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Proceedings Papers
Volume 3B: Structures, Safety and Reliability
Structures, Safety and Reliability
Reliability of Mooring and Riser Systems
Extreme Response Prediction of Steel Risers Using a Four Parameter Distribution
Miguel Alfonso Calderon Ibarra, Fernando Jorge Mendes de Sousa, Luís Volnei Sudati Sagrilo, Ying Min Low
OMAE 2017; V03BT02A001https://doi.org/10.1115/OMAE2017-61481
Topics:
Pipeline risers
,
Risers (Casting)
,
Steel
,
FPSO
,
Mooring
,
Water
,
Fittings
,
Log normal distribution
,
Simulation
,
Waves
Mooring System Calibration of the Intact Condition, Ultimate Limit State (ULS)
OMAE 2017; V03BT02A002https://doi.org/10.1115/OMAE2017-61529
Topics:
Calibration
,
Mooring
,
Design
,
Safety
,
Reliability
,
Gulf of Mexico
,
Chain
,
Event history analysis
,
Failure
,
Probability
Mooring System Calibration of the Damaged Condition, Accidental Limit State (ALS)
OMAE 2017; V03BT02A003https://doi.org/10.1115/OMAE2017-61533
Topics:
Calibration
,
Mooring
,
Failure
,
Probability
,
Design
,
Tension
,
Chain
,
Event history analysis
,
Gulf of Mexico
,
Reliability
Summary and Recommendations for Safe Mooring System Design in ULS and ALS
OMAE 2017; V03BT02A004https://doi.org/10.1115/OMAE2017-61534
Topics:
Design
,
Mooring
,
Reliability
,
Frequency-domain analysis
,
Safety
,
Calibration
,
Time-domain analysis
,
Gulf of Mexico
,
Water
,
American Petroleum Institute
Prediction of Low Failure Probabilities With Application to Marine Risers
OMAE 2017; V03BT02A005https://doi.org/10.1115/OMAE2017-61574
Topics:
Failure
,
Marine drilling risers
,
Probability
,
Reliability
,
Event history analysis
,
Ocean engineering
,
Pipeline risers
,
Density
,
Design
,
Entropy
Structural Reliability Analysis for Offshore Drilling Riser Deployment Operability
OMAE 2017; V03BT02A006https://doi.org/10.1115/OMAE2017-61575
Topics:
Event history analysis
,
Pipeline risers
,
Underwater drilling
,
Drilling
,
Probability
,
Failure
,
Reliability
,
Ocean engineering
,
Uncertainty
,
Waves
Wake Shielding Model Effect on Riser Dynamic Response
OMAE 2017; V03BT02A008https://doi.org/10.1115/OMAE2017-62557
Topics:
Dynamic response
,
Pipeline risers
,
Risers (Casting)
,
Wakes
,
Flow (Dynamics)
,
Waves
,
Clearances (Engineering)
,
Cylinders
,
Computer software
,
Deflection
Reliability of Renewable Energy Systems
Risk-Based Multi-Objective Optimisation of a Monopile Offshore Wind Turbine Support Structure
OMAE 2017; V03BT02A009https://doi.org/10.1115/OMAE2017-61756
Topics:
Offshore wind turbines
,
Pareto optimization
,
Risk
,
Construction
,
Design
,
Life cycle costing
,
Optimization
,
Reliability
,
Failure
,
Fatigue damage
Parametric Sensitivity Study of Submarine Power Cable Design for Marine Renewable Energy Applications
OMAE 2017; V03BT02A010https://doi.org/10.1115/OMAE2017-62208
Topics:
Cables
,
Design
,
Renewable energy
,
Underwater vehicles
,
Tides
,
Stress
,
Flow (Dynamics)
,
Shapes
,
Waves
,
Compression
Physics-Based Gearbox Failure Model for Multi-MW Offshore Wind Turbines
OMAE 2017; V03BT02A011https://doi.org/10.1115/OMAE2017-62257
Topics:
Failure
,
Mechanical drives
,
Offshore wind turbines
,
Physics
,
Damage
,
Bearings
,
Downtime
,
Fatigue damage
,
Helical gears
,
Maintenance
An Integrated Data Management Approach for Offshore Wind Turbine Failure Root Cause Analysis
OMAE 2017; V03BT02A012https://doi.org/10.1115/OMAE2017-62279
Topics:
Failure
,
Offshore wind turbines
,
Root cause analysis
,
Ocean engineering
,
Wind farms
,
Maintenance
,
Turbines
,
Flow (Dynamics)
,
Monitoring systems
,
Wind
Reliability Prediction for Offshore Renewable Energy: Data Driven Insights
