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Stiffness of a Foldable Tower for Wind Turbine

机译:风力发电机可折叠塔的刚度

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With the shortage of fuel in the world, wind power becomes one of the most potential energy today. For thedemand for more energy from wind turbine, the tower is tending to be designed much higher than before to capture thewind with faster speed. However, the higher the tower is the more possible the catastrophe of a whole wind turbinestructure will occur when hurricanes come. This paper proposes a foldable tower for wind turbine to avoid the disastersbrought about by strong wind in the high-level sky. The tower can be folded when hurricanes come and can be deployedfully to acquire more wind power in high sky in the normal cases. Firstly, the geometry design of a deployable structure ispresented in details by discussing the deployable ratio. Then, it focuses on the statics, stiffness analysis of this structure.The equivalent stiffness of the foldable tower is expressed as a function of the primary design parameters and thedeployable angle. What must be pointed out is that the result comprehensively expresses the dependence of the stiffnesson the deployable angle and the stiffness of the fully deployed case. This is particularly useful for the applications in windturbine.
机译:随着世界上燃料的短缺,风力发电成为当今最有潜力的能源之一。为了从风力涡轮机获取更多能量,塔的设计往往比以前更高,以更快的速度捕获风。但是,塔越高,飓风来临时,整个风力涡轮机结构发生灾难的可能性越大。本文提出了一种用于风力涡轮机的可折叠塔架,以避免在高空下强风造成的灾难。在飓风来临时,该塔架可以折叠,并且在正常情况下可以展开以在高空获得更多的风力。首先,通过讨论可展开比来详细描述可展开结构的几何设计。然后,将重点放在该结构的静力,刚度分析上。可折叠塔的等效刚度表示为主要设计参数和展开角度的函数。必须指出的是,结果全面表达了刚度对可展开角度和完全展开壳体的刚度的依赖性。这对于风力涡轮机的应用特别有用。

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