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THE USE AND APPLICATION OF CARBON FIBRE COMPOSITES IN TURBINE BLADES

机译:碳纤维复合材料在涡轮叶片中的应用及应用

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The exponential growth in offshore wind turbine size in recent years and the rapid development of tidal turbines has brought new challenges to the blade designer. Fundamental differences in the operational environment produce different optimum structural configurations, driven by different design parameters. The primary drivers for wind blades are stiffness and weight and for tidal blades static and fatigue strength. Analysis shows that such drivers applied to new and future generations of turbine blades are hard to satisfy with traditional wind blade technologies. Carbon fibre composites, with their high stiffness and excellent fatigue behaviour, are able to contribute to the development of aerodynamically and structurally viable solutions. As well as these parameters, reliability and overall cost are key parameters which can be improved by selecting appropriate manufacturing processes and production orientated design. This paper illustrates how intelligent structural design combined with an increased use of carbon fibre can lead to cost effective solutions to the design of the new generation of offshore wind and tidal turbine blades.
机译:近年来,海上风力涡轮机尺寸的指数增长以及潮汐涡轮机的快速发展给叶片设计者带来了新的挑战。在不同的设计参数的驱动下,操作环境的根本差异会产生不同的最佳结构配置。风力涡轮机叶片的主要驱动力是刚度和重量,潮汐叶片的主要驱动力是其静态和疲劳强度。分析表明,应用于新一代涡轮叶片的这种驱动器很难用传统的风力叶片技术满足。碳纤维复合材料具有很高的刚度和出色的疲劳性能,能够为开发空气动力学和结构上可行的解决方案做出贡献。除了这些参数之外,可靠性和总成本也是关键参数,可以通过选择适当的制造工艺和以生产为导向的设计来改善这些参数。本文说明了如何将智能化的结构设计与增加的碳纤维结合使用如何为新一代海上风电和潮汐涡轮机叶片的设计提供经济高效的解决方案。

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