The structural integrity of offshore wind turbine (OWT) support structures is affected by one of the most severe damage mechanisms known as pitting corrosion‐fatigue. In this study, the structural reliability of such structures subjected to pitting corrosion‐fatigue is assessed using a damage tolerance modelling approach. A probabilistic model that ascertains the reliability of the structure is presented, incorporating the randomness in cyclic load and corrosive environment as well as uncertainties in shape factor, pit size and aspect ratio. A non‐intrusive formulation is proposed consisting of a sequence of steps. First, a stochastic parametric Finite Element Analysis (FEA) is performed using SMART© crack growth and Design Xplorer© facilit...
The fatigue limit state (FLS) often drives the design of offshore wind turbine (OWT) substructures. ...
Optimization of the design of offshore wind turbine substructures with respect to fatigue loads is a...
Parametric Finite Element Analysis (FEA) modelling is a powerful design tool often used for offshore...
The structural integrity of offshore wind turbine (OWT) support structures is affected by one of the...
Offshore wind turbines (OWTs) are deployed in harsh environments often characterized by highly stoch...
Offshore Wind Turbine (OWT) support structures are subjected to hostile environments, defined by hig...
This paper investigates from a structural reliability assessment (SRA) perspective the fatigue relia...
OWT (Offshore Wind Turbine) support structures are exposed to harsh ocean environment with significa...
Offshore wind turbine support structures, which connect the wind turbine transition piece and/or tow...
OWT (Offshore Wind Turbine) support structures are exposed to harsh ocean environment with significa...
Floating offshore wind turbines are becoming more attractive to the wind industry due to their capab...
Offshore wind turbine (OWT) support structures need to be designed against fatigue failure under cyc...
This paper describes a reliability-based approach to determine fatigue design factors (FDF) for offs...
The assessment of structural reliability for offshore wind turbines (OWTs) is challenging. The envir...
In this work, a generic framework for reliability assessment of OWT (Offshore Wind Turbine) monopile...
The fatigue limit state (FLS) often drives the design of offshore wind turbine (OWT) substructures. ...
Optimization of the design of offshore wind turbine substructures with respect to fatigue loads is a...
Parametric Finite Element Analysis (FEA) modelling is a powerful design tool often used for offshore...
The structural integrity of offshore wind turbine (OWT) support structures is affected by one of the...
Offshore wind turbines (OWTs) are deployed in harsh environments often characterized by highly stoch...
Offshore Wind Turbine (OWT) support structures are subjected to hostile environments, defined by hig...
This paper investigates from a structural reliability assessment (SRA) perspective the fatigue relia...
OWT (Offshore Wind Turbine) support structures are exposed to harsh ocean environment with significa...
Offshore wind turbine support structures, which connect the wind turbine transition piece and/or tow...
OWT (Offshore Wind Turbine) support structures are exposed to harsh ocean environment with significa...
Floating offshore wind turbines are becoming more attractive to the wind industry due to their capab...
Offshore wind turbine (OWT) support structures need to be designed against fatigue failure under cyc...
This paper describes a reliability-based approach to determine fatigue design factors (FDF) for offs...
The assessment of structural reliability for offshore wind turbines (OWTs) is challenging. The envir...
In this work, a generic framework for reliability assessment of OWT (Offshore Wind Turbine) monopile...
The fatigue limit state (FLS) often drives the design of offshore wind turbine (OWT) substructures. ...
Optimization of the design of offshore wind turbine substructures with respect to fatigue loads is a...
Parametric Finite Element Analysis (FEA) modelling is a powerful design tool often used for offshore...