The mooring system of offshore floating wind foundations, which anchors the floating foundations to the seabed, sustains large dynamic loads during operation. The mooring chains are connected to the floating foundation below the water level through fairleads and chain-stoppers. The corrosive marine environment and the cyclic loading make the mooring connection prone to corrosion pitting and fatigue crack initiation and propagation from the pits, particularly in the weld zones. In this study, a finite element analysis of the crack growth from corrosion pits has been performed and the results are presented in order to provide an estimate of the extent of damage after the crack is detected. A Python script have been developed which generates t...
Steel support structures of offshore wind turbines (jackets and monopiles) undergo both fatigue and ...
Steel support structures of offshore wind turbines (jackets and monopiles) undergo both fatigue and ...
Corrosion-fatigue is known to be the dominant failure mechanism in offshore structures, such as offs...
The mooring system of offshore floating wind foundations, which anchors the floating foundations to ...
Floating offshore wind turbines are becoming more attractive to the wind industry due to their capab...
Offshore wind turbines are designed to persist harsh environmental conditions, including corrosion. ...
Offshore wind turbine support structures undergo pitting corrosion due to the marine environment. Be...
Offshore wind turbine support structures, which connect the wind turbine transition piece and/or tow...
The world is currently in a severe man-made climate crisis, creating the need for using renewable en...
Pitting corrosion is a common cause of concern for steel structures in an offshore environment. As g...
Offshore wind energy industry around globe is expanding rapidly in the recent decade to face challen...
The structural integrity of offshore wind turbine (OWT) support structures is affected by one of the...
Offshore wind turbine support structures are exposed to maritime conditions, which can lead to corro...
Steel support structures of offshore wind turbines (jackets and monopiles) undergo both fatigue and ...
Offshore wind turbine support structures undergo pitting corrosion due to the marine environment. Be...
Steel support structures of offshore wind turbines (jackets and monopiles) undergo both fatigue and ...
Steel support structures of offshore wind turbines (jackets and monopiles) undergo both fatigue and ...
Corrosion-fatigue is known to be the dominant failure mechanism in offshore structures, such as offs...
The mooring system of offshore floating wind foundations, which anchors the floating foundations to ...
Floating offshore wind turbines are becoming more attractive to the wind industry due to their capab...
Offshore wind turbines are designed to persist harsh environmental conditions, including corrosion. ...
Offshore wind turbine support structures undergo pitting corrosion due to the marine environment. Be...
Offshore wind turbine support structures, which connect the wind turbine transition piece and/or tow...
The world is currently in a severe man-made climate crisis, creating the need for using renewable en...
Pitting corrosion is a common cause of concern for steel structures in an offshore environment. As g...
Offshore wind energy industry around globe is expanding rapidly in the recent decade to face challen...
The structural integrity of offshore wind turbine (OWT) support structures is affected by one of the...
Offshore wind turbine support structures are exposed to maritime conditions, which can lead to corro...
Steel support structures of offshore wind turbines (jackets and monopiles) undergo both fatigue and ...
Offshore wind turbine support structures undergo pitting corrosion due to the marine environment. Be...
Steel support structures of offshore wind turbines (jackets and monopiles) undergo both fatigue and ...
Steel support structures of offshore wind turbines (jackets and monopiles) undergo both fatigue and ...
Corrosion-fatigue is known to be the dominant failure mechanism in offshore structures, such as offs...