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首页> 外文期刊>International Journal of Offshore and Polar Engineering >Strength Analysis for a Jacket-type Substructure of an Offshore Wind Turbine Under Extreme Environment Conditions
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Strength Analysis for a Jacket-type Substructure of an Offshore Wind Turbine Under Extreme Environment Conditions

机译:极端环境条件下近海风力涡轮机夹克型芯片结构的强度分析

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This study investigates the extreme environment conditions behaviors of a reference offshore wind turbine with jacket substructure for transitional water depths. Fully coupled, nonlinear time-domain simulations on full system models are carried out under earthquake and typhoon loads. For a further insight into the importance of seismic and typhoon assessment, a comparison with demands from some typical design load cases prescribed by International Electromechanical Commission standard IEC 61400-3 is also provided. It is shown that earthquake loading may cause a significant increase of stress resultant demands, especially for seismically active areas. In addition, the results also showed the vertical accelerations at the ground surface were amplified by a factor of 8 at the location of the tower top. Larger structures with lower natural frequencies may be prone to significant responses of excitation in the vertical direction. This acceleration can have significant bearing on the design of the tower and its connection to the nacelle and performance of the turbine after the earthquake.
机译:本研究调查了引用离岸风力涡轮机的极端环境条件行为,其具有用于过渡水深的夹克子结构。完全耦合,全系统模型的非线性时域模拟在地震和台风负载下进行。为了进一步了解地震和台风评估的重要性,还提供了与国际机电委员会标准IEC 61400-3规定的一些典型设计负载箱的需求的比较。结果表明,地震载荷可能导致应力导致需求的显着增加,特别是对于地震活动区域。另外,结果还显示了地面的垂直加速度在塔顶的位置处的8倍。具有较低自然频率的较大结构可以容易产生垂直方向上的激发的显着响应。这种加速度可能对塔的设计具有显着的轴承及其与地震后涡轮机的机舱和性能的连接。

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