操作、几何设计和入流参数对潮汐水轮机负荷的敏感性分析

T.M. Nevalainen, C.M. Johnstone, A.D. Grant
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引用次数: 21

摘要

本文对一个确定了多种输入参数对输出负荷影响的潮汐流涡轮数值模型进行了灵敏度分析。所使用的统计程序,即莫里斯方法,提供了对参数之间相互作用的深入了解,并显示了它们对涡轮机负载的比较影响。该研究涵盖了操作、几何设计和流入变量域的参数,其中转子半径、电流剪切、叶根节距、表面速度和波高被认为是最具影响力的。叶片节距被认为是对载荷的显著影响。涡轮的工作深度和叶片几何形状也被发现在研究范围内影响有限。在负载传递到涡轮传动系内部部件方面,发现转子面外弯矩或偏心弯矩对轴上的离轴载荷有相当大的贡献。因此,通过对确定的主要输入参数引起的载荷变化进行详细研究,特别关注输入参数与偏心载荷分量的关系。结论是,在特定运行气候下对潮汐流涡轮机进行灵敏度分析可以获得预期负载范围,并且在大多数输入情况下,传递给轴的偏心负载是显著的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A sensitivity analysis on tidal stream turbine loads caused by operational, geometric design and inflow parameters

This paper presents a sensitivity analysis on a numerical tidal stream turbine model where a multitude of input parameters’ effect on the load output were determined. The statistical procedure used, known as the Morris method, provided insight into the interactions between the parameters as well as showing their comparative influence on the turbine loading. The investigation covered parameters from the operational, geometric design and inflow variable domains where the rotor radius, current shear, blade root pitch, surface velocity and wave height were identified as most influential. The blade pitch was regarded as a surprisingly prominent influence on the loads. The turbine’s operating depth and the blade geometry were also found to be of limited influence in the ranges investigated. In terms of load transmission into the internal components of a turbine’s drive train, the rotor out-of-plane bending moment, or eccentric bending moment, was found to be a considerable contribution to the off-axis loads on the shaft. Therefore, special attention was paid to the input parameters’ relationship to the eccentric load component by performing a detailed study on the load variations caused by the identified primary input parameters. It is concluded that performing a sensitivity analysis on a tidal stream turbine in a specific operating climate can yield insight to the expected load range and that the eccentric loading transmitted to the shaft is significant for most input cases.

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