Numerical Investigation of a Tuned Heave Plate Energy-Harvesting System of a Semi-Submersible Platform

A novel tuned heave plate energy-harvesting system (THPEH) is presented for the motion suppressing and energy harvesting of a semi-submersible platform. This THPEH system is designed based on the principle of a tuned mass damper (TMD) and is composed of spring supports, a power take-off system (PTO)...

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Main Authors: Kun Liu, Haizhi Liang, Jinping Ou
Format: Article
Language:English
Published: MDPI AG 2016-01-01
Series:Energies
Subjects:
Online Access:http://www.mdpi.com/1996-1073/9/2/82
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spelling doaj-27fb1aef5154490b8309bd64cd548a5f2020-11-24T23:39:23ZengMDPI AGEnergies1996-10732016-01-01928210.3390/en9020082en9020082Numerical Investigation of a Tuned Heave Plate Energy-Harvesting System of a Semi-Submersible PlatformKun Liu0Haizhi Liang1Jinping Ou2School of Civil Engineering, Harbin Institute of Technology, Harbin 150090, ChinaFaculty of Infrastructure Engineering, Dalian University of Technology, Dalian 116024, ChinaSchool of Civil Engineering, Harbin Institute of Technology, Harbin 150090, ChinaA novel tuned heave plate energy-harvesting system (THPEH) is presented for the motion suppressing and energy harvesting of a semi-submersible platform. This THPEH system is designed based on the principle of a tuned mass damper (TMD) and is composed of spring supports, a power take-off system (PTO) and four movable heave plates. The permanent magnet linear generators (PMLG) are used as the PTO system in this design. A semi-submersible platform operating in the South China Sea is selected as the research subject for investigating the effects of the THPEH system on motion reduction and harvesting energy through numerical simulations. The numerical model of the platform and the THPEH system, which was established based on hydrodynamic analysis, is modified and validated by the results of the flume test of a 1:70 scale model. The effects of the parameters, including the size, the frequency ratio and the damping ratio of the THPEH system, are systematically investigated. The results show that this THPEH system, with proper parameters, could significantly reduce the motions of the semi-submersible platform and generate considerable power under different wave conditions.http://www.mdpi.com/1996-1073/9/2/82semi-submersibleheave platewave energywave energy convertertuned mass damper (TMD)
collection DOAJ
language English
format Article
sources DOAJ
author Kun Liu
Haizhi Liang
Jinping Ou
spellingShingle Kun Liu
Haizhi Liang
Jinping Ou
Numerical Investigation of a Tuned Heave Plate Energy-Harvesting System of a Semi-Submersible Platform
Energies
semi-submersible
heave plate
wave energy
wave energy converter
tuned mass damper (TMD)
author_facet Kun Liu
Haizhi Liang
Jinping Ou
author_sort Kun Liu
title Numerical Investigation of a Tuned Heave Plate Energy-Harvesting System of a Semi-Submersible Platform
title_short Numerical Investigation of a Tuned Heave Plate Energy-Harvesting System of a Semi-Submersible Platform
title_full Numerical Investigation of a Tuned Heave Plate Energy-Harvesting System of a Semi-Submersible Platform
title_fullStr Numerical Investigation of a Tuned Heave Plate Energy-Harvesting System of a Semi-Submersible Platform
title_full_unstemmed Numerical Investigation of a Tuned Heave Plate Energy-Harvesting System of a Semi-Submersible Platform
title_sort numerical investigation of a tuned heave plate energy-harvesting system of a semi-submersible platform
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2016-01-01
description A novel tuned heave plate energy-harvesting system (THPEH) is presented for the motion suppressing and energy harvesting of a semi-submersible platform. This THPEH system is designed based on the principle of a tuned mass damper (TMD) and is composed of spring supports, a power take-off system (PTO) and four movable heave plates. The permanent magnet linear generators (PMLG) are used as the PTO system in this design. A semi-submersible platform operating in the South China Sea is selected as the research subject for investigating the effects of the THPEH system on motion reduction and harvesting energy through numerical simulations. The numerical model of the platform and the THPEH system, which was established based on hydrodynamic analysis, is modified and validated by the results of the flume test of a 1:70 scale model. The effects of the parameters, including the size, the frequency ratio and the damping ratio of the THPEH system, are systematically investigated. The results show that this THPEH system, with proper parameters, could significantly reduce the motions of the semi-submersible platform and generate considerable power under different wave conditions.
topic semi-submersible
heave plate
wave energy
wave energy converter
tuned mass damper (TMD)
url http://www.mdpi.com/1996-1073/9/2/82
work_keys_str_mv AT kunliu numericalinvestigationofatunedheaveplateenergyharvestingsystemofasemisubmersibleplatform
AT haizhiliang numericalinvestigationofatunedheaveplateenergyharvestingsystemofasemisubmersibleplatform
AT jinpingou numericalinvestigationofatunedheaveplateenergyharvestingsystemofasemisubmersibleplatform
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