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首页> 外文期刊>Structure and Infrastructure Engineering >Control of wind/wave-induced vibrations of jacket-type offshore wind turbines through tuned liquid column gas dampers
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Control of wind/wave-induced vibrations of jacket-type offshore wind turbines through tuned liquid column gas dampers

机译:通过调谐液柱气体阻尼器控制夹套式海上风机的风/波感应振动

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摘要

Wind/wave-induced vibrations of jacket-type offshore wind turbines (JOWTs) are suppressed by placing a passive vibration absorber, called tuned liquid column gas damper (TLCGD), on the turbine nacelle. Adopting an ensemble of 75 wind/wave combinations, three different JOWTs and a SimuLink-based nonlinear model in time domain, main parameters of the TLCGD are optimised to reach the minimum standard deviation of nacelle displacement. Obtained results indicate that contribution of the proposed TLCGD is more pronounced in the case of regular excitations such as those from sea waves and less turbulent winds. Depending on the wind/wave combination, TLCGD can result in reductions up to 45% and 51% in nacelle displacement standard deviation and maximum acceleration, respectively. As a result, TLCGD deemed to be well suited to protect fatigue critical JOWTs as well as acceleration-sensitive devices of the nacelle.
机译:通过在涡轮机机舱上放置一个称为调谐液柱气体阻尼器(TLCGD)的无源减振器,可以抑制夹套式海上风力涡轮机(JOWT)的风/波引起的振动。采用75种风/浪组合,三个不同的JOWT和时域基于SimuLink的非线性模型,优化了TLCGD的主要参数,以达到机舱位移的最小标准偏差。获得的结果表明,在常规激励(例如来自海浪和较少湍流的激励)的情况下,拟议的TLCGD的贡献更为明显。取决于风浪组合,TLCGD可使机舱位移标准偏差和最大加速度分别降低多达45%和51%。因此,TLCGD被认为非常适合于保护疲劳关键的JOWT以及机舱的加速度敏感设备。

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