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Analytical and experimental fatigue analysis of wind turbine tower connection bolts

机译:风力涡轮机塔架连接螺栓的分析与实验疲劳分析

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摘要

This paper presents a method of estimation of fatigue demands on connection bolts of tubular steel wind turbine towers. The presented method relies on numerical simulation of aerodynamic loads and structural behavior of bolted connections modeled using finite element method. Variability of wind parameters is represented by a set of values derived from their probability densities, which are adjusted based on field measurements. Numerically generated stress time-series show agreement with the measurements from strain gauges inside bolts, in terms of power spectra and the resulting damage. Position of each bolt has a determining effect on its fatigue damage. The proposed framework for fatigue life estimation represents the complexities in loading and local behavior of the structure. On the other hand, the developed procedure is computationally efficient since it requires a limited number of simulations for statistically representing the wind variations.
机译:本文提出了一种估计管状钢风力涡轮机塔的连接螺栓的疲劳需求的方法。本方法依赖于使用有限元法建模的螺栓连接的空气动力载荷和结构行为的数值模拟。风参数的可变性由来自其概率密度的一组值表示,这是基于场测量来调整的。在功率光谱方面,数值产生的应力时间序列显示与螺栓内部螺栓内部的测量结果的协议。每个螺栓的位置对其疲劳损坏具有决定性影响。所提出的疲劳寿命估计框架代表了结构的装载和局部行为的复杂性。另一方面,显影过程是计算上有效的,因为它需要有限数量的模拟,用于统计上表示风变化。

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