OMAE 2017; V03BT02A013https://doi.org/10.1115/OMAE2017-62281
Topics:
Ocean engineering
,
Reliability
,
Renewable energy
,
Failure
,
Generators
,
Wind
,
Turbines
An Engineering-Model for Extreme Wave-Induced Loads on Monopile Foundations
OMAE 2017; V03BT02A014https://doi.org/10.1115/OMAE2017-62317
Topics:
Engineering models
,
Stress
,
Waves
,
Wave theory of light
,
Seas
,
Water
,
Arches
,
Design
,
Elevations (Drawings)
,
Morison equation
Key Design Parameters to Identify Natural Frequency of Tripod Substructures for Offshore Wind Turbine
OMAE 2017; V03BT02A015https://doi.org/10.1115/OMAE2017-62511
Topics:
Design
,
Offshore wind turbines
,
China
,
Dynamic response
,
Finite element methods
,
Materials properties
,
Soil
,
Structural design
,
Uncertainty
Risk Analysis and Management
Safety Challenges of LNG Offshore Industry and Introduction to Risk Management
OMAE 2017; V03BT02A016https://doi.org/10.1115/OMAE2017-61027
Topics:
Liquefied natural gas
,
Ocean engineering
,
Risk management
,
Safety
,
Accidents
,
Hazards
,
Explosions
,
Gas industry
,
Hazardous substances
,
Health and safety
Real-Time Data for Risk Assessment in the Offshore Oil and Gas Industry
OMAE 2017; V03BT02A017https://doi.org/10.1115/OMAE2017-61486
Topics:
Ocean engineering
,
Petroleum industry
,
Risk assessment
,
Risk
,
Risk analysis
,
Sensors
,
Accidents
,
Corrosion
,
Failure
,
Safety
On Maintainability of Winterised Plants Operating in Arctic Regions
OMAE 2017; V03BT02A018https://doi.org/10.1115/OMAE2017-61526
Topics:
Arctic region
,
Maintainability
,
Downtime
,
Climate
,
Design
,
Heat
,
Meteorology
,
Ocean engineering
,
Risk
,
Simulation
A Risk Assessment of a Novel Bulk Cargo Ship-to-Ship Transfer Operation Using the Functional Resonance Analysis Method
Lauchlan J. Clarke, Gregor J. Macfarlane, Irene Penesis, Jonathan T. Duffy, Shinsuke Matsubara, Ross J. Ballantyne
OMAE 2017; V03BT02A019https://doi.org/10.1115/OMAE2017-61535
Topics:
Resonance
,
Risk assessment
,
Ships
,
Vessels
,
Safety
,
Resilience
,
Accidents
,
Design
,
Failure mechanisms
,
Materials handling equipment
Risk Management of Autonomous Marine Systems and Operations
OMAE 2017; V03BT02A020https://doi.org/10.1115/OMAE2017-61645
Topics:
Risk management
,
Ships
,
Dynamic positioning systems
,
Hazards
,
Ocean engineering
,
Risk
,
Robotics
Identification and Optimization of Most Relevant Variables When Creating a Maintenance Strategy of an Offshore Wind Farm
OMAE 2017; V03BT02A021https://doi.org/10.1115/OMAE2017-61776
Topics:
Maintenance
,
Ocean engineering
,
Optimization
,
Wind farms
,
Algorithms
,
Wind energy
,
Energy generation
,
Failure data
,
Simulation
,
Maintainability
Design Load Measures for Vapor Cloud Explosion on Complex Systems: Review and Recommendations
OMAE 2017; V03BT02A022https://doi.org/10.1115/OMAE2017-61862
Topics:
Complex systems
,
Design
,
Explosions
,
Stress
,
Vapors
,
Oceans
,
Structural design
,
Combustion
,
Explosives
,
Hazards
Development of a Simulator Training Platform for Fish Farm Operations
OMAE 2017; V03BT02A023https://doi.org/10.1115/OMAE2017-62023
Topics:
Accidents
,
Education
,
Industrial research
,
Safety
Explosion Risk Analysis on the Liquefaction Process of LNG-FPSO at the PFD Level
OMAE 2017; V03BT02A024https://doi.org/10.1115/OMAE2017-62163
Topics:
Explosions
,
FPSO
,
Liquefaction
,
Liquefied natural gas
,
Risk analysis
,
Modeling
,
Fire
,
Risk assessment
,
Accidents
,
Computer software
Technology Qualification of Offshore Wind Turbine Supporting Concrete Constructions: Mitigation of Future Catastrophic Incidents via Quantification of Unknown
OMAE 2017; V03BT02A025https://doi.org/10.1115/OMAE2017-62173
Topics:
Concretes
,
