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Preliminary studies on SMA embedded wind turbine blades for passive control of vibration

机译:用于被动控制振动的SMA嵌入式风力涡轮机叶片的初步研究

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摘要

Wind turbine blades are being bigger and bigger, thus requiring lightweight structures that are more flexible and thus more sensitive to dynamic excitations and to vibration problems. This paper investigates a preliminary architecture of large wind turbine blades, embedding thin sheets of SMA to passively improve their total damping. A phenomenological material model is used for simulation of strain-dependent damping in SMA materials and an user defined material model was developed for this purpose. The response of different architectures of SMA embedded blades have been investigated in the time domain to find an optimal solution in which the less amount of SMA is used while the damping of the system is maximized
机译:风力涡轮机叶片更大,更大,因此需要更灵活的轻质结构,从而对动态激发和振动问题更敏感。本文调查了大型风力涡轮机叶片的初步结构,嵌入薄片的SMA以被动地改善它们的总阻尼。现象学材料模型用于模拟SMA材料中应变依赖性阻尼,为此目的开发了用户定义的材料模型。在时域中研究了SMA嵌入式刀片的不同架构的响应,以找到最佳解决方案,其中使用越多的SMA,而系统的阻尼最大化

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