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Physical modelling of large diameter piles in coarse-grained soil

机译:粗粒土中大直径桩的物理模拟

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Monopiles are an often-used foundation concept for offshore wind turbine converters. These piles are highly subjected to lateral loads and overturning bending moments due to wind and wave forces. To ensure enough stiffness of the foundation and an acceptable pile-head deflection, monopiles with diameters of 4 to 6 m are typically employed. In current practice these piles are traditionally designed by means of the p-v curve method although the method is developed and verified for slender piles in sand with diameters up to approximately 2 m. One of the limitations of the p-y curves used in current design (e.g. [1] and [2]) is the effects of diameter on the initial part of the p-y curves. This part is especially important in connection with the serviceability limit state and fatigue. The effects of diameter on the p-y curves can be investigated by means of either numerical analyses or physical modelling (large- or small-scale). This paper investigates the effects of diameter on the initial part of the p-y curves by small-scale testing. A new and innovative test setup is presented. In order to minimize scale effects the tests are successfully carried out in a pressure tank enabling the possibility of increasing the effective stresses. The test setup is thoroughly described in the paper. Two non-slender aluminium pipe piles subjected to lateral loads have been tested in the laboratory. The piles are heavily instrumented with strain gauges in order to obtain p-y curves, displacement and bending moment distributions along the pile.
机译:单桩是海上风力发电机变流器的常用基础概念。这些桩承受着很大的横向载荷,并由于风和波浪力而倾覆弯矩。为了确保基础足够的刚度和可接受的桩头挠度,通常使用直径为4至6 m的单桩。在目前的实践中,这些桩传统上是通过p-v曲线法设计的,尽管该方法是针对直径不超过2 m的沙子中的细长桩而开发和验证的。当前设计中使用的p-y曲线的局限性之一(例如[1]和[2])是直径对p-y曲线初始部分的影响。这部分与使用寿命极限状态和疲劳有关特别重要。直径对p-y曲线的影响可以通过数值分析或物理建模(大型或小型)进行研究。本文通过小规模试验研究了直径对p-y曲线初始部分的影响。提出了一种新的创新测试设置。为了最大程度地减小水垢效应,测试在压力罐中成功进行,从而有可能增加有效应力。本文对测试设置进行了全面描述。在实验室中测试了两个承受侧向载荷的非细长铝管桩。用应变仪对桩进行大量测试,以获得沿桩的p-y曲线,位移和弯矩分布。

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