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Proceedings Papers
Volume 5: Pipelines, Risers, and Subsea Systems
Pipelines, Risers, and Subsea Systems
Flexible Pipes and Umbilicals
Root Cause Analysis of Bend Stiffener Failure During Umbilical Full-Scale Fatigue Testing
OMAE 2016; V005T04A001https://doi.org/10.1115/OMAE2016-54063
Topics:
Failure
,
Fatigue testing
,
Root cause analysis
,
Finite element analysis
,
Heat
,
Steel
,
Testing
,
Fatigue
,
Temperature
,
Temperature measurement
Comparison of Bitumen’s Large Strain Viscoelastic Properties in Cables and Umbilicals to Small Strain Rheometer Measurements
OMAE 2016; V005T04A002https://doi.org/10.1115/OMAE2016-54091
Topics:
Cables
,
Rheometers
,
Viscoelasticity
,
Asphalt
,
Bituminous materials
,
Pitch (Bituminous material)
,
Wire
,
Armor
,
Friction
,
Shear stress
A Novel Fatigue Stress Model of Power Phases and Coated Tubes in Deep-Water Power Cables, Umbilicals, and Power Umbilicals
OMAE 2016; V005T04A003https://doi.org/10.1115/OMAE2016-54105
Topics:
Cables
,
Fatigue
,
Stress
,
Water
,
Coating processes
,
Coatings
,
Displacement
,
Fatigue damage
,
Fatigue life
,
Insulation
A Frequency-Domain Model of Bitumen-Coated Armor Wires in Subsea Power Cables, Umbilicals, and Power Umbilicals
OMAE 2016; V005T04A004https://doi.org/10.1115/OMAE2016-54106
Topics:
Armor
,
Asphalt
,
Bituminous materials
,
Cables
,
Ocean engineering
,
Pitch (Bituminous material)
,
Wire
,
Stress
,
Stiffness
,
Temperature
Damping Effect on the Wave Propagation in Carbon Steel Pipelines Under Fluid Hammer Conditions
OMAE 2016; V005T04A005https://doi.org/10.1115/OMAE2016-54194
Topics:
Carbon steel
,
Damping
,
Pipelines
,
Water hammer
,
Wave propagation
,
Pressure
,
Shock (Mechanics)
,
Algebra
,
Damage
,
Deflection
Equivalent Model for Interlocked Carcass Under Axial Loads
OMAE 2016; V005T04A007https://doi.org/10.1115/OMAE2016-54381
Topics:
Stress
,
Pipes
,
Finite element model
,
Materials properties
,
Modeling
Parametric Analysis on the Crushing Resistance of Flexible Pipes Under Installation Loads
OMAE 2016; V005T04A008https://doi.org/10.1115/OMAE2016-54453
Topics:
Pipes
,
Stress
,
Armor
,
Boundary-value problems
,
Deepwater development
,
Failure
,
Finite element methods
,
Geometry
,
Manufacturing systems
,
Numerical analysis
H2S Consumption and the Derivation of a New Annulus Prediction Model for Offshore Flexible Pipes
OMAE 2016; V005T04A009https://doi.org/10.1115/OMAE2016-54472
Topics:
Annulus
,
Ocean engineering
,
Pipes
,
Wire
,
Armor
,
Water
,
Gases
,
Pressure
,
Carbon dioxide
,
Carbon steel
On-Line Phased-Array Ultrasonic System: OPUS to Control Pressure Sheath of Flexible Pipe During Manufacturing
OMAE 2016; V005T04A010https://doi.org/10.1115/OMAE2016-54473
Topics:
Manufacturing
,
Pipes
,
Pressure
,
Polymers
,
Biomedicine
,
Aerospace industry
,
Computer software
,
Control systems
,
Cutting
,
Damage
Alternative Stress Models With Focus on Full FE Model for Flexible Risers
OMAE 2016; V005T04A011https://doi.org/10.1115/OMAE2016-54547
Topics:
Finite element model
,
Flexible risers
,
Stress
,
Armor
,
Wire
,
Computer simulation
,
Computer software
,
External pressure
,
Finite element analysis
,
Modeling
Pure Bending Behavior of Pipe Reinforced by Steel Wires (PSP)
OMAE 2016; V005T04A012https://doi.org/10.1115/OMAE2016-54577
Topics:
Pipes
,
Steel
,
Wire
,
Buckling
,
Ocean engineering
,
Composite materials
,
Newton's method
,
Offshore installations
