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Distinct-element analysis of an offshore wind turbine monopile under cyclic lateral load

机译:周期性侧向载荷作用下海上风机单桩的不同元素分析

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This paper presents a distinct-element method study of the dynamic behaviour of a rigid bored monopile for an offshore wind turbine foundation subject to force-controlled cyclic lateral loads. A two-dimensional model of a granular assembly was developed using the particle flow code. The model was consolidated under high gravity to simulate existing centrifuge model tests. The simulation results showed great similarity to the published experimental measurements in terms of the relationship between loading and the normalised lateral displacement. The dependency of the accumulated rotation, lateral deflection and stiffness on the two key loading characteristics, loading magnitude and direction, were analysed. Particle-scale information was employed to reveal the micromechanics of these dynamic behaviours. It was seen that relative particle displacement fields provided clear micro-scale evidence of the development of shear zones induced by the lateral cyclic loading of the pile. Meanwhile, local void densification was also observed through particle movements.
机译:本文提出了一种独特的单元法,研究了受力控制的循环侧向荷载作用下的海上风力发电机基础的刚性钻孔单桩的动力特性。使用粒子流代码开发了颗粒装配的二维模型。该模型在高重力下进行了整合,以模拟现有的离心机模型测试。在载荷与规范化的横向位移之间的关系方面,模拟结果显示出与已发布的实验测量结果非常相似。分析了累积旋转,横向挠度和刚度对两个关键载荷特性(载荷大小和方向)的依赖性。粒度信息被用来揭示这些动态行为的微观力学。可以看出,相对的颗粒位移场为由桩的横向循环荷载引起的剪切带的发展提供了清晰的微观尺度证据。同时,还通过粒子运动观察到局部空隙致密化。

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