Second-order wave loads on a floating structure may excite resonance phenomena, such as slow-drift or springing, at the natural frequencies of the floating structure. Therefore, taking into account the response of a floating offshore wind turbine (FOWT) platform under non-linear wave loads is of paramount importance for its design.This paper presents computation results of the quadratic transfer functions (QTFs) for sum- and difference-frequencies wave loads on FOWT platforms using open-source potential flow, boundary element solver NEMOH. The QTFs are composed of quadratic terms and second-order potential terms. The quadratic terms are computed based on the near-field formulation, while the computation of potential terms is based on the i...
The influence of fully nonlinear wave effects on floating wind turbine has been studied in this pape...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Cata...
Structural ringing can be caused by non-linear hydrodynamic loads in steep waves, by wave slamming, ...
Floating wind turbines (FWTs) are proposed as a method to harness the significant wind energy resour...
The natural surge and pitch frequencies of semisubmersible offshore wind platforms are typically des...
In a severe sea state, nonlinear wave loads can excite resonant responses of floating wind turbines ...
As offshore wind projects move to deeper waters, floating platforms become the most feasible solutio...
The paper presents a comparison between empirical and numerical quadratic transfer functions (QTFs) ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Ca...
This paper focuses on the analysis of a floating wind turbine under multidirectional wave loading. S...
Renewable energy is a vital option for our sustainable future. With its high source availability and...
The main focus of this paper is on hydrodynamic modelling of a semisubmersible platform (which can s...
Tension Leg Platform (TLP) is one of the concepts which shows promising results during initial studi...
Floating offshore wind turbines (FOWTs) interact with waves in complex sea conditions, inparticular ...
Offshore wind energy is a valuable renewable resource that is inexhaustible, strong, and consistent....
The influence of fully nonlinear wave effects on floating wind turbine has been studied in this pape...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Cata...
Structural ringing can be caused by non-linear hydrodynamic loads in steep waves, by wave slamming, ...
Floating wind turbines (FWTs) are proposed as a method to harness the significant wind energy resour...
The natural surge and pitch frequencies of semisubmersible offshore wind platforms are typically des...
In a severe sea state, nonlinear wave loads can excite resonant responses of floating wind turbines ...
As offshore wind projects move to deeper waters, floating platforms become the most feasible solutio...
The paper presents a comparison between empirical and numerical quadratic transfer functions (QTFs) ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Ca...
This paper focuses on the analysis of a floating wind turbine under multidirectional wave loading. S...
Renewable energy is a vital option for our sustainable future. With its high source availability and...
The main focus of this paper is on hydrodynamic modelling of a semisubmersible platform (which can s...
Tension Leg Platform (TLP) is one of the concepts which shows promising results during initial studi...
Floating offshore wind turbines (FOWTs) interact with waves in complex sea conditions, inparticular ...
Offshore wind energy is a valuable renewable resource that is inexhaustible, strong, and consistent....
The influence of fully nonlinear wave effects on floating wind turbine has been studied in this pape...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Cata...
Structural ringing can be caused by non-linear hydrodynamic loads in steep waves, by wave slamming, ...