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柔性叶片水轮机力学性能测算方法研究 被引量:5

Research on Prediction Method for Hydrodynamic Characteristics of Tidal Turbine with Flexible Vanes
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摘要 针对一种新型潮流能发电获能装置——柔性叶片水轮机,采用风浪流水槽模型试验和Fluent数值模拟两种方法测算水力学性能参数,分析了两者测算结果的差异,并通过数值模拟法测算了柔性叶片水轮机力学特性,方法简便,对柔性叶片水轮机的开发利用具有指导意义。 Aimed at tidal turbine with flexible vanes, which is a new type of electromechanical energy conversion device that captures kinetic energy from tidal stream and turns it into electrical energy, two methods computing the hydraulics parameteres, model test and numerical simulation with Fluent, are designed. Through a comparison of the results, a new method to predict the hydraulics parameteres of tidal turbine with flexible vanes by numerical simulation is established, this method will play an important role in the utilization of tidal turbine with flexible vanes.
出处 《水电能源科学》 2008年第2期149-152,共4页 Water Resources and Power
基金 国家高技术研究发展计划基金资助项目(863)(2006AA05Z429)
关键词 潮流能 柔性叶片水轮机 水力学性能 模型试验 数值模拟 tidal stream energy tidal turbine with flexible vanes hydrodynamic characteristics model test numerical simulation
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参考文献9

  • 1Edinburgh Designs Ltd. Variable Pitch Foil Vertical Axis Tidal Turbine[R]. T/06/00234/00/REP,2006.
  • 2Black, Veatch. Tidal Stream Energy Resource and Technology Summary Report[R]. Middlesex, UK, 2005.
  • 3Jeremy Thake. Development, Installation And Testing of A Large-Scale Tidal Current Turbine[R]. IT Power,T/106/00210/00/REP,2005.
  • 4Bhaj A S, Molland A F,Chaplin J R. Power And Thrust Measurements of Marine Current Turbines Under Various Hydrodynamic Flow Conditions In A Cavitation Tunnel And A Towing Tank[J]. Renewable Energy, 2007,32 (3) : 407-426
  • 5Sergio M, Camporeale, Vinicio Magi. Streamtube Model for Analysis of Vertical Axis Variable Pitch Turbine for Marine Currents Energy Conversation[J]. Energy Conversation & Management, 2000, 41 (16) : 1 811-1 827
  • 6Alessandro Schonborn, Matthew Chantzidakis. Development of a Hydraulic Control Mechanism for Cyclic Pitch Marine Current Turbines[J]. Renewable Energy, 2007,32 (4) : 662-679
  • 7R. Kamakoti, Wei Shyy. Fluid-structure Interaction for Aeroelastic Applications [J]. Progress in Aerospace Science, 2004,40: 535-558
  • 8黄胜,张维新,李凤来.蹼板式水流发电装置实验研究[J].哈尔滨工程大学学报,2005,26(1):13-18. 被引量:3
  • 9张亮,汪鲁兵,李凤来,张桂湘.竖轴变攻角潮流发电水轮机性能预报流管模型研究[J].哈尔滨工程大学学报,2004,25(3):261-266. 被引量:14

二级参考文献18

  • 1黄胜.特种推进器及推进节能技术[M].哈尔滨:哈尔滨工程大学出版社,1998..
  • 2许维德.流体力学2版[M].北京:国防工业出版社,1988..
  • 3朱典明.摆线推进器的理论计算方法.哈尔滨船舶工程学院学报,1983,4(3):10-19.
  • 4张洪雨 黄胜.摆线推进器水动力性能研究[R].北京:中国船舶科技报告,1996..
  • 5张维新.[D].哈尔滨:哈尔滨工程大学,2000.
  • 6COIRO D P, NICOLOSI F. Numerical and experimental analysis of cyclogyro turbine[J]. Dipartimento di Aeronautica, 1992(21): 6-8.
  • 7ZHANG L, LI F L, WANG L B. Method for predicting tidal-stream turbine performance and blade motions[A].Int workshop on maritime safety, efficiency and low environmental Impact[C]. Harbin, China, 2003.
  • 8CAMPOREALE S M, MAGI V. Streamtube model for analysis of vertical axis variable pitch turbine for marine currents energy conversion[J]. Energy Conversion & Management, 2000,41:1 811-1 827.
  • 9COIRO D P, NICOLOSI F. Numerical and experimental analysis of Kobold turbine[A].Sinergy Symp on Vertical Axis Wind Turbine[C]. Hangzhou, China,1998.
  • 10SALTER S H. Proposal for a large vertical-axis tidal-stream generator with ring-cam hydraulics[A]. MAREC[C].Glasgow, 2001.

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