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Resonance Investigation and its Effects on Weight Optimization of Tubular Steel Wind Turbine Towers

机译:谐振调查及其对管状钢风汽轮机塔重量优化的影响

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The dynamic behavior of tubular steel wind turbine towers is investigated, with emphasis on discussing how the effort to avoid resonance of the soil-foundation-tower system, by keeping its eigenfrequencies outside specific ranges around the rotor (1P) and blade-passing (3P) frequencies, influences tower optimization. For modern, tall towers avoidance of resonance becomes critical compared to other structural design checks, such as buckling and fatigue. Considering that the rotor and blades have predefined mass and rotation frequencies, the tower's fundamental frequencies should be controlled considering the cross-sectional properties of the tower as well as the flexibility of its foundation. The objective of the optimization problem formulated in this work is to reduce tower weight, while satisfying the resonance and buckling criteria and considering restrictions pertaining to fabrication, transportation and erection. The vibration modes and frequencies of a 120m tall tower are determined via detailed as well as simplified finite element models, with the latter proving to be sufficiently accurate. The dependence of the tower's vibration frequencies on the soil and foundation is also investigated. The numerical models are introduced into the high performance optimization computing platform (HP-OCP), to obtain an optimum distribution of tower shell thickness over the height.
机译:对管状钢风力涡轮机塔的动态行为进行了调查,重点是讨论如何避免避免土壤 - 基础塔系统的共振,通过将其特定范围的特定范围(1p)和叶片通过(3p )频率,影响塔优化。对于现代的,与其他结构设计检查相比,高大的塔避免谐振变得致力于,如屈曲和疲劳。考虑到转子和叶片具有预定义的质量和旋转频率,应考虑塔的横截面特性以及其基础的柔韧性来控制塔的基本频率。在这项工作中配制的优化问题的目的是降低塔权重,同时满足共振和屈曲标准,并考虑到与制造,运输和勃起有关的限制。 120米高塔的振动模式和频率通过详细的以及简化的有限元模型确定,后者证明是足够的准确性的。还研究了塔振动频率对土壤和基础的依赖。数值模型被引入高性能优化计算平台(HP-OCP)中,以获得高度的塔壳厚度的最佳分布。

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