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Design Procedure for Tubular Lattice Towers for Small Wind Turbines

机译:小型风力发电机管格塔的设计程序。

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Despite having been used for a long time, tubular lattice towers with three or four legs have not been systematically analysed for use with small wind turbines. We present a design procedure based on modelling the towers as either tripods or quadrapods to allow analytic approximations to the tower stresses. Following the IEC standard for small wind turbine design, the critical load occurs at the 50-year extreme wind speed acting on a stationary turbine and tower. To avoid buckling in the downwind leg, three separate methods of estimating the critical buckling resistance are shown to give very similar results. The analytic models also allow the tower-top deflection to be simply approximated. We use an arbitrary limit on deflection as 5% of the tower height, to ensure linear, static behaviour for extreme wind loads. Two example tower designs are considered: an 18 m tower for a 5 kW turbine and a 12 m tower for a 500 W turbine.
机译:尽管已经使用了很长一段时间,但是尚未对具有三或四个支腿的管状格子塔架进行系统分析以用于小型风力涡轮机。我们基于将塔架建模为三脚架或四脚架模型,提出一种设计程序,以允许对塔架应力进行解析近似。遵循用于小型风力涡轮机设计的IEC标准,临界载荷发生在作用在固定涡轮机和塔架上的50年极端风速下。为避免在顺风腿发生屈曲,显示了三种估算临界屈曲阻力的独立方法,它们得出的结果非常相似。该分析模型还允许简单地近似塔顶挠度。我们使用任意的挠度极限值作为塔高的5%,以确保在极端风荷载下具有线性,静态特性。考虑了两个示例塔架设计:一个5 kW涡轮机的18 m塔架和一个500 W涡轮机的12 m塔架。

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