Ocean Energy Systems Wave Energy Modelling Task: Modelling, Verification and Validation of Wave Energy Converters

被引:33
|
作者
Wendt, Fabian [1 ]
Nielsen, Kim [2 ,3 ]
Yu, Yi-Hsiang [1 ]
Bingham, Harry [4 ]
Eskilsson, Claes [3 ,5 ]
Kramer, Morten [3 ,6 ]
Babarit, Aurelien [7 ]
Bunnik, Tim [8 ]
Costello, Ronan [9 ]
Crowley, Sarah [10 ]
Gendron, Benjamin [11 ]
Giorgi, Giuseppe [12 ]
Giorgi, Simone [9 ]
Girardin, Samuel [11 ]
Greaves, Deborah [13 ]
Heras, Pilar [3 ,6 ]
Hoffman, Johan [14 ]
Islam, Hafizul [15 ]
Jakobsen, Ken-Robert [16 ]
Janson, Carl-Erik [17 ]
Jansson, Johan [14 ]
Kim, Hyun Yul [18 ]
Kim, Jeong-Seok [19 ]
Kim, Kyong-Hwan [19 ]
Kurniawan, Adi [3 ,31 ]
Leoni, Massimiliano [14 ,20 ]
Mathai, Thomas [1 ]
Nam, Bo-Woo [19 ]
Park, Sewan [19 ]
Rajagopalan, Krishnakumar [21 ]
Ransley, Edward [13 ]
Read, Robert [4 ]
Ringwood, John, V [12 ]
Rodrigues, Jose Miguel [15 ,30 ]
Rosenthal, Benjamin [18 ]
Roy, Andre [22 ]
Ruehl, Kelley [23 ]
Schofield, Paul [24 ]
Sheng, Wanan [25 ,29 ]
Shiri, Abolfazl [26 ]
Thomas, Sarah [6 ]
Touzon, Imanol [27 ]
Yasutaka, Imai [28 ]
机构
[1] NREL, 15013 Denver West Pkwy, Golden, CO 80401 USA
[2] Ramboll Grp AS, Hannemanns Alle 53, DK-2300 Copenhagen S, Denmark
[3] Aalborg Univ, Dept Civil Engn, Thomas Mann Vej 23, DK-9220 Aalborg O, Denmark
[4] Tech Univ Denmark DTU, Dept Mech Engn, Nils Koppels Alle,Bldg 404, DK-2800 Lyngby, Denmark
[5] Res Inst Sweden RISE, S-41133 Gothenburg, Sweden
[6] FPP AS, DK-2625 Vallensbaek, Denmark
[7] Cent Nantes ECN CNRS, F-44321 Nantes, France
[8] Maritime Res Inst Netherlands MARIN, Haagsteeg 2, NL-6708 PM Wageningen, Netherlands
[9] Unit 6a Penstraze Business Ctr, Wave Venture, Truro TR4 8PN, England
[10] WavEC Offshore Renewables, R Dom Jeronimo Osorio 11, P-1400119 Lisbon, Portugal
[11] INNOSEA, 1 Rue Noe,CS 12102, F-44321 Nantes, France
[12] Natl Univ, COER, Maynooth W23F 2H6, Kildare, Ireland
[13] UoP, Sch Engn Comp & Math, Plymouth PL4 8AA, Devon, England
[14] Royal Inst Technol KTH, S-11428 Stockholm, Sweden
[15] IST, P-1049001 Lisbon, Portugal
[16] EDR & Medeso AB, Leif Tronstads Plass 4, NO-1337 Sandvika, Norway
[17] Chalmers Univ Technol CTH, Dept Mech & Maritime Sci, S-40482 Gothenburg, Sweden
[18] Navatek, 841 Bishop St, Honolulu, HI 96813 USA
[19] Korea Res Inst Ships & Ocean Engn KRISO, 1312-32 Yuseong Daero, Daejeon 34103, South Korea
[20] BCAM, Mazarredo 14, E-48009 Bilbao, Spain
[21] Univ Hawaii, HNEI, Honolulu, HI 96822 USA
[22] DSA, 201-754 Broughton St, Victoria, BC V8W 1E1, Canada
[23] Sandia Natl Labs, Albuquerque, NM 87123 USA
[24] ANSYS, Houston, TX 77094 USA
[25] UCC, Coll Rd, Cork T12 K8AF, Ireland
[26] SSPA Sweden AB, Res, Box 24001, S-40022 Gothenburg, Sweden
[27] Tecnalia Res & Innovat, Mikeletegi Pasealekua 1-3, Donostia San Sebastian 20009, Spain
[28] Saga Univ, Inst Ocean Energy, Honjo 1, Saga 8408502, Japan
[29] SW Mare Marine Technol, East Ave, Frankfield T12 A6FA, Cork, Ireland
[30] SINTEF Ocean, Marintekn Senter, N-7052 Trondheim, Norway
[31] UWA, Wave Energy Res Ctr, 35 Stirling Terrace, Albany 6330, Australia
基金
英国工程与自然科学研究理事会; 爱尔兰科学基金会;
关键词
wave energy; numerical modelling; simulation; boundary element method; computational fluid dynamics; SIMULATION; FIDELITY;
D O I
10.3390/jmse7110379
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