,
Petroleum industry
,
Plastic pipes
Behavior of Flexible Pipe Subjected to Internal Pressure
OMAE 2016; V005T04A013https://doi.org/10.1115/OMAE2016-54588
Topics:
Pipes
,
Pressure
,
Armor
,
Boundary-value problems
,
Deformation
,
Design
,
Failure
,
Failure mechanisms
,
Finite element analysis
,
Finite element methods
Taking Further the Domain of Use of Low Plasticized High Molecular Weight PVDF for Monolayer Dynamic Application in Flexible Pipe
OMAE 2016; V005T04A014https://doi.org/10.1115/OMAE2016-54650
Topics:
Molecular weight
,
Pipes
,
Pressure
,
Design
,
Temperature
,
Cycles
,
High temperature
,
Mechanical properties
,
Fatigue testing
,
High pressure (Physics)
A Novel Electrical Based Breach Detection System for Flexible Pipe
OMAE 2016; V005T04A016https://doi.org/10.1115/OMAE2016-54781
Topics:
Pipes
,
Damage
,
Annulus
,
Floods
,
Instrumentation
,
Ocean engineering
,
Pipeline risers
,
Risers (Casting)
,
Seawater
,
Carbon steel
Friction Behavior Between Epoxy and Flexible Pipes Armor Wires
Diego A. Lorio, Facundo J. Wedekamper, Fabiano Bertoni, Facundo S. Lopéz, George C. Campello, Telmo Strohaecker
OMAE 2016; V005T04A019https://doi.org/10.1115/OMAE2016-54905
Topics:
Armor
,
Epoxy resins
,
Friction
,
Pipes
,
Wire
,
Pressure
,
Surface roughness
,
Resins
,
Stress
,
Carbon steel
Advanced Finite-Element Modeling for Creep Simulation on Flexible Pipe Pressure Sheath
OMAE 2016; V005T04A020https://doi.org/10.1115/OMAE2016-54952
Topics:
Creep
,
Finite element analysis
,
Modeling
,
Pipes
,
Pressure
,
Simulation
,
Design
,
Polymers
,
Computer software
,
Ocean engineering
Comparison Between Stress Obtained by Numerical Analysis and In-Situ Measurements on a Flexible Pipe Subjected to In-Plane Bending Test
OMAE 2016; V005T04A021https://doi.org/10.1115/OMAE2016-55060
Topics:
Numerical analysis
,
Pipes
,
Stress
,
Armor
,
Finite element model
,
Wire
,
Dynamic testing (Materials)
,
Optimization
Multi-Objective Shape Optimization Design for LNG Cryogenic Helical Corrugated Steel Pipe
OMAE 2016; V005T04A022https://doi.org/10.1115/OMAE2016-55151
Topics:
Design
,
Liquefied natural gas
,
Pipes
,
Shape optimization
,
Steel
,
Stiffness
,
Stress
,
Algorithms
,
Artificial neural networks
,
Deformation
Flow Assurance
CFD Simulation of the Effect of Different Oils on Water Wetting and Internal Corrosion of Oil Pipelines
OMAE 2016; V005T04A023https://doi.org/10.1115/OMAE2016-54755
Topics:
Computational fluid dynamics
,
Corrosion
,
Oils
,
Petroleum
,
Pipelines
,
Simulation
,
Water
,
Wetting
,
Flow (Dynamics)
,
Crude oil
Sandwich Pipe for Long Distance Pipelines: Flow Assurance and Costs
OMAE 2016; V005T04A025https://doi.org/10.1115/OMAE2016-54950
Topics:
Flow (Dynamics)
,
Pipelines
,
Pipes
,
Collapse
,
Ocean engineering
,
Steel
,
Thermal insulation
,
Annulus
,
Buckling
,
Cements (Adhesives)
Rigid Pipelines
Contribution of Axial Soil Resistance in Buckle Initiation of the HPHT Pipelines on Sleepers
OMAE 2016; V005T04A027https://doi.org/10.1115/OMAE2016-54137
Topics:
Earth resistance
,
Pipelines
,
Soil
,
Finite element model
,
Engineering simulation
,
External pressure
,
Finite element analysis
,
Pressure
,
Seabed
,
Simulation
A Study of Multi-Method Based Subsea Pipeline Leak Detection System
OMAE 2016; V005T04A028https://doi.org/10.1115/OMAE2016-54155
Topics:
Leakage
,
Underwater pipelines
,
Ocean engineering
,
Pattern recognition
,
Pipelines
,
Corrosion
,
Damage
,
Data acquisition
