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Performance of a horizontal axis marine current turbine- A comprehensive evaluation using experimental, numerical, and theoretical approaches

机译:水平轴船用电流涡轮机的性能-使用实验,数值和理论方法的综合评估

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This study provides a comprehensive assessment of a 2 bladed horizontal axis marine current turbine using experiments on two scale models, compared to both theoretical and numerical models and previous experiments in other facilities. The experiments were performed in a towing tank and a circulating water channel on rotors of 500 mm and 800 mm diameter. The effect of model scale was investigated together with facility bias. The impact of facility bias on the performance assessment was found to be induced from blockage and the presence of a shear flow velocity profile in the circulating water channel. A BEM model was modified to consider shear velocity profile in the performance calculations. No significant changes were seen in the BEM model results by inserting the shear flow in the code. In addition, the Q,Blade software was employed as a tool to investigate the effect of Reynolds number. It can provide the performance outcomes for a range in which the results are sensitive to Reynolds number. A RANS CFD model was provided which simulates the turbine in steady flow conditions. The theoretical, numerical and physical models were used to study the effect of scaling. The BEM and CFD model both had good agreement with the experimental results, which provides a strong platform for more detailed study on the HAMCT hydrodynamics. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项研究使用理论和数值模型以及先前在其他设施中进行的实验,对两个比例模型进行了实验,对两叶片水平轴船用水轮机进行了全面评估。实验是在直径为500 mm和800 mm的转子上的牵引罐和循环水通道中进行的。研究了模型规模的影响以及设施偏差。发现设施偏差对性能评估的影响是由循环水通道中的堵塞和剪切流速分布图引起的。修改了BEM模型,以在性能计算中考虑剪切速度分布。通过在代码中插入剪切流,在BEM模型结果中没有看到明显的变化。另外,使用Q,Blade软件作为研究雷诺数影响的工具。它可以为结果对雷诺数敏感的范围提供性能结果。提供了一个RANS CFD模型,该模型可以模拟稳定流量条件下的涡轮机。理论,数值和物理模型用于研究结垢的影响。 BEM和CFD模型均与实验结果吻合良好,为进一步详细研究HAMCT流体力学提供了强大的平台。 (C)2018 Elsevier Ltd.保留所有权利。

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