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Proceedings Papers
In This Volume
Volume 3: Materials Technology; Pipelines, Risers, and Subsea Systems
Front Matter
Materials Technology
Advances in Materials and Manufacturing Technology
Performance of PA6C Plastic Sheaves Used for Mooring Line Installation
OMAE 2022; V003T03A001https://doi.org/10.1115/OMAE2022-79057
Topics:
Mooring
,
Ocean engineering
,
Pulleys
Finite Element Modeling of the Effect of Different Post-Weld Heat Treatment on Strength of Welded AISI 4130 Steel Pipe
OMAE 2022; V003T03A002https://doi.org/10.1115/OMAE2022-79080
Topics:
Finite element analysis
,
Heat treating (Metalworking)
,
Modeling
,
Pipes
,
Steel
,
Heat
,
Temperature
,
Alloys
,
Finite element methods
,
Welded joints
Benchmark Study of Welding Deformations in Stiffened Plate
OMAE 2022; V003T03A005https://doi.org/10.1115/OMAE2022-87473
Topics:
Deformation
,
Stress
,
Welding
Environmental Effect on Materials Performance
Quantification of Pitting and Stress Concentration Factors on Steel Coupons Exposed to Seawater in the North Sea
OMAE 2022; V003T03A007https://doi.org/10.1115/OMAE2022-79458
Topics:
Corrosion
,
North Sea
,
Seawater
,
Steel
,
Stress concentration
,
Cathodic protection
,
Corrosion protection
,
Failure
,
Ocean engineering
,
Offshore structures
Fatigue Performance and Testing
Development of a Stress Intensity Factor Solution for Mechanically Lined Pipe
OMAE 2022; V003T03A011https://doi.org/10.1115/OMAE2022-78559
Topics:
Finite element analysis
,
Pipes
,
Stress
Influence of Grease Lubrication on Fretting-Fatigue Damages of Steel Wire Ropes
OMAE 2022; V003T03A012https://doi.org/10.1115/OMAE2022-79102
Topics:
Damage
,
Fatigue
,
Floating wind turbines
,
Lubrication
,
Ropes
,
Steel
,
Wire
Fracture Assessment and Control
Transitions in Charpy Energy and Splitting for X70 and X80 Pipe Steel
OMAE 2022; V003T03A016https://doi.org/10.1115/OMAE2022-78918
Topics:
Brittleness
,
Pipes
,
Steel
,
Fracture (Materials)
,
Temperature
,
Wall thickness
,
Brittle fracture
,
Delamination
,
Displacement
,
Ductile fracture
Load Capacity of Sandwich Panel With Core Foam Evaluated by 3-Point Bending Test
OMAE 2022; V003T03A017https://doi.org/10.1115/OMAE2022-79308
Topics:
Composite materials
,
Failure
,
Stress
Inspection, Repair, and Monitoring
Numerical Analysis of the Efficiency of Corroded Pressure Vessels With Composite Repair
Geovana Drumond, Rodrigo Ribeiro, Ilson Pasqualino, Marcelo Igor Lourenço, Valber Perrut, Luiz Daniel Lana
OMAE 2022; V003T03A018https://doi.org/10.1115/OMAE2022-79165
Topics:
Composite materials
,
Maintenance
,
Numerical analysis
,
Pressure vessels
,
Vessels
,
Failure
,
Pressure
,
Computer simulation
,
Hydrostatic testing
,
Nozzles
Sensor Data for Maintenance Planning of Topside Piping
OMAE 2022; V003T03A019https://doi.org/10.1115/OMAE2022-81319
Topics:
Corrosion
,
Fatigue
,
Maintenance
,
Pipes
,
Sensors
Integrity Assessment and Life Extension
Pipelines, Risers, and Subsea Systems
Flexible Pipes and Umbilicals
A Data-Driven Framework for Fatigue Monitoring of Operating Flexible Risers
OMAE 2022; V003T04A001https://doi.org/10.1115/OMAE2022-78017