,
Flow (Dynamics)
,
Probability
Performance of Vibroacoustic Technology for Pipeline Leak Detection
OMAE 2016; V005T04A029https://doi.org/10.1115/OMAE2016-54181
Topics:
Leakage
,
Pipelines
,
Fluids
,
Pressure
,
Crude oil
,
Design
,
Failure
,
Flow (Dynamics)
,
Natural gas
,
Noise (Sound)
DNV GL-ST-F101 Combined Loading Criterion: Background and Derivation
OMAE 2016; V005T04A031https://doi.org/10.1115/OMAE2016-54238
Topics:
Buckling
,
Finite element analysis
,
Plasticity
,
Work hardening
Subsea Pipeline UHB Design: An Improved Analysis Approach
OMAE 2016; V005T04A032https://doi.org/10.1115/OMAE2016-54253
Topics:
Design
,
Underwater pipelines
,
Pipelines
,
Event history analysis
,
Stress
,
Buckling
,
Finite element analysis
,
Finite element model
,
Friction
,
Modal analysis
Probabilistic Analysis of the Collapse Pressure of Corroded Pipelines
OMAE 2016; V005T04A033https://doi.org/10.1115/OMAE2016-54299
Topics:
Collapse
,
Pipelines
,
Pressure
,
Reliability
,
Corrosion
,
Uncertainty
,
Damage
,
Inspection
,
Pipes
,
Probability
High Peak Strain on Pipeline Material During Reel-Lay: Acceptable or Not?
OMAE 2016; V005T04A035https://doi.org/10.1115/OMAE2016-54432
Topics:
Cable reels
,
Pipelines
,
Pipes
,
Stiffness
,
Coating processes
,
Coatings
,
Compression
,
Deformation
,
Geometry
,
Buckling
Measurement of Lined Pipe Liner Imperfections and the Effect on Wrinkling and Collapse Under Bending
OMAE 2016; V005T04A036https://doi.org/10.1115/OMAE2016-54539
Topics:
Collapse
,
Pipes
,
Buckling
,
Carbon steel
,
Compression
,
Corrosion
,
Deformation
,
Finishing
,
Finite element model
,
Fourier series
Responses of Submarine Pipelines to Impacts in Soft Clay
OMAE 2016; V005T04A037https://doi.org/10.1115/OMAE2016-54619
Topics:
Underwater pipelines
,
Deformation
,
Pipelines
,
Pressure
,
Anchorage
,
Cement coatings
,
Damage
,
Energy dissipation
,
Fracture (Materials)
,
Fracture (Process)
Non-Linear Clay Soil Model for Lateral Pipe-Soil Interaction
OMAE 2016; V005T04A038https://doi.org/10.1115/OMAE2016-54658
Topics:
Pipes
,
Soil
,
Buckling
,
Pipelines
,
Computer software
,
Cycles
,
Earth resistance
,
Finite element analysis
,
Hydrodynamic stability
,
Stability
DNVGL-ST-F101 Combined Loading Criterion: Range of Application and Comparison With Other Criteria
OMAE 2016; V005T04A039https://doi.org/10.1115/OMAE2016-54741
Topics:
Buckling
,
Containment
,
Design
,
Pipeline risers
,
Pipelines
,
Pipes
,
Piping design
,
Pressure
,
Risers (Casting)
,
Seabed
Soil Characterisation for Installing and Operating Deep-Water Pipelines
OMAE 2016; V005T04A040https://doi.org/10.1115/OMAE2016-54838
Topics:
Pipelines
,
Soil
,
Water
,
Pipeline risers
,
Risers (Casting)
,
Seabed
,
Buckling
,
Deepwater development
,
Design
,
Displacement
Advanced Pipeline Impact Design
OMAE 2016; V005T04A041https://doi.org/10.1115/OMAE2016-54855
Topics:
Design
,
Pipelines
,
Damage
,
Deformation
,
Energy dissipation
,
Kinetic energy
,
Ocean engineering
,
Coating processes
,
Coatings
,
Deflection
Fatigue Assessment of Pipeline With Plain Dents Under Cyclic Pressure Loading Using Finite Element Method
OMAE 2016; V005T04A042https://doi.org/10.1115/OMAE2016-54863
Topics:
Fatigue
,
Finite element methods
,
Pipelines
,
Pressure
,
Pipes
,
Geometry
,
Fatigue life
,
Stress concentration
,
Finite element analysis
,
Stress
Effect of Reeling on Pipeline Structural Performance
OMAE 2016; V005T04A043https://doi.org/10.1115/OMAE2016-54866
