Analysis of Floating Buoy of a Wave Power Generating Jack-Up Platform

The paper focuses on the performance of floating buoys of a wave power generating jack-up platform called Haiyuan 1 , in order to work out the optimum designed draft and hydraulic pressure. The performance of the buoy, especially its delivered power, is an important issue in designing oscillating bu...

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Main Authors: Date Li, Detang Li, Fei Li, Jingxin Shi, Wei Zhang
Format: Article
Language:English
Published: SAGE Publishing 2013-01-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1155/2013/105072
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spelling doaj-3181a66edfb64150aee37368a60cf1692020-11-25T03:34:05ZengSAGE PublishingAdvances in Mechanical Engineering1687-81322013-01-01510.1155/2013/10507210.1155_2013/105072Analysis of Floating Buoy of a Wave Power Generating Jack-Up Platform Date LiDetang LiFei LiJingxin ShiWei ZhangThe paper focuses on the performance of floating buoys of a wave power generating jack-up platform called Haiyuan 1 , in order to work out the optimum designed draft and hydraulic pressure. The performance of the buoy, especially its delivered power, is an important issue in designing oscillating buoy wave energy converter. In this case, major factors affect the performance including incident wave, designed draft, and hydraulic pressure on the buoy. To find out the relationship among design draft, hydraulic pressure, and delivered power, the key point is to precisely estimate wave induced motion of the buoy. Three-dimensional theory and time domain method based on potential theory were adopted in the paper. Unlike ship and other floating structures, motion of wave energy converter (WEC) buoy in wave will be weakened because of energy take-off, which will cause significant draft changing with time. Thus, draft changing should be taken into consideration as well. In addition, green water problem occurs more frequently than that in ship and other floating structures and also might the reduce delivered power. Therefore, green water problem will also be taken into account when choosing the optimum designed draft and hydraulic pressure. The calculation indicates that the optimum designed draft is 0.935 m, while the optimum designed hydraulic pressure is 30 kN.https://doi.org/10.1155/2013/105072
collection DOAJ
language English
format Article
sources DOAJ
author Date Li
Detang Li
Fei Li
Jingxin Shi
Wei Zhang
spellingShingle Date Li
Detang Li
Fei Li
Jingxin Shi
Wei Zhang
Analysis of Floating Buoy of a Wave Power Generating Jack-Up Platform
Advances in Mechanical Engineering
author_facet Date Li
Detang Li
Fei Li
Jingxin Shi
Wei Zhang
author_sort Date Li
title Analysis of Floating Buoy of a Wave Power Generating Jack-Up Platform
title_short Analysis of Floating Buoy of a Wave Power Generating Jack-Up Platform
title_full Analysis of Floating Buoy of a Wave Power Generating Jack-Up Platform
title_fullStr Analysis of Floating Buoy of a Wave Power Generating Jack-Up Platform
title_full_unstemmed Analysis of Floating Buoy of a Wave Power Generating Jack-Up Platform
title_sort analysis of floating buoy of a wave power generating jack-up platform
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8132
publishDate 2013-01-01
description The paper focuses on the performance of floating buoys of a wave power generating jack-up platform called Haiyuan 1 , in order to work out the optimum designed draft and hydraulic pressure. The performance of the buoy, especially its delivered power, is an important issue in designing oscillating buoy wave energy converter. In this case, major factors affect the performance including incident wave, designed draft, and hydraulic pressure on the buoy. To find out the relationship among design draft, hydraulic pressure, and delivered power, the key point is to precisely estimate wave induced motion of the buoy. Three-dimensional theory and time domain method based on potential theory were adopted in the paper. Unlike ship and other floating structures, motion of wave energy converter (WEC) buoy in wave will be weakened because of energy take-off, which will cause significant draft changing with time. Thus, draft changing should be taken into consideration as well. In addition, green water problem occurs more frequently than that in ship and other floating structures and also might the reduce delivered power. Therefore, green water problem will also be taken into account when choosing the optimum designed draft and hydraulic pressure. The calculation indicates that the optimum designed draft is 0.935 m, while the optimum designed hydraulic pressure is 30 kN.
url https://doi.org/10.1155/2013/105072
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AT detangli analysisoffloatingbuoyofawavepowergeneratingjackupplatform
AT feili analysisoffloatingbuoyofawavepowergeneratingjackupplatform
AT jingxinshi analysisoffloatingbuoyofawavepowergeneratingjackupplatform
AT weizhang analysisoffloatingbuoyofawavepowergeneratingjackupplatform
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