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2024 01 v.46 16-27
Current Status and Trends of Research on Ocean Tidal Energy Generation Technology
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DOI: 10.13788/j.cnki.cbgc.2024.01.Z1
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References

[1]EI.The 72nd Statistical Review of World Energy[R].London:Energy Institute,2023.

[2]IEA.Emissions from Oil and Gas Operations in Net Zero Transitions[R].Paris:International Energy Agency,2023.

[3]IPCC.Renewable Energy Sources and Climate Change Mitigation[R].Geneva:Intergovernmental Panel on Climate Change,2011.

[4]IRENA.Ocean Energy Technology Readiness,Patents,Deployment Status and Outlook[R].Abu Dhabi:International Renewable Energy Agency,2014.

[5]IRENA.Tidal Energy Technology Brief[R].Abu Dhabi:International Renewable Energy Agency,2014.

[6]张继生,汪国辉,林祥峰.潮流能开发利用现状与关键科技问题研究综述[J].河海大学学报(自然科学版),2021,49(3):220-232.ZHANG J S,WANG G H,LIN X F.A Review of Recent Development and Key Technology Problems in Utilization of Tidal Stream Energy[J].Journal of Hohai University (Natural Sciences),2021,49(3):220-232.(in Chinese)

[7]LI G,ZHU W D.Tidal Current Energy Harvesting Technologies:A Review of Current Status and Life Cycle Assessment[J].Renewable and Sustainable Energy Reviews,2023,179:113269.

[8]ZHOU Z B,BENBOUZID M,CHARPENTIER J F,et al.Developments in Large Marine Current Turbine Technologies-A Review[J].Renewable and Sustainable Energy Reviews,2017,71:852-858.

[9]SAE.MEYGEN[EB/OL].[2023-10-19].https://saerenewables.com/tidal-stream/meygen/.

[10]Andritz Hydro Hammerfest.Hydro News 30-Mey Gen,Scotland[EB/OL].[2023-10-19].https://www.andritz.com/hydro-en/hydronews/hy-hydro-news-30/hy-news-30-14-meygen-scotland-hydro.

[11]Orbital Marine Power.The Most Powerful Tidal Turbine in the World[EB/OL].[2023-10-19].https://www.orbitalmarine.com/o2/.

[12]OES.Tidal Current Energy Developments Highlights-2023[R].2023.

[13]Nova Innovation.Powering A Better Future[EB/OL].[2023-10-19].https://novainnovation.com/.

[14]Sabella.SABELLA's Tidal Turbines:Tidal Stream Power to Trigger the Energy Transtion[EB/OL].[2023-10-19].https://www.sabella.bzh/en/home/.

[15]Paimpol-Bréhat.Tested Technologies[EB/OL].[2023-10-19].https://testsites.bretagneoceanpower.fr/en/.

[16]Naval Group.Naval Energies Stops its Investment in Tidal-Turbine Energy and Concentrates on Floating Wind Turbines and Ocean Thermal Energy Conversion[EB/OL].[2023-10-19].https://www.naval-group.com/en/naval-energies-stopsits-investment-tidal-turbine-energy-and-concentrates-floating-wind-turbines.

[17]SME.Sustainable Marine Energy Ltd[EB/OL].[2023-10-19].https://www.facebook.com/sustainablemarine/.

[18]周宏宾.水平轴海流能机组叶片优化设计[D].杭州:浙江大学,2018.ZHOU H B.The Optimization of Blade Design for Horizontal Axis Marine Current Turbine[D].Hangzhou:Zhejiang University,2018.

[19]俞浙前,富雨晴.我市清洁能源开发利用前景如何?[N].舟山日报,2023-08-17(10).YU Z Q,FU Y Q.What are the Prospects for the Development and Utilization of Clean Energy in Our City?[N].Zhoushan Daily,2023-08-17(10).