Offshore wind turbines
,
Risk
,
Fatigue
,
Steel
,
Computers
,
Design
,
Manufacturing
,
Testing
,
Turbines
Structural Analysis and Optimization
Shock Analysis of a Stern Ramp Using Dynamic Design Analysis Method
OMAE 2017; V03BT02A027https://doi.org/10.1115/OMAE2017-61043
Topics:
Design
,
Shock (Mechanics)
,
Stress
,
Ships
,
Explosions
,
Computer software
,
Spectroscopy
,
Vessels
Experimental and Numerical Analysis of Hybrid 3kW Ocean Wave-Power Generation System Subjected to Regular and Irregular Wave Forces
OMAE 2017; V03BT02A028https://doi.org/10.1115/OMAE2017-61245
Topics:
Numerical analysis
,
Oceans
,
Wave energy
,
Wave forces
,
Cylinders
,
Blades
,
Design
,
Energy / power systems
,
Generators
,
Rotation
Shape Optimization Design of Brackets Connecting Girders of an Internal Bulkhead and Pressure Hull Under External Pressure
OMAE 2017; V03BT02A029https://doi.org/10.1115/OMAE2017-61617
Topics:
Breakwaters
,
Design
,
External pressure
,
Girders
,
Hull
,
Pressure
,
Shape optimization
,
Stress
,
Shapes
,
Shells
Strength Assessment on Support System of LNG Independent Type B Tank Under Sloshing Loads
OMAE 2017; V03BT02A030https://doi.org/10.1115/OMAE2017-61643
Topics:
Liquefied natural gas
,
Sloshing
,
Stress
,
Boundary-value problems
,
Displacement
,
Finite element methods
,
Fluids
,
Numerical analysis
,
Reliability
,
Safety
Applications of the Static Condensation Technique to Nonlinear Structural Analysis of Floating Offshore Structures
OMAE 2017; V03BT02A031https://doi.org/10.1115/OMAE2017-61646
Topics:
Condensation
,
Offshore structures
,
Structural analysis
,
Ocean engineering
,
Design
,
Finite element analysis
,
Finite element model
,
Friction
,
Hull
,
Reliability
Time-Domain Analysis of Wind-Induced Response of a Suspension Bridge in Comparison With the Full-Scale Measurements
OMAE 2017; V03BT02A032https://doi.org/10.1115/OMAE2017-61725
Topics:
Suspension bridges
,
Time-domain analysis
,
Wind
,
Bridges (Structures)
,
Cables
,
Design
,
Displacement
,
Dynamic response
,
Finite element analysis
,
Girders
Investigation on the Structure Strength and Stability of Ring Stiffened Cylindrical Shell With Long Compartment and Large Stiffener
OMAE 2017; V03BT02A034https://doi.org/10.1115/OMAE2017-62153
Topics:
Pipes
,
Stability
,
Submersibles
,
Vessels
,
Computer simulation
,
Design
,
Failure mechanisms
,
Finite element methods
,
High strength steel
,
Pressure
Wet Vibration of Low-Aspect-Ratio Aerofoil Wing: Semi-Analytical and Numerical Approach With Experimental Investigation
OMAE 2017; V03BT02A036https://doi.org/10.1115/OMAE2017-62497
Topics:
Airfoils
,
Vibration
,
Wings
,
Cantilevers
,
Chords (Trusses)
,
Boundary-value problems
,
Fluids
,
Free vibrations
,
Hammers
,
Inertia (Mechanics)
An Approach to Reduce the Amount of ILI Data in Fatigue Analysis of Pits in Pipelines
OMAE 2017; V03BT02A039https://doi.org/10.1115/OMAE2017-62594
Topics:
Fatigue analysis
,
Pipelines
,
Density
,
Dimensions
,
Finite element analysis
,
Inspection
,
Pipeline risers
,
Rendering
,
Risers (Casting)
,
Visualization
Ultimate Strength
A Fundamental Study on the Dynamic Response of Hull Girder of Container Ships due to Slamming Load
OMAE 2017; V03BT02A040https://doi.org/10.1115/OMAE2017-61068
Topics:
Containers
,
Dynamic response
,
Girders
,
Hull
,
Ships
,
Stress
,
Buoyancy
,
Bending (Stress)
,
Deformation
,
Finite element analysis
Estimation of Elastic Buckling Strength of a Non-Spherical Tank in the Partially Filled Condition
OMAE 2017; V03BT02A042https://doi.org/10.1115/OMAE2017-61397
Topics:
Buckling
,
Stress
,
Shells
,
Compression
,
Finite element analysis
,
Liquefied natural gas
,
Membranes
,
Shapes
,
Spherical shells
