Skip Nav Destination
Proceedings Papers
Volume 6: Polar and Arctic Sciences and Technology
Front Matter
Polar and Arctic Sciences and Technology
Arctic Sea Transportation
An Evaluation of Decision Support Technology in Simulated Offshore Ice Management
OMAE 2022; V006T07A001https://doi.org/10.1115/OMAE2022-78097
Topics:
Ice
,
Ocean engineering
An Evaluation of Consequence Severity of Ship Evacuations in the Canadian Arctic
OMAE 2022; V006T07A003https://doi.org/10.1115/OMAE2022-79514
Topics:
Arctic region
,
Evacuations
,
Resource allocation
,
Safety
,
Ships
Scenario-Based Risk Management for Arctic Waters
Martin Bergström, Thomas Browne, Sören Ehlers, Inari Helle, Hauke Herrnring, Faisal Khan, Jan Kubiczek, Pentti Kujala, Mihkel Kõrgesaar, Bernt Johan Leira, Tuuli Parviainen, Arttu Polojärvi, Mikko Suominen, Rocky Taylor, Jukka Tuhkuri, Jarno Vanhatalo, Brian Veitch
OMAE 2022; V006T07A004https://doi.org/10.1115/OMAE2022-80767
Topics:
Arctic region
,
Ice
,
Risk management
,
Ships
,
Stress
,
Water
Big Data Analytics for Assistance Operation Identification in Ice-Covered Waters
OMAE 2022; V006T07A006https://doi.org/10.1115/OMAE2022-80925
Topics:
Ice
,
Icebreakers
,
Navigation
,
Water
General Review and Analysis of Research in CEARCTIC and CEPOLAR Projects
OMAE 2022; V006T07A007https://doi.org/10.1115/OMAE2022-81327
Topics:
Arctic Ocean
,
Arctic region
,
Climate change
,
Ice
,
Performance
,
Risk
,
Risk management
,
Safety
,
Uncertainty
,
Water
Ice and Wave Interactions
Hydrodynamic and Mechanic Response of a Floating Flexible Ice Floe in Regular Waves With the ICFD Method
OMAE 2022; V006T07A008https://doi.org/10.1115/OMAE2022-78878
Topics:
Ice floes
,
Waves
,
Ice
,
Climate
,
Simulation
,
Stress
,
Water
,
Climate change
,
Computer simulation
,
Deflection
Ice Model Tests
Ice Basin Tests for Ice-Induced Vibrations of Offshore Structures in the SHIVER Project
Hayo Hendrikse, Tim C. Hammer, Cody C. Owen, Marnix van den Berg, Kees van Beek, Arttu Polojärvi, Otto Puolakka, Tom Willems
OMAE 2022; V006T07A009https://doi.org/10.1115/OMAE2022-78507
Topics:
Ice
,
Ice-structure interaction
,
Ocean engineering
,
Offshore structures
,
Vibration
,
Wind
,
Offshore wind turbines
,
Seas
,
Caissons
,
Deflection
Compressive Failure of Ice During Indentation by Rock Particles
OMAE 2022; V006T07A011https://doi.org/10.1115/OMAE2022-79211
Topics:
Failure
,
Ice
,
Particulate matter
,
Rocks
,
Ocean engineering
,
Damage
,
Icebergs
,
Pressure
,
Seabed
,
Soil
Marine Propulsion System Under Ice Impact
Splitting-Tests of Laboratory-Made Granular Ice With a Propeller-Like Indenter
OMAE 2022; V006T07A013https://doi.org/10.1115/OMAE2022-78186
Topics:
Ice
,
Propellers
,
Sea ice
,
Stress
,
Force measurement
,
Milling
,
Arctic region
,
Climate change
,
Compressive strength
,
Computer simulation
Verification of Inverse Propeller Moment Estimation Using a Scale Laboratory Rig
OMAE 2022; V006T07A014https://doi.org/10.1115/OMAE2022-78787
Topics:
Propellers
,
Stress
,
Ice
,
Propulsion
,
Ships
Numerical Ice Modeling
Image Processing to Extract Ice Features to Aid Modelling of Ice Force
OMAE 2022; V006T07A017https://doi.org/10.1115/OMAE2022-79255
Topics:
Ice
,
Image processing
,
Modeling
,
Sea ice
Structures in Ice
Lessons Learned: The Influence of Testing Properties on Uniaxial Compression Tests of Ice
OMAE 2022; V006T07A019https://doi.org/10.1115/OMAE2022-78068
Topics:
Compression
,
Ice
,
Testing
,
Design
,
Arctic region
,
Ships
,
Arctic structures
,
Brittleness
,
Canals
,
Climate change
Fatigue Strength of Fixed Offshore Structures Under Variable Amplitude Loading Due to Wind, Wave, and Ice Action
Moritz Braun, Alfons Dörner, Tom Willems, Marc Seidel, Hayo Hendrikse, Knut V. Høyland, Claas Fischer, Sören Ehlers
OMAE 2022; V006T07A020https://doi.org/10.1115/OMAE2022-78764
Topics:
Fatigue damage
,
Fatigue strength
,
Ice
,
Ocean engineering
,
Offshore structures
,
Stress
,
Wind waves
Classification of Ice-Induced Vibration Regimes of Offshore Wind Turbines
OMAE 2022; V006T07A021https://doi.org/10.1115/OMAE2022-78972
Topics:
Ice
,
Offshore wind turbines
,
Vibration
Ice-Induced Loads on Offshore Wind Turbines in the Baltic Sea
OMAE 2022; V006T07A022https://doi.org/10.1115/OMAE2022-79035
Topics:
Ice
,
Ice-structure interaction
,
Offshore wind turbines
,
Seas
,
Stress
Ice Pressure Measurements With TekScan Sensors - Behaviour, Calibration and Application Limits
OMAE 2022; V006T07A023https://doi.org/10.1115/OMAE2022-80463
Topics:
Calibration
,
Ice
,
Pressure measurement
,
Sensors
,
Pressure
,
Failure
,
Computer simulation
,
Design
,
Measurement uncertainty
,
Offshore structures
Peridynamic Analysis of Floating Ice Under Transverse Pressure
OMAE 2022; V006T07A024https://doi.org/10.1115/OMAE2022-80590
Topics:
Damage
,
Fracture (Materials)
,
Ice
,
Pressure
Vessels in Ice
Safety Distance During Escort and Convoy Based on Channel Breakout Simulation and Model Tests
OMAE 2022; V006T07A028https://doi.org/10.1115/OMAE2022-79206
Topics:
Computer simulation
,
Ice
,
Safety
,
Ships
,
Simulation
On the Structural Analysis of Icebreakers Due to Ramming of First-Year Ice Ridges
Weidong Zhao, Bernt Johan Leira, Knut Vilhelm Høyland, Ekaterina Kim, Guoqing Feng, Zhanyang Chen, Hongbin Gui
OMAE 2022; V006T07A029https://doi.org/10.1115/OMAE2022-79661
Topics:
Ice
,
Ice ridges
,
Icebreakers
,
Ships
,
Structural analysis
Simulation of a Ship Advancing in Pre-Sawn Ice
OMAE 2022; V006T07A030https://doi.org/10.1115/OMAE2022-80106
Topics:
Computational fluid dynamics
,
Discrete element methods
,
Ice
,
Ships
,
Simulation