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Application of 2D Numerical Model to Unsteady Performance Evaluation of Vertical-Axis Tidal Current Turbine 被引量:1
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作者 LIU Zhen QU Hengliang +2 位作者 SHI Hongda hu gexing HYUN Beom-Soo 《Journal of Ocean University of China》 SCIE CAS 2016年第6期977-986,共10页
Abstract Tidal current energy is renewable and sustainable, which is a promising altemative energy resource for the future elec- tricity supply. The straight-bladed vertical-axis turbine is regarded as a useful tool t... Abstract Tidal current energy is renewable and sustainable, which is a promising altemative energy resource for the future elec- tricity supply. The straight-bladed vertical-axis turbine is regarded as a useful tool to capture the tidal current energy especially under low-speed conditions. A 2D unsteady numerical model based on Ansys-Fluent 12.0 is established to conduct the numerical simulation, which is validated by the corresponding experimental data. For the unsteady calculations, the SST model, 2x 105 and 0.01 s are se- lected as the proper turbulence model, mesh number, and time step, respectively. Detailed contours of the velocity distributions around the rotor blade foils have been provided for a flow field analysis. The tip speed ratio (TSR) determines the azimuth angle of the appearance of the torque peak, which occurs once for a blade in a single revolution. It is also found that simply increasing the incident flow velocity could not improve the turbine performance accordingly. The peaks of the averaged power and torque coeffi- cients appear at TSRs of 2.1 and 1.8, respectively. Furthermore, several shapes of the duct augmentation are proposed to improve the turbine performance by contracting the flow path gradually from the open mouth of the duct to the rotor. The duct augmentation can significantly enhance the power and torque output. Furthermore, the elliptic shape enables the best performance of the turbine. The numerical results prove the capability of the present 2D model for the unsteady hydrodynamics and an operating performance analy- sis of the vertical tidal stream turbine. 展开更多
关键词 tidal current energy vertical-axis turbine unsteady numerical model duct augmentation average power coefficient tip speed ratio
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江新联围水系联合调度的回顾与优化探索 被引量:2
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作者 何雄 方铭锋 +1 位作者 陈新河 胡戈行 《黑龙江水利科技》 2019年第7期101-104,共4页
江新联围水系是江门市东部最重要的水系,地处珠江三角洲下游,属于典型的沿海地带河口网河区,水系区域河网纵横,洪潮掺杂,历年来内涝频发,且河流生态失衡。为破除行政壁垒,使整个水系的调度形成合力,江门市江新联围管理处于2015年10月组... 江新联围水系是江门市东部最重要的水系,地处珠江三角洲下游,属于典型的沿海地带河口网河区,水系区域河网纵横,洪潮掺杂,历年来内涝频发,且河流生态失衡。为破除行政壁垒,使整个水系的调度形成合力,江门市江新联围管理处于2015年10月组织工作组,开展水系联合调度研究工作。文章回顾自2016年7月江新联围水系实施联合调度以来取得的成效,并针对联合调度工作存在的一些问题进行分析,思考如何优化水系联合调度工作,最大化地发挥联合调度效益,造福人民群众。 展开更多
关键词 联合调度 联围水系 优化 河道建设
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