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Structural analysis and optimal design of lattice wind turbine towers

机译:格子风力涡轮机塔的结构分析与最优设计

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摘要

Wind energy has shown its dominance among the means of sustainable energy production by the accelerating rise in total installed capacity and increase in size of wind energy structures. Taking into consideration the fact that the supporting structure of onshore wind power generators constitutes approximately one-third of the initial construction cost, structural optimisation of the tower is considered crucial towards the minimisation of capital expenditure during construction. Contemporary energy needs employ the construction of constantly taller and more powerful wind power converters, whose robust design in parallel with compression of initial capital expenditure cannot be neglected. The dominant structural configuration for onshore wind power generators is the tapered steel tower, but lattice towers using enhanced special cross-sections can be a rather promising solution towards economy of material use. The present paper addresses the structural performance and optimisation of tubular and lattice steel wind turbine towers, examining alternative configuration solutions for a given height and rotor characteristics. The finite-element software Abaqus has been used for the implementation of the structural models and an algorithm has been elaborated in Mathematica software in order to allow for optimisation of the use of the cross-section in the case of lattice towers.
机译:风能在可持续的能源生产手段中,通过加速升高的总装机能力的增加和风能结构规模的增加。考虑到陆上风力发电机的支撑结构构成大约三分之一的初始施工成本,塔的结构优化被认为是施工期间资本支出最小化的至关重要。当代能源需求采用较高更高,更强大的风力转换器的建设,其强大的设计与初始资本支出的压缩不可忽视。陆上风力发电机的主导结构配置是锥形钢塔,但使用增强的特殊横截面的格子塔可以是对材料使用经济的相当有前途的解决方案。本文介绍了管状和格子钢风力涡轮机塔的结构性能和优化,检查了给定高度和转子特性的替代配置解决方案。有限元软件ABAQU已经用于实现结构模型,并且在Mathematica软件中阐述了算法,以便在格子塔的情况下优化横截面的使用。

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