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首页> 外文期刊>International journal of lifecycle performance engineering >Reproduction of the wind and earthquake coupled effect on a wind turbine tower in a shaking-table substructure test
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Reproduction of the wind and earthquake coupled effect on a wind turbine tower in a shaking-table substructure test

机译:震动台亚结构试验中风力涡轮机塔的繁殖和地震耦合效应

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摘要

Wind turbines are being used in increasingly complex working environments that generate coupled wind and earthquake effects. Recent projects have tended to construct larger wind turbines to improve efficiency, but this generates more wind-induced vibration. Moreover, different threats are faced by a wind turbine at various stages. During construction, for example, vortex-induced resonance might result in a large lateral displacement of up to 1 metre, making the installation of blades difficult. Meanwhile, during service, the structure of a wind turbine can be damaged by strong gales and sometimes by earthquakes. The present study develops a tuned mass damper, which is designed to mitigate vortex-induced resonance. Shaking-table substructure hybrid tests are conducted to verify the performance of the tuned mass damper for different external loads. The experimental results confirm the effectiveness in terms of suppressing vortex-induced resonance, while the mitigation of the response to wind and earthquakes is limited.
机译:风力涡轮机正在用于产生耦合风和地震效应的越来越复杂的工作环境中。最近的项目倾向于构建较大的风力涡轮机以提高效率,但这产生了更多的风力诱导的振动。此外,在各个阶段的风力涡轮机面临不同的威胁。例如,在施工期间,涡旋诱导的共振可能导致大达1米的大横向位移,使得叶片的安装困难。同时,在维修期间,风力涡轮机的结构可能受到强大的Gales,有时遭到地震的损坏。本研究开发了调谐质量阻尼器,其旨在减轻涡流引起的共振。摇动表副结构混合测试是为了验证调谐质量阻尼器的性能,用于不同的外部负载。实验结果证实了抑制涡旋引起的共振方面的有效性,而对风和地震的响应减轻的影响是有限的。

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