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Influence of blade deformation and yawed inflow on performance of a horizontal axis tidal stream turbine

机译:叶片变形和偏航流量对水平轴潮流涡轮机性能的影响

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For a better design of tidal stream turbines operated in off-design conditions, analyses considering the effects of blade deformation and yawed inflow conditions are necessary. The flow load causes deformation of the blade, and the deformation affects the turbine performance in return. Also, a yawed inflow influences the performance of the turbine. As a validation study, a computational fluid dynamics (CFD) simulation was carried out to predict the performance of a horizontal axis tidal stream turbine (HATST) with rigid blades. The numerical uncertainty for the turbine performance with blade deformation and a yawed inflow was evaluated using the concept of the grid convergence index (GCI). A fluid-structure interaction (FSI) analysis was carried out to estimate the performance of a turbine with flexible composite blades, with the results then compared to those of an analysis with rigid blades. The influence of yawed inflow conditions on the turbine performance was investigated and found to be important in relation to power predictions in the design stages. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了更好地设计在非设计条件下运行的潮流涡轮机,必须进行考虑叶片变形和偏航流入条件影响的分析。流动载荷导致叶片变形,并且变形影响涡轮的性能。而且,偏航的流入会影响涡轮的性能。作为验证研究,进行了计算流体动力学(CFD)模拟,以预测具有刚性叶片的水平轴潮汐流涡轮机(HATST)的性能。使用网格收敛指数(GCI)的概念评估了具有叶片变形和偏航流入的涡轮机性能的数值不确定性。进行了流固耦合分析(FSI),以评估具有柔性复合叶片的涡轮机的性能,然后将结果与具有刚性叶片的分析结果进行比较。研究了偏航流入条件对涡轮机性能的影响,并发现在设计阶段与功率预测相关重要。 (C)2016 Elsevier Ltd.保留所有权利。

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