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Theoretical and Experimental Transverse Vibration Analysis of a Non-Uniform Composite Helical Tidal Turbine Foil

OCEAN ENGINEERING(2024)

Univ Galway | EireComposites Teo | ORPC Ireland

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Abstract
Recently, tidal energy has gained attention as an attractive renewable source of power generation. In this context, tidal turbine foils must operate in harsh conditions and extremely variable dynamic loads. Considering the expensive dynamic tests required for these large structures, developing validated dynamic models could be valuable for failure prediction and design purposes. In this paper, the free and forced vibration behaviour of the cantilevered part of a non-uniform helical tidal turbine foil made from the composite material is investigated theoretically and experimentally. In this regard, governing vibration equations of the foil with related boundary conditions are presented. The free vibration analysis of the foil is performed by solving a boundary-value problem, where a closed-form solution, based on the mode summation method, for the forced vibration of the foil is employed. Finally, the obtained numerical results (natural frequency and dynamic displacements) are compared with the corresponding results from experiments to validate the vibration equations and the employed solution. Acceptable agreement between numerical and experimental data confirms that the vibration model presented in this study can be employed to predict the dynamic response, parametric study, optimization, and design of the tidal foil without performing costly experiments.
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Key words
Vibration analysis,Tidal turbine foil,Composite material,Non -uniform foil,Helical foil
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要点】:本文通过理论与实验方法,研究了非均匀复合材料的螺旋潮汐涡轮叶片的横向振动特性,为潮汐叶片的动态响应预测、参数研究和设计提供了有效的模型。

方法】:作者提出并解决了边界值问题,通过模态求和法得到了叶片强迫振动的闭式解,并结合边界条件建立了振动方程。

实验】:通过实验测试了叶片的自由和强迫振动行为,使用了特定的复合材料制成的非均匀螺旋潮汐涡轮叶片的悬臂部分,实验结果与数值模拟进行了对比,验证了振动模型的准确性。数据集未在文中明确提及。