Floating offshore wind turbine (FOWT) installations are progressing from the R&D stage to commercial installation projects. The prospective sites are situated in increasingly deeper water and further away from the shore. This paper presents the Deep Turbine Installation-Floating (DTI-F) concept, an innovative hybrid spar buoy-based FOWT capable of being able to raise and lower the tower and nacelle, which simplifies construction, installation, maintenance and decommissioning. The study is focused on the hydrodynamics of the moored floating system, and it is based on experimental and numerical modelling work. A 1:45 Froude scaled model of the DTI-F wind concept was tested using three different mooring configurations: i) three mooring lines, ...
This paper presents a comparative numerical study on the dynamic responses of three Floating Offshor...
A multi-unit floating offshore wind turbine concept, the wind-tracing floating offshore wind turbine...
Floating wind technology has the potential to produce low-carbon electricity on a large scale: it a...
This paper presents the preliminary design of the Deep Turbine Installation-Floating (DTI-F) concept...
Floating offshore wind turbine technology is progressing from the research stages to commercial proj...
This study aims to de-risk the development of the Deep Turbine Installation-Floating (DTI-F) concept...
This is the author accepted manuscript. The final version is available from ASME via the DOI in this...
The main drivers for the continued decarbonisation of the global energy market are renewable energy ...
Offshore wind energy is turning to a mainstream energy source due to the advantages of low emission...
Installation of floating wind turbines at the offshore site is a challenging task. A significant par...
Master's thesis in Offshore technology : Marine and subsea technologyIn the past decades, the global...
To increase the competitiveness of offshore wind energy in the global energy market, it is necessary...
Wind energy is the most widely harvested of the renewable energy resources. The offshore wind sector...
In recent years, the demand for renewable energy has increased significantly because of its lower en...
This paper presents a comparative numerical study on the dynamic responses of three Floating Offshor...
A multi-unit floating offshore wind turbine concept, the wind-tracing floating offshore wind turbine...
Floating wind technology has the potential to produce low-carbon electricity on a large scale: it a...
This paper presents the preliminary design of the Deep Turbine Installation-Floating (DTI-F) concept...
Floating offshore wind turbine technology is progressing from the research stages to commercial proj...
This study aims to de-risk the development of the Deep Turbine Installation-Floating (DTI-F) concept...
This is the author accepted manuscript. The final version is available from ASME via the DOI in this...
The main drivers for the continued decarbonisation of the global energy market are renewable energy ...
Offshore wind energy is turning to a mainstream energy source due to the advantages of low emission...
Installation of floating wind turbines at the offshore site is a challenging task. A significant par...
Master's thesis in Offshore technology : Marine and subsea technologyIn the past decades, the global...
To increase the competitiveness of offshore wind energy in the global energy market, it is necessary...
Wind energy is the most widely harvested of the renewable energy resources. The offshore wind sector...
In recent years, the demand for renewable energy has increased significantly because of its lower en...
This paper presents a comparative numerical study on the dynamic responses of three Floating Offshor...
A multi-unit floating offshore wind turbine concept, the wind-tracing floating offshore wind turbine...
Floating wind technology has the potential to produce low-carbon electricity on a large scale: it a...