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High-throughput computation and the applicability of Monte Carlo integration in fatigue load estimation of floating offshore wind turbines

机译:高通量计算及其在蒙特卡洛积分在海上浮式风力发电机疲劳载荷估计中的适用性

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Long-term fatigue loads for floating offshore wind turbines are hard to estimate because they require the evaluation of the integral of a highly nonlinear function over a wide variety of wind and wave conditions. Current design standards involve scanning over a uniform rectangular grid of metocean inputs (e.g., wind speed and direction and wave height and period), which becomes intractable in high dimensions as the number of required evaluations grows exponentially with dimension. Monte Carlo integration offers a potentially efficient alternative because it has theoretical convergence proportional to the inverse of the square root of the number of samples, which is independent of dimension. In this paper, we first report on the integration of the aeroelastic code FAST into NREL's systems engineering tool, WISDEM, and the development of a high-throughput pipeline capable of sampling from arbitrary distributions, running FAST on a large scale, and postprocessing the results into estimates of fatigue loads. Second, we use this tool to run a variety of studies aimed at comparing grid-based and Monte Carlo-based approaches with calculating long-term fatigue loads. We observe that for more than a few dimensions, the Monte Carlo approach can represent a large improvement in computational efficiency, but that as nonlinearity increases, the effectiveness of Monte Carlo is correspondingly reduced. The present work sets the stage for future research focusing on using advanced statistical methods for analysis of wind turbine fatigue as well as extreme loads. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:浮动海上风力涡轮机的长期疲劳载荷很难估算,因为它们需要评估各种风浪条件下高度非线性函数的积分。当前的设计标准涉及扫描均匀的矩形海洋输入矩形网格(例如,风速和风向以及波浪高度和周期),随着所需评估次数随尺寸成指数增长,在高维上变得棘手。蒙特卡洛积分提供了一种潜在的有效替代方案,因为它具有与样本数量的平方根的倒数成比例的理论收敛性,而样本数的平方根与维数无关。在本文中,我们首先报告了将气动弹性代码FAST集成到NREL的系统工程工具WISDEM中,以及开发一种能够从任意分布中进行采样,大规模运行FAST并对结果进行后处理的高通量管道的开发。估计疲劳负荷。其次,我们使用此工具进行各种研究,旨在将基于网格的方法和基于蒙特卡洛的方法与计算长期疲劳载荷进行比较。我们观察到,对于多个维度,蒙特卡洛方法可以代表计算效率的大幅提高,但是随着非线性的增加,蒙特卡洛的有效性相应降低。当前的工作为将来的研究奠定了基础,该研究的重点是使用先进的统计方法来分析风力涡轮机的疲劳以及极限载荷。版权所有(c)2015 John Wiley&Sons,Ltd.

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