Surge forces of a FPSO at lee side of submerged plate in regular waves

A submerged horizontal plate type breakwater is not only to be good energy dissipates of wave breaking on the top of the plate, but also to generate steady flow and to reproduce shorter waves. This paper assessed a submerged plate which is applied to set up for an Oil/Gas Floating Production Storage...

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Main Authors: Priyanto, Agoes, Erwandi, Erwandi, Samudro, Samudro
Format: Article
Language:English
Published: Faculty of Mechanical Engineering 2008
Subjects:
Online Access:http://eprints.utm.my/8563/1/APriyanto2008-Surge_Force_Of_A_FPSO_At.pdf
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author Priyanto, Agoes
Erwandi, Erwandi
Samudro, Samudro
author_facet Priyanto, Agoes
Erwandi, Erwandi
Samudro, Samudro
author_sort Priyanto, Agoes
collection ePrints
description A submerged horizontal plate type breakwater is not only to be good energy dissipates of wave breaking on the top of the plate, but also to generate steady flow and to reproduce shorter waves. This paper assessed a submerged plate which is applied to set up for an Oil/Gas Floating Production Storage and Offloading (FPSO) structure. The wave exciting surge forces of the FPSO at the lee side of the submerged plate were examined by using Boundary Element Method based on the potential theory. In order to verify the numerical results, the model experiments have been carried out in Towing Tank of Laboratorium Hidrodinamika Indonesia, BPP Teknologi. By comparing the numerical results with the experimental ones, the results show that the numerical results have similar tendency to the experimental ones, and it is deduced that the submerged plate reduces effectively the wave exciting surge forces at low wave frequencies.
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spelling utm.eprints-85632010-06-02T01:56:19Z http://eprints.utm.my/8563/ Surge forces of a FPSO at lee side of submerged plate in regular waves Priyanto, Agoes Erwandi, Erwandi Samudro, Samudro TJ Mechanical engineering and machinery A submerged horizontal plate type breakwater is not only to be good energy dissipates of wave breaking on the top of the plate, but also to generate steady flow and to reproduce shorter waves. This paper assessed a submerged plate which is applied to set up for an Oil/Gas Floating Production Storage and Offloading (FPSO) structure. The wave exciting surge forces of the FPSO at the lee side of the submerged plate were examined by using Boundary Element Method based on the potential theory. In order to verify the numerical results, the model experiments have been carried out in Towing Tank of Laboratorium Hidrodinamika Indonesia, BPP Teknologi. By comparing the numerical results with the experimental ones, the results show that the numerical results have similar tendency to the experimental ones, and it is deduced that the submerged plate reduces effectively the wave exciting surge forces at low wave frequencies. Faculty of Mechanical Engineering 2008-12 Article PeerReviewed application/pdf en http://eprints.utm.my/8563/1/APriyanto2008-Surge_Force_Of_A_FPSO_At.pdf Priyanto, Agoes and Erwandi, Erwandi and Samudro, Samudro (2008) Surge forces of a FPSO at lee side of submerged plate in regular waves. Jurnal Mekanikal (26). pp. 63-75. ISSN 0127-3396 https://www.fkm.utm.my/~mekanika/Issue%2026/Evaluation(Feri-jilid26).pdf
spellingShingle TJ Mechanical engineering and machinery
Priyanto, Agoes
Erwandi, Erwandi
Samudro, Samudro
Surge forces of a FPSO at lee side of submerged plate in regular waves
title Surge forces of a FPSO at lee side of submerged plate in regular waves
title_full Surge forces of a FPSO at lee side of submerged plate in regular waves
title_fullStr Surge forces of a FPSO at lee side of submerged plate in regular waves
title_full_unstemmed Surge forces of a FPSO at lee side of submerged plate in regular waves
title_short Surge forces of a FPSO at lee side of submerged plate in regular waves
title_sort surge forces of a fpso at lee side of submerged plate in regular waves
topic TJ Mechanical engineering and machinery
url http://eprints.utm.my/8563/1/APriyanto2008-Surge_Force_Of_A_FPSO_At.pdf
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