Topics:
Fatigue
,
Flexible risers
,
Vessels
,
Pipeline risers
,
Risers (Casting)
,
Waves
,
Fatigue life
,
Stress
,
Buoys
,
Computer software
Axial Stiffness and Expansion Behaviour of a Flexible Flowline for Various Extents of Axial Restraint When Subject to Pressure and Thermal Loads
OMAE 2022; V003T04A006https://doi.org/10.1115/OMAE2022-79008
Topics:
Pressure
,
Stiffness
,
Stress
,
Pipes
,
Buckling
,
Mechanical properties
,
Compression
,
American Petroleum Institute
,
Armor
,
Design
Experimental Strain Field Assessment of Pressure Armor Profiles Subjected to Compression Loads via Digital Image Correlation
Caio C. P. Santos, Celso P. Pesce, Rafael G. Savioli, Diego S. Burgos, George Carneiro Campello, Thiago Brun Coser, Rodolfo F. de Souza
OMAE 2022; V003T04A007https://doi.org/10.1115/OMAE2022-79419
Topics:
Armor
,
Compression
,
Pressure
,
Stress
Derivation of Vessel Motions as Operational Limits and Motion Forecasting With 2D Wave Spectra: Case Study of Inter-Array Subsea Cable Installation in the North Sea
OMAE 2022; V003T04A008https://doi.org/10.1115/OMAE2022-79459
Topics:
Cables
,
Downtime
,
North Sea
,
Ocean engineering
,
Spectra (Spectroscopy)
,
Vessels
,
Waves
New Design Methods for Subsea Power Cables Are Helping the Global Marine Renewable Energy Industry Lower Costs and Improve Reliability
Terry Griffiths, Scott Draper, Liang Cheng, Hongwei An, Marie-Lise Schläppy, Feifei Tong, Antonino Fogliani, Wacek Lipski, Chas Spradbery, Yunfei Teng, David White, Daniel Coles, Stuart Noble, Siobhan Doole, Fraser Johnson
OMAE 2022; V003T04A010https://doi.org/10.1115/OMAE2022-80172
Topics:
Cables
,
Design methodology
,
Ocean engineering
,
Reliability
,
Renewable energy
,
Stability
Numerical Evaluation of the Thermal Performance of Modern Offshore Wind Farm Cables Installed in J-Tubes
Panagiotis Delizisis, Charilaos Kokkinos, Dimitrios Chatzipetros, Dionisis Pettas, Andreas I. Chrysochos, Konstantinos Loukas
OMAE 2022; V003T04A013https://doi.org/10.1115/OMAE2022-80962
Topics:
Cables
,
Computational fluid dynamics
,
Ocean engineering
,
Underwater vehicles
,
Wind farms
Cross Section Analysis of Flexible Risers Including Composite Layers
OMAE 2022; V003T04A016https://doi.org/10.1115/OMAE2022-81326
Topics:
Composite materials
,
Flexible risers
,
Laminates
,
Carbon fibers
,
Pipeline risers
,
Risers (Casting)
,
Simulation
,
Stress
,
Elasticity
,
Fibers
Machine Learning in Fatigue Analysis for an Unbonded Flexible Riser
OMAE 2022; V003T04A017https://doi.org/10.1115/OMAE2022-83730
Topics:
Fatigue analysis
,
Flexible risers
,
Machine learning
Flow Assurance
Technical and Environmental Evaluation of a Hydrate Cold Flow Technique to Produce an Oil Reservoir Using a Long Tie-Back and Comparison Against Traditional Development Concepts
OMAE 2022; V003T04A019https://doi.org/10.1115/OMAE2022-79513
Topics:
Carbon
,
Emissions
,
Flow (Dynamics)
,
Hydrocarbon reservoirs
Rigid Pipelines
Structural Response of Subsea Pipe Elbows Under Monotonic and Cyclic Loading
OMAE 2022; V003T04A020https://doi.org/10.1115/OMAE2022-79151
Topics:
Ocean engineering
,
Pipes
