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Design and performance enhancement of a bi-directional counter-rotating type horizontal axis tidal turbine

机译:双向反向旋转式水平轴潮汐涡轮机的设计和性能增强

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A bi-directional counter-rotating type horizontal axis tidal turbine (HATT) consisting of fully symmetrical hydrofoils was designed to convert tidal energy in terms of ebb and flood tides. In CFD simulations, the counter rotating rotors perform much more excellent power coefficient than single rotor. However, as the limit of application of fully symmetrical hydrofoils with low lift-drag ratio, the performance of bi-directional HATTs is much lower than traditional HATTs. In this work, multi-objective optimization method was employed to obtain a series of fully symmetrical hydrofoils applied to different sections from blade root to tip. The numerical results show that the application of optimized hydrofoils brings about considerable increment in power efficient (a relative increase 8% at BEP) and flow separation around hydrofoil.
机译:设计了由完全对称的水翼组成的双向反向旋转式水平轴潮汐涡轮机(HATT),用于根据潮汐和潮汐转换潮汐能。在CFD仿真中,反向旋转的转子比单转子具有更高的功率系数。然而,由于具有低升阻比的全对称水翼的应用限制,双向HATT的性能远低于传统HATT。在这项工作中,采用多目标优化方法来获得一系列完全对称的水翼,这些翼型适用于从叶片根部到叶尖的不同截面。数值结果表明,优化水翼的应用带来了功率效率的显着提高(BEP相对增加8%)和水翼周围的流动分离。

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