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Investigation of stiffening scheme effectiveness towards buckling stability enhancement in tubular steel wind turbine towers

机译:钢管风力发电塔的加劲方案对屈曲稳定性增强的研究。

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Current climate conditions along with advances in technology make further design and verification methods for structural strength and reliability of wind turbine towers imperative. Along with the growing interest for "green" energy, the wind energy sector has been developed tremendously the past decades. To this end, the improvement of wind turbine towers in terms of structural detailing and performance result in more efficient, durable and robust structures that facilitate their wider application, thus leading to energy harvesting increase. The wind tower industry is set to expand to greater heights than before and tapered steel towers with a circular cross-section are widely used as more capable of carrying heavier loads. The present study focuses on the improvement of the structural response of steel wind turbine towers, by means of internal stiffening. A thorough investigation of the contribution of stiffening rings to the overall structural behavior of the tower is being carried out. These stiffening rings are placed along the tower height to reduce local buckling phenomena, thus increasing the buckling strength of steel wind energy towers and leading the structure to a behavior closer to the one provided by the beam theory. Additionally to ring stiffeners, vertical stiffening schemes are studied to eliminate the presence of short wavelength buckles due to bending. For the purposes of this research, finite element analysis is applied in order to describe and predict in an accurate way the structural response of a model tower stiffened by internal stiffeners. Moreover, a parametric study is being performed in order to investigate the effect of the stiffeners' number to the functionality of the aforementioned stiffening systems and the improved structural behavior of the overall wind converter.
机译:当前的气候条件以及技术的进步使得必须进一步设计和验证风力涡轮机塔架的结构强度和可靠性的方法。随着人们对“绿色”能源的兴趣日益浓厚,在过去几十年中,风能领域得到了巨大发展。为此,风力涡轮机塔架在结构细节和性能方面的改进导致更有效,耐用和坚固的结构,有利于其更广泛的应用,从而导致能量收集的增加。风塔行业的发展势必比以前更高,具有圆形横截面的锥形钢塔由于能够承受更大的载荷而被广泛使用。本研究着重于通过内部加强来改善钢制风力涡轮机塔架的结构响应。目前正在对加强环对塔架整体结构性能的影响进行彻底研究。这些加强环沿塔架高度放置,以减少局部屈曲现象,从而增加了钢制风能塔架的屈曲强度,并使结构的行为更接近于梁理论提供的行为。除环形加劲肋外,还研究了垂直加劲方案,以消除由于弯曲而产生的短波长弯曲。出于本研究的目的,应用有限元分析以准确描述和预测内部加劲肋加劲的模型塔的结构响应。此外,正在进行参数研究,以研究加劲肋数量对上述加劲系统功能和整个风能转换器的改进结构性能的影响。

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