翼型
叶片单元动量理论
叶片单元理论
刀(考古)
Lift(数据挖掘)
海洋工程
工程类
唤醒
结构工程
升力系数
空气动力学
涡轮机
航空航天工程
机械工程
涡轮叶片
机械
物理
计算机科学
雷诺数
数据挖掘
湍流
作者
Kaisheng Zhang,Jing Li,Zhen Gao,Baocheng Zhang
摘要
Horizontal axis tidal current hydroturbines are widely used to extract tidal current energy. The blade is an important component of the hydroturbine, and its performance primarily depends on the airfoil pattern of the blade. Based on previous studies and elements of bionic technology, this study proposes a design method using bionic technology in the blade design to obtain a composite blade with NACA and shark airfoils and good hydrodynamic performance. An airfoil with a high lift-drag-ratio or a high torque coefficient is selected from multiple airfoil designs, and the optimal combination airfoil blade model is generated according to the blade element momentum theory and Wilson blade theory. The pressure and velocity fields of different combinations of the airfoil blades are investigated using numerical simulation and underwater experiments. The results demonstrate that the combined blade offers optimal performance when the pitch angle is 60°. Its torque coefficient and turbine speed are higher than those of conventional blades, and its energy coefficient is increased by approximately 14.5%.
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