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A large scale model experimental study of a tidal turbine in uniform steady flow

机译:均匀恒流下潮汐水轮机的大型模型试验研究

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摘要

An experimental study measuring the performance and wake characteristics of a 1:10th scale horizontal axis turbine in steady uniform flow conditions is presented in this paper. Large scale towing tests conducted in a lake were devised to model the performance of the tidal turbine and measure the wake produced. As a simplification of the marine environment, towing the turbine in a lake provides approximately steady, uniform inflow conditions. A 16m long x 6m wide catamaran was constructed for the test programme. This doubled as a towing rig and flow measurement platform, providing a fixed frame of reference for measurements in the wake of a horizontal axis tidal turbine. Velocity mapping was conducted using Acoustic Doppler Velocimeters. The results indicate varying the inflow speed yielded little difference in the efficiency of the turbine or the wake velocity deficit characteristics provided the same tip speed ratio is used. Increasing the inflow velocity from 0.9 m/s to 1.2 m/s influenced the turbulent wake characteristics more markedly. The results also demonstrate that the flow field in the wake of a horizontal axis tidal turbine is strongly affected by the turbine support structure
机译:本文提出了在稳态均匀流条件下测量比例为1:10的水平轴涡轮机性能和尾流特性的实验研究。设计了在湖中进行的大型拖曳试验,以模拟潮汐涡轮机的性能并测量所产生的尾流。为简化海洋环境,在湖中拖曳涡轮机可提供大致稳定,均匀的流入条件。为测试程序建造了16m长x 6m宽的双体船。它兼作牵引装置和流量测量平台,为水平轴潮汐涡轮机之后的测量提供了固定的参考系。使用声学多普勒测速仪进行测速。结果表明,如果使用相同的叶尖速比,则改变流入速度不会对涡轮机效率或尾流速度不足特性产生很小的影响。流入速度从0.9 m / s增加到1.2 m / s对湍流尾流特性的影响更为明显。结果还表明,水平轴潮汐涡轮机后的流场受涡轮机支撑结构的强烈影响

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