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Effect of load eccentricity and stress level on monopile support for offshore wind turbines

机译:负载偏心率和应力水平对海上风力发电机组单桩支撑的影响

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摘要

Currently monopiles are the most common foundation solution for offshore wind turbines. The design of monopiles relies on empirical data from tests performed on long, slender, small-diameter piles loaded predominantly in shear. In contrast, a monopile is a large-diameter, relatively short pile on which load is applied with a large eccentricity. With centrifuge tests as the basis, this paper investigates the behaviour of a rigid pile loaded with a high eccentricity. A test series was carried out to simulate idealized monotonic load cases for monopiles supporting an offshore wind turbine. Centrifuge tests were performed on model monopiles subjected to stress distributions equal to prototype monopiles with pile diameters ranging from 1-5 m and eccentricities ranging from 8.25-17.75 pile diameters. It was possible to identify a unified response of all of these tests by using dimensional analysis and Rankine's passive earth pressure coefficient as a normalization parameter. The normalized ultimate soil resistance was unaffected by acceleration level and load eccentricity, indicating that the failure mechanism was the same for all tests. Based on the centrifuge tests, a reformulation of soil-pile interaction curves is presented. The normalized initial stiffness of the soil-pile resistance curves was seen to increase linearly with depth in the centrifuge tests. The reformulation differs from current guidelines in terms of the shape of the interaction curve and magnitude of ultimate resistance.
机译:当前,单桩是海上风力发电机最常见的基础解决方案。单桩的设计依赖于经验数据,该数据来自对主要承受剪切力的长而细的小直径桩进行的测试。相反,单桩是大直径,相对短的桩,其上施加的载荷具有较大的偏心率。以离心试验为基础,研究了偏心率高的刚性桩的行为。进行了一个测试系列,以模拟支撑海上风力涡轮机的单桩的理想单调载荷工况。对承受应力分布等于原型单桩的模型单桩进行离心测试,桩的直径范围为1-5 m,偏心距为8.25-17.75。通过使用尺寸分析和兰金的被动土压力系数作为归一化参数,可以确定所有这些测试的统一响应。归一化的极限土壤阻力不受加速度水平和荷载偏心率的影响,表明所有试验的破坏机理均相同。在离心试验的基础上,提出了土-桩相互作用曲线的新公式。在离心试验中,土-桩抗力曲线的标准化初始刚度随深度而线性增加。在相互作用曲线的形状和极限抗力的大小方面,重新制定与现行指南有所不同。

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