A Trawl Net Model Tailor-Made for Simulation of Pipeline and Trawl Board Pull-Over Interaction
OMAE 2022; V003T04A021https://doi.org/10.1115/OMAE2022-79216
Topics:
Pipelines
,
Simulation
,
Tension
,
Drag (Fluid dynamics)
,
Flumes
,
Stress
,
Computer software
,
Degrees of freedom
,
Ropes
,
Steel
Integrity Assessment of Electrically Heat Traced Pipe-in-Pipe Plug Weld
OMAE 2022; V003T04A023https://doi.org/10.1115/OMAE2022-79401
Topics:
Heat
,
Pipes
,
Vacuum
,
Deformation
,
Welded joints
,
Annulus
,
Cable reels
,
Cycles
,
Design
,
Fatigue
Pipeline Reel-Lay FE Simulation: An Advanced Material Model Calibrated From Testing
OMAE 2022; V003T04A024https://doi.org/10.1115/OMAE2022-79856
Topics:
Advanced materials
,
Cable reels
,
Finite element model
,
Pipelines
,
Simulation
,
Testing
,
Cycles
,
Pipes
,
Stress
,
Carbon steel
Methodology for Installation of Under-Straight Pipe for Lateral Buckling Mitigation
Alan Roy, Thurairajah Sriskandarajah, Suwarno Gunawan, Pasupathy Ragupathy, Graeme Roberts, Yasin Kassim, Markus Cederfeldt
OMAE 2022; V003T04A025https://doi.org/10.1115/OMAE2022-79862
Topics:
Buckling
,
Cable reels
,
Pipes
,
Seas
,
Stress
,
Vessels
,
Ocean engineering
,
Seabed
,
Bearings
,
Cycles
Simulation of Trawl Board and Pipeline Pull-Over Interaction
Vegard Longva, Erik Levold, Håvar Ilstad, Svein Sævik, Frank Klæbo, Marie Finstad Opgård, Stefan Arenfeldt Vilsen
OMAE 2022; V003T04A027https://doi.org/10.1115/OMAE2022-79928
Topics:
Pipelines
,
Simulation
,
Stress
,
Finite element model
,
Lumber
,
Flumes
,
Interpolation
,
Ropes
,
Seabed
,
Steel
Numerical Simulation of a Subsea Pipeline Subjected to Near-Field Underwater Explosion Loads With the Coupled Eulerian-Lagrangian (CEL) Method
OMAE 2022; V003T04A028https://doi.org/10.1115/OMAE2022-80657
Topics:
Blast effect
,
Computer simulation
,
Underwater pipelines
,
Explosions
,
Seabed
,
Soil
,
Water
,
Explosives
,
Weapons
,
Damage
Rigid Risers
Small Size Steel Catenary Riser S-Lay Installation With Flexible Joint as 2nd End: Difficulties and Solutions
OMAE 2022; V003T04A033https://doi.org/10.1115/OMAE2022-79231
Topics:
Steel catenary risers
,
Manufacturing
,
Design
,
Pipeline risers
,
Pipes
,
Risers (Casting)
,
Dimensions
,
Finite element analysis
,
Steel
,
Stress
Conductor Instability – Experience From 10 Years of Monitoring Drilling Operations on Subsea Wells in Harsh Environments
OMAE 2022; V003T04A037https://doi.org/10.1115/OMAE2022-81117
Topics:
Drilling
,
Ocean engineering
,
Pipeline risers
,
Soil
,
Wells
,
Stress
,
Cements (Adhesives)
,
Cavities
,
Drilling rigs
,
Fracture (Materials)
The Challenges of Data Availability for the Life Extension of Steel Catenary Risers
OMAE 2022; V003T04A039https://doi.org/10.1115/OMAE2022-83455
Topics:
Life extension
,
Steel catenary risers
,
Design
,
Manufacturing
,
Inspection
,
Pipeline risers
,
Risers (Casting)
,
Failure
,
Fatigue
,
Fatigue analysis
A Novel Free-Standing Riser Concept for Deepwater Developments
OMAE 2022; V003T04A040https://doi.org/10.1115/OMAE2022-85000
Topics:
Deepwater development
,
Mooring
,
Pipeline risers
,
Risers (Casting)
Subsea Structures and Equipment
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