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不同偏流角下潮流能水轮机水动力特性与熵产率分析
引用本文:虎周平,王文全. 不同偏流角下潮流能水轮机水动力特性与熵产率分析[J]. 水电能源科学, 2022, 40(2): 177-181
作者姓名:虎周平  王文全
作者单位:昆明理工大学建筑工程学院,云南昆明650500;四川大学水力学与山区河流开发保护国家重点实验室,四川成都610065;四川大学水利水电学院,四川成都610065
基金项目:国家自然科学基金项目(51479085)。
摘    要:采用CFD与熵产理论相结合的手段,分析了不同偏流角对潮流能水轮机水动力特性的影响,发现偏流使无导管水轮机和导管水轮机输出功率及轴向推力均不同程度地降低,偏流20°时,两者功率最大下降率分别达到30.6%、16.8%,转子轴向推力最大下降率分别达到30.2%、19.8%.由于导管的聚流效应,不同偏流角下导管水轮机相比无导...

关 键 词:潮流能水轮机  偏流  水动力性能  熵产率分析

Analysis of Hydrodynamic Performance and Entropy Production Rate of Tidal Current Turbine Under Different Deviant Angle
HU Zhou-ping,WANG Wen-quan. Analysis of Hydrodynamic Performance and Entropy Production Rate of Tidal Current Turbine Under Different Deviant Angle[J]. International Journal Hydroelectric Energy, 2022, 40(2): 177-181
Authors:HU Zhou-ping  WANG Wen-quan
Affiliation:(Faculty of Civil Engineering and Mechanics,Kunming University of Science and Technology,Kunming 650500,China;State Key Laboratory of Hydraulics and Mountain River Engineering,Sichuan University,Chengdu 610065,China;College of Water Resource&Hydropower,Sichuan University,Chengdu 610065,China)
Abstract:The hydrodynamic performance of a tidal current turbine with different deviant angles is studied by the combination of CFD and entropy production theory. The results show that the output power and axial thrust of the ducted turbine and the bare turbine are reduced under action of the bias current. When the deviant angle is 20°, the maximum power drop reaches 30.6% and 16.8% respectively, and the maximum decrease of axial thrust is 30.2% and 19.8% respectively. Compared with the bare turbine, the ducted turbine with different yaw angles still maintains higher output power due to the accumulation effect of duct. When the ratio of blade tip is low, the loss of direct entropy production has a great impact on the energy acquisition of the turbine, and the total entropy loss is lower in this range;In the case of high tip speed ratio, the turbulence dissipation loss has a great impact on the energy acquisition of the turbine, and the total entropy production loss increases rapidly with the rising of tip speed ratio, which is contributed to the decrease of output power of the turbine with the rising of tip speed ratio.
Keywords:tidal current turbine  yawing flow  hydrodynamic performance  entropy production analysis
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