,
Tension
A Study on the Method to Estimate Ship Hull Girder Ultimate Strength Considering Biaxial Compression in Bottom Stiffened Plates
OMAE 2017; V03BT02A044https://doi.org/10.1115/OMAE2017-61430
Topics:
Compression
,
Girders
,
Hull
,
Plates (structures)
,
Ships
,
Tensile strength
,
Buckling
,
Finite element methods
,
Finite element model
,
Stress
Ultimate Bearing Capacity Assessment of Hull Girder With Asymmetric Cross-Section
OMAE 2017; V03BT02A046https://doi.org/10.1115/OMAE2017-62172
Topics:
Girders
,
Hull
,
Load bearing capacity
,
Stress
,
Tensile strength
,
Equilibrium (Physics)
,
Geometry
,
Rotation
,
Errors
,
Ships
Ultimate Compressive Strength Assessment of Damaged Plates
OMAE 2017; V03BT02A047https://doi.org/10.1115/OMAE2017-62215
Topics:
Compressive strength
,
Plates (structures)
,
Residual stresses
,
Damage
,
Tensile strength
,
Compression
,
Finite element analysis
,
Steel
,
Welding
Experimental Investigation of Residual Ultimate Strength of Damaged Metallic Pipelines
OMAE 2017; V03BT02A048https://doi.org/10.1115/OMAE2017-62221
Topics:
Pipelines
,
Tensile strength
,
Pipes
,
Damage
,
Bending strength
,
Failure mechanisms
,
Fracture (Materials)
,
Materials properties
,
Metals
,
Wall thickness
Investigation of Ultimate Limit State Safety Margins in the Structural Design Rules
OMAE 2017; V03BT02A049https://doi.org/10.1115/OMAE2017-62309
Topics:
Safety
,
Structural design
,
Finite element analysis
,
Stress
,
Hull
,
Structural elements (Construction)
,
Buckling
,
Tankers
,
Breakwaters
,
Deformation
Transverse Deformation of Pressurised Pipes With Different Axial Loads
OMAE 2017; V03BT02A050https://doi.org/10.1115/OMAE2017-62507
Topics:
Deformation
,
Pipes
,
Stress
,
Pipelines
,
Displacement
,
Engineering simulation
,
Pressure
,
Simulation
,
Stiffness
,
Design
Well Integrity and Reliability Assessment
Comprehensive Instrumentation of Two Offshore Rigs for Wellhead Fatigue Monitoring
OMAE 2017; V03BT02A051https://doi.org/10.1115/OMAE2017-61291
Topics:
Fatigue
,
Instrumentation
,
Ocean engineering
,
Pipeline risers
,
Drilling
,
Sensors
,
Risers (Casting)
,
Acoustics
,
Batteries
,
Cables
Comparison of Riser and Well System Response Predictions to Full-Scale Measurements in a Shallow Water Harsh Environment
OMAE 2017; V03BT02A052https://doi.org/10.1115/OMAE2017-61300
Topics:
Pipeline risers
,
Risers (Casting)
,
Water
,
Mobile offshore drilling units
,
Drilling
,
Modeling
,
Fatigue
,
Uncertainty
,
Vessels
,
Waves
Comparison of Global Riser Analysis to Full Scale Measurements on the NCS
OMAE 2017; V03BT02A054https://doi.org/10.1115/OMAE2017-61638
Topics:
Pipeline risers
,
Stress
,
Waves
,
Ocean engineering
,
Fatigue
,
Tension
,
Uncertainty
,
Damage
,
Drilling
,
Drills (Tools)
Validation of Soil Models for Wellhead Fatigue Analysis
OMAE 2017; V03BT02A055https://doi.org/10.1115/OMAE2017-61644
Topics:
Fatigue analysis
,
Soil
,
American Petroleum Institute
,
Fatigue
,
Pipeline risers
,
Stiffness
,
Stress
,
Drilling
,
Modeling
,
Ocean engineering
Wellhead Fatigue Analysis: How Conservative Is Conservative Enough?
OMAE 2017; V03BT02A057https://doi.org/10.1115/OMAE2017-61838
Topics:
Fatigue analysis
,
Design
,
Fatigue
,
Sensitivity analysis
,
Uncertainty
,
Annulus
,
Cements (Adhesives)
,
Fatigue design
,
Friction
,
Safety
Observation of Subsea BOP Response From Field Measurements and Reflections on Conductor Design Challenges
OMAE 2017; V03BT02A058https://doi.org/10.1115/OMAE2017-62066
Topics:
Design
,
Ocean engineering
,
Reflection
,
Soil
,
Pipeline risers
,
Risers (Casting)
,
Wells
,
American Petroleum Institute
,
Drilling
,
Fatigue design
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