAPTER 1 INTRODUCTION

CHAPTER 2 WAVE LOADS FOR SHIP DESIGN AND CLASSIFICATION

CHAPTER 3 LOADS AND DYNAMIC RESPONSE FOR OFFSHORE STRUCTURES

CHAPTER 4 SCANTLING OF SHIP'S HULLS BY RULES

CHAPTER 5 SHIP HULL SCANTLING DESIGN BY ANALYSIS

CHAPTER 6 OFFSHORE STRUCTURAL ANALYSIS

CHAPTER 7 LIMIT-STATE DESIGN OF OFFSHORE STRUCTURES

Part II: Ultimate Strength

CHAPTER 8 BUCKLING/COLLAPSE OF COLUMNS AND BEAM-COLUMNS

CHAPTER 9 BUCKLING AND LOCAL BUCKLING OF TUBULAR MEMBERS

CHAPTER 10 ULTIMATE STRENGTH OF PLATES AND STIFFENED PLATES

CHAPTER 11 ULTIMATE STRENGTH OF CYLINDRICAL SHELLS

CHAPTER 12 A THEORY OF NONLINEAR FINITE ELEMENT ANALYSIS

CHAPTER 13 COLLAPSE ANALYSIS OF SHIP HULLS

CHAPTER 14 OFFSHORE STRUCTURES UNDER IMPACT LOADS

CHAPTER 15 OFFSHORE STRUCTURES UNDER EARTHQUAKE LOADS

Part III: Fatigue and Fracture

CHAPTER 16 MECHANISM OF FATIGUE AND FRACTURE

CHAPTER 17 FATIGUE CAPACITY

CHAPTER 18 FATIGUE LOADING AND STRESSES

CHAPTER 19 SIMPLIFIED FATIGUE ASSESSMENT

CHAPTER 20 SPECTRAL FATIGUE ANALYSIS AND DESIGN

CHAPTER 21 APPLICATION OF FRACTURE MECHANICS

CHAPTER 22 MATERIAL SELECTIONS AND DAMAGE TOLERANCE CRITERIA

Part IV: Structural Reliability

CHAPTER 23 BASICS OF STRUCTURAL RELIABILITY

CHAPTER 24 RANDOM VARIABLES AND UNCERTAINTY ANALYSIS

CHAPTER 25 RELIABILITY OF SHIP STRUCTURES

CHAPTER 26 RELIABILITY-BASED DESIGN AND CODE CALIBRATION

CHAPTER 27 FATIGUE RELIABILITY

CHAPTER 28 PROBABILITY AND RISK BASED INSPECTION PLANNING

Part V: Risk Assessment

CHAPTER 29 RISK ASSESSMENT METHODOLOGY

CHAPTER 30 RISK ASSESSMENT APPLIED TO OFFSHORE STRUCTURES

CHAPTER 31 FORMAL SAFETY ASSESSMENT APPLIED TO SHIPPING INDUSTRY

CHAPTER 32 ECONOMIC RISK ASSESSMENT FOR FIELD DEVELOPMENT

CHAPTER 33 HUMAN RELIABILITY ASSESSMENT

CHAPTER 34 RISK CENTERED MAINTENANCE

Index