Experimental Investigation on the Characteristics of Pitch Motion for a Novel SPAR–type FOWT in Regular Waves

Pitching mode is more crucial than heaving mode in assessing floating offshore wind turbine (FOWT) motion characteristics, especially the operation of the SPAR substructure. The aim of this paper is to develop an experimental method for improving the SPAR substructure to minimize unnecessary pitch m...

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Main Authors: Fuad Mahfud Assidiq, Daeng Paroka, Habibi Palippui, Hidayatullah Hidayatullah, Muhammad Fajar Fitra Ramadan
Format: Article
Language:English
Published: Department of Naval Architecture, Faculty Engineering, Diponegoro University 2023-05-01
Series:Kapal
Subjects:
Online Access:https://ejournal.undip.ac.id/index.php/kapal/article/view/52191
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author Fuad Mahfud Assidiq
Daeng Paroka
Habibi Palippui
Hidayatullah Hidayatullah
Muhammad Fajar Fitra Ramadan
author_facet Fuad Mahfud Assidiq
Daeng Paroka
Habibi Palippui
Hidayatullah Hidayatullah
Muhammad Fajar Fitra Ramadan
author_sort Fuad Mahfud Assidiq
collection DOAJ
description Pitching mode is more crucial than heaving mode in assessing floating offshore wind turbine (FOWT) motion characteristics, especially the operation of the SPAR substructure. The aim of this paper is to develop an experimental method for improving the SPAR substructure to minimize unnecessary pitch motion. Toward this end, three vertical plate configurations based on the novel SPAR are being developed, known as the 3VP, 4VP, and 5VP models. In consideration of 0⁰, 30⁰, 60⁰, 90⁰-incidence, the pitch response characteristics of the proposed novel SPAR models are comprehensively evaluated in terms of submerged volume ratio, wave-induced motion, non-dimensional damping coefficient, and percentage of motion reduction. The model test results indicate that the 4VP model outperforms the other novel models with respect to dynamic response, particularly the incidence of 0⁰ and 90⁰. This study implies that the novel SPAR development is both feasible and effective in the modification of SPAR-type FOWT substructures.
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spelling doaj.art-b3f6fc6ab4014e73a4772944b404af302023-08-03T03:34:02ZengDepartment of Naval Architecture, Faculty Engineering, Diponegoro UniversityKapal1829-83702301-90692023-05-0120216317410.14710/kapal.v20i2.5219122053Experimental Investigation on the Characteristics of Pitch Motion for a Novel SPAR–type FOWT in Regular WavesFuad Mahfud Assidiq0Daeng Paroka1Habibi Palippui2Hidayatullah Hidayatullah3Muhammad Fajar Fitra Ramadan4Department of Ocean Engineering, Universitas Hasanuddin, Jl. Poros Malino, Bontomarannu, Gowa, Indonesia 92171, IndonesiaDepartment of Ocean Engineering, Universitas Hasanuddin, Jl. Poros Malino, Bontomarannu, Gowa, Indonesia 92171, IndonesiaDepartment of Ocean Engineering, Universitas Hasanuddin, Jl. Poros Malino, Bontomarannu, Gowa, Indonesia 92171, IndonesiaDepartment of Ocean Engineering, Universitas Hasanuddin, Jl. Poros Malino, Bontomarannu, Gowa, Indonesia 92171, IndonesiaDepartment of Ocean Engineering, Universitas Hasanuddin, Jl. Poros Malino, Bontomarannu, Gowa, Indonesia 92171, IndonesiaPitching mode is more crucial than heaving mode in assessing floating offshore wind turbine (FOWT) motion characteristics, especially the operation of the SPAR substructure. The aim of this paper is to develop an experimental method for improving the SPAR substructure to minimize unnecessary pitch motion. Toward this end, three vertical plate configurations based on the novel SPAR are being developed, known as the 3VP, 4VP, and 5VP models. In consideration of 0⁰, 30⁰, 60⁰, 90⁰-incidence, the pitch response characteristics of the proposed novel SPAR models are comprehensively evaluated in terms of submerged volume ratio, wave-induced motion, non-dimensional damping coefficient, and percentage of motion reduction. The model test results indicate that the 4VP model outperforms the other novel models with respect to dynamic response, particularly the incidence of 0⁰ and 90⁰. This study implies that the novel SPAR development is both feasible and effective in the modification of SPAR-type FOWT substructures.https://ejournal.undip.ac.id/index.php/kapal/article/view/52191pitch motionsparvertical plate
spellingShingle Fuad Mahfud Assidiq
Daeng Paroka
Habibi Palippui
Hidayatullah Hidayatullah
Muhammad Fajar Fitra Ramadan
Experimental Investigation on the Characteristics of Pitch Motion for a Novel SPAR–type FOWT in Regular Waves
Kapal
pitch motion
spar
vertical plate
title Experimental Investigation on the Characteristics of Pitch Motion for a Novel SPAR–type FOWT in Regular Waves
title_full Experimental Investigation on the Characteristics of Pitch Motion for a Novel SPAR–type FOWT in Regular Waves
title_fullStr Experimental Investigation on the Characteristics of Pitch Motion for a Novel SPAR–type FOWT in Regular Waves
title_full_unstemmed Experimental Investigation on the Characteristics of Pitch Motion for a Novel SPAR–type FOWT in Regular Waves
title_short Experimental Investigation on the Characteristics of Pitch Motion for a Novel SPAR–type FOWT in Regular Waves
title_sort experimental investigation on the characteristics of pitch motion for a novel spar type fowt in regular waves
topic pitch motion
spar
vertical plate
url https://ejournal.undip.ac.id/index.php/kapal/article/view/52191
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