Sensitivity Analysis of a Bottom Fixed Offshore Wind Turbine Using the Environmental Contour Method

D. Barreto, A. Moghtadaei, M. Karimirad, A. Ortega
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Abstract

In the field of stochastic dynamics of marine structures, environmental conditions play a vital role. Considering wind and waves as random processes, determining the environmental parameters which correspond to an annual exceedance probability for a certain structural concept is of vital importance for the respective assessment of the loads and their effects. The accuracy in predicting the conditions, especially those corresponding to the sea, is of a great relevance when a probabilistic design is performed in order to ensure the structural integrity of an offshore wind turbine. In particular, models are not always completely perfect and accurate data is not always available. The Environmental Contour Method (ECM), which is based on the IFORM methodology, is one of the most popular methods in the offshore industry when determining the environmental conditions, for a given annual exceedance probability, is required. The ECM allows analysing proper sea states for operational and extreme conditions with lower computational efforts than the most accurate method (Full Long-Term Analysis). In the present study, effects of progressive variations (uncertainties) of the sea states parameters (i.e. significant wave height, spectral peak period) on the dynamic response of a Monopile Wind Turbine (NREL 5MW) are analysed. Two operative conditions are considered: rated wind and cut-out wind speed. In each case, the 50-year environmental contour (EC) is plotted for a site located in the North Sea. Some sea states are selected from the EC (base cases) and then derived cases with percentage variations are generated. All the cases are simulated in FAST (NREL) and the standard deviations of the time series are compared with its respective values of base cases. The results for the dynamic responses at mudline (e.g. overturning moments and shear forces) are presented as the most important parameters governing the design of the monopile. In this analysis, the wave height shows more influence on the response variation percentage than the peak period. This work shows the importance of accurately setting up the input parameters and their impact on the calculation of the dynamic responses.
基于环境轮廓法的海底固定式海上风力机灵敏度分析
在海洋结构的随机动力学研究中,环境条件起着至关重要的作用。考虑到风和浪是随机过程,确定与某种结构概念的年超过概率相对应的环境参数对于各自的荷载及其影响的评估至关重要。为了保证海上风力发电机组的结构完整性,在进行概率设计时,预测条件的准确性,特别是与海洋条件相对应的条件的准确性是非常重要的。特别是,模型并不总是完全完美,准确的数据并不总是可用的。基于IFORM方法的环境等高线法(ECM)是海上工业中最流行的方法之一,用于确定给定的年度超出概率的环境条件。与最精确的方法(全面长期分析)相比,ECM可以用更少的计算量来分析操作和极端条件下的适当海况。在本研究中,分析了海况参数(即有效波高、谱峰周期)的逐渐变化(不确定性)对单桩风力发电机(NREL 5MW)动力响应的影响。考虑两种工况:额定风速和切断风速。在每种情况下,都为北海的一个地点绘制了50年的环境等高线(EC)。从EC(基本情况)中选择一些海况,然后生成具有百分比变化的派生情况。在FAST (NREL)中对所有情况进行了模拟,并将时间序列的标准差与其各自的基本情况值进行了比较。在泥线处的动力响应结果(如倾覆力矩和剪力)被认为是控制单桩设计的最重要参数。在本分析中,波高对响应变化百分比的影响大于峰值周期。这项工作显示了准确设置输入参数的重要性及其对动态响应计算的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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