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Flow and performance characteristics of a direct drive turbine for wave power generation

机译:用于波浪发电的直驱式涡轮机的流量和性能特征

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摘要

A cross-flow turbine, also known as Banki turbine, is a hydraulic turbine that may be classified as an impulse turbine. It has gained interest in small and low head establishments because of its simple structure, cost effectiveness and low maintenance. The present work expands on this idea and aims to implement a cross-flow turbine as Direct Drive Turbine (DDT) for wave power generation. Waves have enormous amount of energy which is environment-friendly, renewable and can be exploited to satisfy the energy needs. A Numerical Wave-tank (NWT) was used to simulate the waves using the commercial CFD code ANSYS-CFX. The base model was firstly studied at five different wave periods without the turbine. The highest water power (PWP) of 32.01 W was recorded at T=3 s. A cross-flow turbine was then incorporated and the simulation was validated at T=2 s. In addition to this, the performance of the turbine at T=2.5 s and T=3 s at different turbine speeds was also studied. The highest turbine output power of 14 W was recorded at a turbine speed of 30 rpm at the wave period of 3 s, giving a turbine efficiency of 55%.
机译:横流式涡轮机,也称为班基式涡轮机,是一种可以归类为脉冲式涡轮机的液压涡轮机。由于其结构简单,成本效益高且维护成本低,它已经引起了小型和低头企业的兴趣。当前的工作扩展了这一想法,旨在实现一种横流式涡轮机作为直接驱动式涡轮机(DDT)用于波浪发电。波浪具有巨大的能量,既环保又可再生,可以用来满足能量需求。使用商业CFD代码ANSYS-CFX,使用数值波箱(NWT)来模拟波。在没有涡轮机的情况下,首先在五个不同的波浪周期研究了基本模型。在T = 3 s时记录到最高水功率(PWP)为32.01W。然后采用横流式涡轮机,并在T = 2 s时对仿真进行了验证。除此之外,还研究了在不同的涡轮转速下,T = 2.5 s和T = 3 s时涡轮的性能。在3 s的波动周期内,以30 rpm的涡轮转速记录了14 W的最高涡轮输出功率,涡轮效率为55%。

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