[20]Water Power and Dam Constructure.Northern Exposure-Testing Tidal Turbines[EB/OL].[2023-10-19].https://www.waterpowermagazine.com/features/featurenorthern-exposure-testing-tidal-turbines/.

[21]ADAG.Aircraft Design and Aero Flight Dynamics Group[EB/OL].[2023-10-19].http://www.adag.unina.it/english/index.html.

[22]Hydro Quest.Powering the World with Clean,Competitive,Predictable and Reliable Energy[EB/OL].[2023-10-19].https://www.hydroquest.fr/en/tiger-en/.

[23]ORPC.Sustainable Energy Solutions from Free-flowing Rivers&Tides[EB/OL].[2023-10-19].https://orpc.com.

[24]盛其虎,罗庆杰,张亮.40 k W潮流电站载体设计[C]//中国可再生能源学会海洋能专业委员会成立大会暨第一届学术讨论会.2008.SHENG Q H,LUO Q J,ZHANG L.Design on the Carrier of 40kw Tidal Current Power Station[C]//The First Marine Energy Symposium Proceedings of China Renewable Energy Society Professional Committee,2008.

[25]张亮,李新仲,耿敬,等.潮流能研究现状2013[J].新能源进展,2013,1(1):53-68.ZHANG L,LI X Z,GENG J,et al.Tidal Current Energy Update 2013[J].Advances in New and Renewable Energy,2013,1(1):53-68.(in Chinese)

[26]唐晓伟.协同创新助力世界最大发电容量立轴潮流能电站运行[N].工学周报,2014-04-24(5).TANG X W.Collaborative Innovation Supports the Operation of the World's Largest Vertical Axis Tidal Power Plant[N].Gong Xue Zhou Bao,2014-04-24(5).

[27]王世明,李淼淼,李泽宇,等.国际潮流能利用技术发展综述[J].船舶工程,2020,42(增刊1):23-28.WANG S M,LI M M,LI Z Y,et al.Development Overview of International Tidal Energy Utilization Technology[J].Ship Engineering,2020,42(Supplement 1):23-28.

[28]刘伟民,刘蕾,陈凤云,等.中国海洋可再生能源技术进展[J].科技导报,2020,38(14):27-39.LIU W M,LIU L,CHEN F Y,et al.Technical Progress of Marine Renewable Energy in China[J].Science&Technology Review,2020,38(14):27-39.(in Chinese)

[29]EB.Stingray Tidal Stream Energy Device-Phase 3[R].2005.

[30]MINESTO.Renewable Energy from the Ocean[EB/OL].[2023-10-19].https://minesto.com/.

[31]COIRO D P,TROISE G,SCHERILLO F,et al.Development,Deployment and Experimental Test on the Novel Tethered System GEM for Tidal Current Energy Exploitation[J].Renewable Energy,2017,114:323-336.

[32]COIRO D P,TROISE G,BIZZARRINI N,et al.Design of GEMSTAR Tidal Current Fixed Pitch Rotor Controlled Through a Permanent Magnet Generator (PMG) De-Fluxing Technique[J].Iet Renew Power Gen,2020,14(15):2897-2907.

[33]Sea Qurent.Sea Qurent-Release Tidal Energy[EB/OL].[2023-10-19].https://seaqurrent.com/.

[34]孙科,李岩,王凯,等.串列竖轴水轮机尾流场影响CFD模拟分析[J].哈尔滨工业大学学报,2018,50(5):185-191.SUN K,LI Y,WANG K,et al.CFD Simulation Analysis on the Wake Effect of Tandem Vertical Axis Tidal Turbines[J].Journal of Harbin Institute of Technology,2018,50(5):185-191.(in Chinese)

[35]SUN K,JI R W,ZHANG J H,et al.Investigations on the Hydrodynamic Interference of the Multi-Rotor Vertical Axis Tidal Current Turbine[J].Renewable Energy,2021,169:752-764.

