Estimation of the energy producibility of an offshore wave energy converter

被引:1
作者
Guercio, Andrea [1 ]
Curto, Domenico [1 ]
机构
[1] Univ Palermo, Dept Engn, Viale Sci,Blg 9, Palermo, Italy
来源
OCEANS 2022 | 2022年
关键词
Wave energy converter; Power take off; Linear generator; Geometry optimization;
D O I
10.1109/OCEANSChennai45887.2022.9775233
中图分类号
U6 [水路运输]; P75 [海洋工程];
学科分类号
0814 ; 081505 ; 0824 ; 082401 ;
摘要
Climate change and environmental degradation are an existential threat to Europe and the world. Each year that passes the atmosphere warms up and the climate changes with possible catastrophic consequences for all living species. It is therefore necessary to implement a decisive change of course in terms of energy and environmental strategies at a global level, gradually abandoning the use of fossil sources in favor of renewable ones. A lot of country participates to European or global energy treaties or pacts to reduce step by step their fossil energy consumption and greenhouse gas. Among all renewable energies, the engineering department of the University of Palermo focuses the exploitation of sea energy. The study reported in this abstract involved the optimization of a WEC (wave energy converter) in term of geometry. The device focused is a point absorber with a PTO (power take off) composed by a linear generator. The software used to model the WEC is "Ansys Aqwa".
引用
收藏
页数:5
相关论文
共 50 条
[21]   A wave energy converter with magnetic gear [J].
Wang, Yung-Lien .
OCEAN ENGINEERING, 2015, 101 :101-108
[22]   Declutching control of a wave energy converter [J].
Babarit, Aurelien ;
Guglielmi, Michel ;
Clement, Alain H. .
OCEAN ENGINEERING, 2009, 36 (12-13) :1015-1024
[23]   Linear Sliding Wave Energy Converter [J].
Chen, H. Ming ;
DelBalzo, Donald R. .
OCEANS 2015 - GENOVA, 2015,
[24]   Wave energy converter configuration in dual wave farms [J].
Bergillos, Rafael J. ;
Rodriguez-Delgado, Cristobal ;
Allen, James ;
Iglesias, Gregorio .
OCEAN ENGINEERING, 2019, 178 :204-214
[25]   Wave tank and bench-top control testing of a wave energy converter [J].
Bacelli, Giorgio ;
Spencer, Steven J. ;
Patterson, David C. ;
Coe, Ryan G. .
APPLIED OCEAN RESEARCH, 2019, 86 :351-366
[26]   Estimation of Incident Wave of AWS-based Wave Energy Converter using Extended Kalman Filter [J].
Kim, Jae Seung ;
Kim, Jung Yoon ;
Park, Jin Bae .
2013 13TH INTERNATIONAL CONFERENCE ON CONTROL, AUTOMATION AND SYSTEMS (ICCAS 2013), 2013, :1411-1416
[27]   Design and evaluation of a hybrid offshore wave energy converter and floating photovoltaic system for the region of Oran, Algeria [J].
Araria, R. ;
Guemmour, M. B. ;
Negadi, K. ;
Berkani, A. ;
Marignetti, F. ;
Bey, M. .
ELECTRICAL ENGINEERING & ELECTROMECHANICS, 2024, (06) :11-18
[28]   Wave energy converter with multiple degrees of freedom for sustainable repurposing of decommissioned offshore platforms: An experimental study [J].
Zhang, Chongwei ;
Li, Donghai ;
Ding, Zhenyu ;
Liu, Yingyi ;
Cao, Feifei ;
Ning, Dezhi .
APPLIED ENERGY, 2024, 376
[29]   Estimated electricity production for an anti-roll tank deployed offshore for use as a wave energy converter [J].
Tiao, Wen-Chuan .
SHIPS AND OFFSHORE STRUCTURES, 2013, 8 (05) :497-503
[30]   Preliminary Life Cycle Assessment of an innovative wave energy converter [J].
Guercio, Andrea ;
Cuto, Domenico ;
Cusenza, Maria Anna ;
Cirrincione, Maurizio ;
Kumar, Dhirendran Munith ;
Montalbano, Andrea .
OCEANS 2021: SAN DIEGO - PORTO, 2021,