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Undrained Bearing Capacity of Suction Caissons for Offshore Wind Turbine Foundations by Numerical Limit Analysis

机译:基于数值极限分析的海上风力发电机基础沉箱不排水承载力

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摘要

Determining the ultimate capacity of suction caissons in response to combined vertical, horizontal, and moment loading is essential for their design as foundations for offshore wind turbines. However, the method implemented for stability analysis is quite limited. Numerical limit analysis has an advantage over traditional limit equilibrium methods and nonlinear finite element methods in this case because upper and lower bounds can be achieved to ensure that the exact ultimate capacity of the caisson falls within the appropriate range. This article presents theories related to numerical limit analysis. Simulations are conducted for centrifuge model tests, the findings of which reveal the ability of numerical limit analysis to deal with the inclined pullout capacity of suction caissons. Finally, this article proposes an estimation of the ultimate capacity of a 3.5 MW offshore wind turbine foundation on normally consolidated clay based on the typical environmental parameters of Bothkennar, Scotland. Undrained failure envelopes and safety factors are obtained for suction caissons with different embedment ratios. Failure mechanisms, plastic zones, clay stress distributions, and the influence of the skin friction coefficients of caissons are discussed in detail.
机译:确定吸水沉箱响应垂直,水平和力矩荷载组合的极限能力对于将其设计为海上风力发电机的基础至关重要。但是,用于稳定性分析的方法非常有限。在这种情况下,数值极限分析优于传统的极限平衡方法和非线性有限元方法,因为可以实现上下边界以确保沉箱的精确极限承载力在适当范围内。本文介绍了与数值极限分析有关的理论。对离心机模型试验进行了仿真,其发现揭示了数值极限分析处理吸水沉箱倾斜倾斜能力的能力。最后,本文根据苏格兰的Bothkennar的典型环境参数,提出了对3.5兆瓦海上风力发电机基础在正常固结粘土上的极限容量的估算。对于具有不同嵌入率的沉井,可以获得不排水的失效范围和安全系数。详细讨论了破坏机理,塑性区,粘土应力分布以及沉箱的表皮摩擦系数的影响。

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