[36]YU D,WANG K Y,LIU H X,et al.Numerical Simulation of Energy Capture Efficiency of a Vertical Axis Turbine Under Complex Sea Conditions[J].Marine Technology Society Journal,2021,55(1):17-28.

[37]饶翔,路宽,伊扬.不同海况对潮流能水轮机性能的影响分析[J].哈尔滨工程大学学报,2022,43(4):465-471.RAO X,LU K,YI Y.Analysis on the Performance of Current Turbine under Different Sea Conditions[J].Journal of Harbin Engineering University,2022,43(4):465-471.(in Chinese)

[38]STRICKLAND J H,WEBSTER B T,NGUYEN T.A Vortex Model of the Darrieus Turbine:An Analytical and Experimental Study[J].Journal of Fluids Engineering,1979,101(4):500-505.

[39]WEISSINGER J.The Lift Distribution of Swept-Back Wings[J].Technical Report Archive and Image Library,1947,1120:1-50

[40]WANG L B,ZHANG L,ZENG N D.A Potential Flow 2-D Vortex Panel Model:Applications to Vertical Axis Straight Blade Tidal Turbine[J].Energy Conversion and Management,2007,48(2):454-461.

[41]STRICKLAND J H.The Darrieus Turbine:A Performance Prediction Model Using Multiple Streamtubes[R].New Mexico:Sandia National Laboratories,1975.

[42]HANSEN M.Aerodynamics of Wind Turbines[M].London:Routledge,2015.

[43]姜劲,张亮.基于遗传算法的竖轴变攻角潮流能水轮机性能优化研究[J].哈尔滨工程大学学报,2010,31(1):54-58.JIANG J,ZHANG L.Genetic Algorithm Based Optimization of a Vertical Variable Pitch Turbine for Tidal Current Energy Conversion[J].Journal of Harbin Engineering University,2010,31(1):54-58.(in Chinese)

[44]GARRETT C,CUMMINS P.The Power Potential of Tidal Currents in Channels[J].Proceedings of The Royal Society A-mathematical Physical And Engineering Sciences,2005,461(2060):2563-2572.

[45]VENNELL R,FUNKE S W,DRAPER S,et al.Designing Large Arrays of Tidal Turbines:a Synthesis and Review[J].Renewable&Sustainable Energy Reviews,2015,41:454-472.

[46]JEGO L,GUILLOU S S.Study of a Bi-Vertical Axis Turbines Farm Using the Actuator Cylinder Method[J].Energies,2021,14(16):1-23

[47]HARRISON M E,BATTEN W M J,MYERS L E,et al.Comparison between CFD Simulations and Experiments for Predicting the Far Wake of Horizontal Axis Tidal Turbines[J].Iet Renew Power Gen,2010,4(6):613-627.

[48]MALKI R,WILLIAMS A J,CROFT T N,et al.A Coupled Blade Element Momentum-Computational Fluid Dynamics Model for Evaluating Tidal Stream Turbine Performance[J].Appl Math Model,2013,37(5):3006-3020.

[49]刘俊东.基于浮式防波堤的水轮机水动力性能研究[D].哈尔滨:哈尔滨工程大学,2021.LIU J D.Research on Hydrodynamic Performance of Turbine Based on Floating Breakwater[D].Harbin:Harbin Engineering University,2021.

[50]Wikipedia.Severn Barrage[EB/OL].[2023-10-19].https://en.wikipedia.org/wiki/Severn_Barrage.

[51]NPRA.Ferjefri E39 Subproject Energy[R].2012.

Basic Information:

DOI:10.13788/j.cnki.cbgc.2024.01.Z1

China Classification Code:TM612;P743

Citation Information:

[1]孙科,陈天宇.海洋潮流能发电技术研究现状与趋势[J].船舶工程,2024,46(01):16-27.DOI:10.13788/j.cnki.cbgc.2024.01.Z1.

Fund Information:

国家自然科学基金(52171255)

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