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Journal Articles
Accepted Manuscript
Article Type: Research Papers
J. Offshore Mech. Arct. Eng.
Paper No: OMAE-22-1168
Published Online: March 20, 2023
Journal Articles
Article Type: Research Papers
J. Offshore Mech. Arct. Eng. December 2023, 145(6): 062001.
Paper No: OMAE-22-1097
Published Online: March 16, 2023
Journal Articles
Article Type: Research Papers
J. Offshore Mech. Arct. Eng. June 2023, 145(3): 030904.
Paper No: OMAE-22-1128
Published Online: March 16, 2023
Image
in Numerical Investigations on Suspended Power Cable Configurations for Floating Offshore Wind Turbines in Deep Water Powering an FPSO
> Journal of Offshore Mechanics and Arctic Engineering
Published Online: March 16, 2023
Fig. 1 OC3-Hywind FOWT geometry in meters (reproduced from Refs. [ 25 , 28 ]) More
Image
in Numerical Investigations on Suspended Power Cable Configurations for Floating Offshore Wind Turbines in Deep Water Powering an FPSO
> Journal of Offshore Mechanics and Arctic Engineering
Published Online: March 16, 2023
Fig. 2 Axes of the FOWT mooring system More
Image
in Numerical Investigations on Suspended Power Cable Configurations for Floating Offshore Wind Turbines in Deep Water Powering an FPSO
> Journal of Offshore Mechanics and Arctic Engineering
Published Online: March 16, 2023
Fig. 3 FPSO geometry in meters More
Image
in Numerical Investigations on Suspended Power Cable Configurations for Floating Offshore Wind Turbines in Deep Water Powering an FPSO
> Journal of Offshore Mechanics and Arctic Engineering
Published Online: March 16, 2023
Fig. 4 FPSO mooring layout More
Image
in Numerical Investigations on Suspended Power Cable Configurations for Floating Offshore Wind Turbines in Deep Water Powering an FPSO
> Journal of Offshore Mechanics and Arctic Engineering
Published Online: March 16, 2023
Fig. 5 FPSO mooring line segmentation More
Image
in Numerical Investigations on Suspended Power Cable Configurations for Floating Offshore Wind Turbines in Deep Water Powering an FPSO
> Journal of Offshore Mechanics and Arctic Engineering
Published Online: March 16, 2023
Fig. 6 Illustration of the buoy setup More
Image
in Numerical Investigations on Suspended Power Cable Configurations for Floating Offshore Wind Turbines in Deep Water Powering an FPSO
> Journal of Offshore Mechanics and Arctic Engineering
Published Online: March 16, 2023
Fig. 7 Suspended cable setup for configuration B More
Image
in Numerical Investigations on Suspended Power Cable Configurations for Floating Offshore Wind Turbines in Deep Water Powering an FPSO
> Journal of Offshore Mechanics and Arctic Engineering
Published Online: March 16, 2023
Fig. 8 Current profile (reproduced from Ref. [ 37 ]) More
Image
in Numerical Investigations on Suspended Power Cable Configurations for Floating Offshore Wind Turbines in Deep Water Powering an FPSO
> Journal of Offshore Mechanics and Arctic Engineering
Published Online: March 16, 2023
Fig. 9 In-line and transverse loading directions More
Image
in Numerical Investigations on Suspended Power Cable Configurations for Floating Offshore Wind Turbines in Deep Water Powering an FPSO
> Journal of Offshore Mechanics and Arctic Engineering
Published Online: March 16, 2023
Fig. 10 Power cable shapes in the in-line steady-state extreme LC More
Image
in Numerical Investigations on Suspended Power Cable Configurations for Floating Offshore Wind Turbines in Deep Water Powering an FPSO
> Journal of Offshore Mechanics and Arctic Engineering
Published Online: March 16, 2023
Fig. 11 Power cable shapes in the transverse steady-state extreme LC More
Image
in Numerical Investigations on Suspended Power Cable Configurations for Floating Offshore Wind Turbines in Deep Water Powering an FPSO
> Journal of Offshore Mechanics and Arctic Engineering
Published Online: March 16, 2023
Fig. 12 FOWT responses in the transverse extreme LC: ( a ) sway responses, ( b ) heave responses, and (c) roll responses More
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in Verification and Validation of Computational Fluid Dynamic Simulations of a FOWT Semi-Submersible Under Bichromatic and Random Waves
> Journal of Offshore Mechanics and Arctic Engineering
Published Online: March 16, 2023
Fig. 1 Coordinate system of a mooring chain More
Image
in Verification and Validation of Computational Fluid Dynamic Simulations of a FOWT Semi-Submersible Under Bichromatic and Random Waves
> Journal of Offshore Mechanics and Arctic Engineering
Published Online: March 16, 2023
Fig. 2 The simulation workflow of the coupled code of ReFRESCO and MOORING3D More
Image
in Verification and Validation of Computational Fluid Dynamic Simulations of a FOWT Semi-Submersible Under Bichromatic and Random Waves
> Journal of Offshore Mechanics and Arctic Engineering
Published Online: March 16, 2023
Fig. 3 Illustration of the wave tank and the locations of the wave probes More
Image
in Verification and Validation of Computational Fluid Dynamic Simulations of a FOWT Semi-Submersible Under Bichromatic and Random Waves
> Journal of Offshore Mechanics and Arctic Engineering
Published Online: March 16, 2023
Fig. 4 The wave amplitude spectrum of the focused waves More
Image
in Verification and Validation of Computational Fluid Dynamic Simulations of a FOWT Semi-Submersible Under Bichromatic and Random Waves
> Journal of Offshore Mechanics and Arctic Engineering
Published Online: March 16, 2023
Fig. 5 The computational domain used in the benchmark focused wave simulation More