Topics:
Pipelines
,
Tension
,
Hardening
,
Kinematics
,
Pipes
,
Cable reels
,
Collapse
,
Cycles
,
Elongation
,
Engineering simulation
Reeling Analysis and Limit State Criteria
OMAE 2016; V005T04A044https://doi.org/10.1115/OMAE2016-54971
Recent Advances in Pipeline Free Span Design: A New Revision of DNV-RP-F105
OMAE 2016; V005T04A045https://doi.org/10.1115/OMAE2016-55010
Topics:
Design
,
Pipelines
,
Vortex-induced vibration
,
Arches
,
Fatigue
,
Waves
,
Dynamic response
,
Analytical methods
,
Computational methods
,
Cross-flow
Rigid Risers
Nonlinear Dynamic Analysis of Deepwater Steel Lazy Wave Riser Subjected to Imposed Top-End Excitations
OMAE 2016; V005T04A046https://doi.org/10.1115/OMAE2016-54111
Topics:
Dynamic analysis
,
Excitation
,
Pipeline risers
,
Risers (Casting)
,
Steel
,
Waves
,
Dynamic response
,
Buoyancy
,
Design
,
Dynamics (Mechanics)
A New User Defined Element for Nonlinear Riser-Soil Interaction Analysis of Steel Catenary Riser Systems
OMAE 2016; V005T04A047https://doi.org/10.1115/OMAE2016-54210
Topics:
Pipeline risers
,
Risers (Casting)
,
Soil
,
Steel catenary risers
,
Seabed
,
Computer software
,
Design
,
Fatigue design
,
Pipes
,
Simulation
Fatigue Design and Analysis of Offshore Pipelines and Risers Subjected to Waves and Currents
OMAE 2016; V005T04A049https://doi.org/10.1115/OMAE2016-54252
Topics:
Currents
,
Fatigue design
,
Pipeline risers
,
Risers (Casting)
,
Underwater pipelines
,
Waves
,
Stress
,
Design
,
Fatigue
,
Fatigue damage
Comparison of Software for Analysis of Risers Tied Back With Pull Tubes
OMAE 2016; V005T04A051https://doi.org/10.1115/OMAE2016-54456
Topics:
Computer software
,
Pipeline risers
,
Risers (Casting)
,
Pipes
,
Stress
,
Design
,
Dynamic analysis
,
Fatigue
,
Fatigue damage
,
Finite element analysis
Axial Load Transfer Characteristics of SCR Pipe-in-Pipe Vibration System With Different Diameter Ratio
OMAE 2016; V005T04A053https://doi.org/10.1115/OMAE2016-54599
Topics:
Pipes
,
Stress
,
Vibration equipment
,
Tubing
,
Excitation
,
Pipeline risers
,
Risers (Casting)
,
Accidents
,
Buckling
,
Drilling
Experimental and Numerical Study of Steel Lazy Wave Riser Response in Extreme Environment
OMAE 2016; V005T04A055https://doi.org/10.1115/OMAE2016-54871
Topics:
Pipeline risers
,
Risers (Casting)
,
Steel
,
Waves
,
Computer simulation
,
Fiber Bragg gratings
,
Deformation
,
Design
,
Drag (Fluid dynamics)
,
Modeling
Steel Lazy Wave Riser Tests in Harsh Offshore Environment
OMAE 2016; V005T04A057https://doi.org/10.1115/OMAE2016-54970
Topics:
Ocean engineering
,
Pipeline risers
,
Risers (Casting)
,
Steel
,
Waves
,
Design
,
Currents
,
Model basin
,
Vessels
Subsea Structures and Equipment
Fatigue Considerations for Subsea Well Systems
OMAE 2016; V005T04A058https://doi.org/10.1115/OMAE2016-54280
Evaluating Vibration Performance of a Subsea Pump Module by Full-Scale Testing and Numerical Modelling
OMAE 2016; V005T04A059https://doi.org/10.1115/OMAE2016-54318
Topics:
Modeling
,
Ocean engineering
,
Pumps
,
Testing
,
Vibration
,
Pipes
,
Water
,
Damping
,
Flow (Dynamics)
,
Compression
Vibration Behavior of Pipelines Conveying Gas-Liquid Two-Phase Flow Supported on the Seabed
OMAE 2016; V005T04A060https://doi.org/10.1115/OMAE2016-54595
Topics:
Pipelines
,
Seabed
,
Two-phase flow
,
Vibration
,
Slug flows
,
Design
,
Differential equations
,
Displacement
,
Dynamic response
,
Eigenfunctions
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