The International Energy Agency Technology Collaboration Programme for Ocean Energy Systems (OES) initiated the OES Wave Energy Conversion Modelling Task, which focused on the verification and validation of numerical models for simulating wave energy converters (WECs). The long-term goal is to assess the accuracy of and establish confidence in the use of numerical models used in design as well as power performance assessment of WECs. To establish this confidence, the authors used different existing computational modelling tools to simulate given tasks to identify uncertainties related to simulation methodologies: (i) linear potential flow methods; (ii) weakly nonlinear Froude-Krylov methods; and (iii) fully nonlinear methods (fully nonlinear potential flow and Navier-Stokes models). This article summarizes the code-to-code task and code-to-experiment task that have been performed so far in this project, with a focus on investigating the impact of different levels of nonlinearities in the numerical models. Two different WECs were studied and simulated. The first was a heaving semi-submerged sphere, where free-decay tests and both regular and irregular wave cases were investigated in a code-to-code comparison. The second case was a heaving float corresponding to a physical model tested in a wave tank. We considered radiation, diffraction, and regular wave cases and compared quantities, such as the WEC motion, power output and hydrodynamic loading.
引用
收藏
页数:21
相关论文
共 50 条
  • [21] Modelling of the WITT wave energy converter
    Crowley, S.
    Porter, R.
    Taunton, D. J.
    Wilson, P. A.
    RENEWABLE ENERGY, 2018, 115 : 159 - 174
  • [22] Modelling of a Wave Energy Harnessing Breakwater
    Koutitas, C. G.
    Savvidis, Y. G.
    PROCEEDINGS OF THE EIGHTEENTH (2008) INTERNATIONAL OFFSHORE AND POLAR ENGINEERING CONFERENCE, VOL 1, 2008, : 327 - 330
  • [23] Economic modelling of the potential of wave energy
    Hayward, Jennifer
    Behrens, Sam
    McGarry, Scott
    Osman, Peter
    RENEWABLE ENERGY, 2012, 48 : 238 - 250
  • [24] Joint Modelling of Wave Energy Flux and Wave Direction
    Soukissian, Takvor H.
    Karathanasi, Flora E.
    PROCESSES, 2021, 9 (03) : 1 - 23
  • [25] Optimization and Energy Maximizing Control Systems for Wave Energy Converters
    Giorgi, Giuseppe
    Sirigu, Sergej Antonello
    JOURNAL OF MARINE SCIENCE AND ENGINEERING, 2021, 9 (12)
  • [26] WAVE ENERGY SYSTEMS: AN OVERVIEW OF DIFFERENT WAVE ENERGY CONVERTERS AND RECOMMENDATION FOR FUTURE IMPROVEMENTS
    Chenari, Behrang
    Saadatian, Seyedeh Shiva
    INTED2014: 8TH INTERNATIONAL TECHNOLOGY, EDUCATION AND DEVELOPMENT CONFERENCE, 2014, : 6266 - 6272
  • [27] Flexible multibody dynamics modelling of point-absorber wave energy converters
    Wang, Lin
    Kolios, Athanasios
    Cui, Lin
    Sheng, Qihu
    RENEWABLE ENERGY, 2018, 127 : 790 - 801
  • [28] Modelling Arrays of Wave Energy Converters Connected to Weak Rural Electricity Networks
    Kiprakis, A. E.
    Nambiar, A. J.
    Forehand, D. I. M.
    Wallace, A. R.
    2009 INTERNATIONAL CONFERENCE ON SUSTAINABLE POWER GENERATION AND SUPPLY, VOLS 1-4, 2009, : 1937 - +
  • [29] Numerical modelling of wave energy resources and assessment of wave energy extraction by large scale wave farms
    Venugopal, Vengatesan
    Nemalidinne, Reddy
    Vogler, Arne
    OCEAN & COASTAL MANAGEMENT, 2017, 147 : 37 - 48
  • [30] Wave energy converters and their impact on power systems
    Polinder, Henk
    Scuotto, Mattia
    2005 International Conference on Future Power Systems (FPS), 2005, : 62 - 70