首页> 外文会议>36th International conference on ocean, offshore and arctic engineering 2016 >SUPPORTING THE ENGINEERING ANALYSIS OF OFFSHORE WIND TURBINES THROUGH ADVANCED SOIL-STRUCTURE 3D MODELLING
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SUPPORTING THE ENGINEERING ANALYSIS OF OFFSHORE WIND TURBINES THROUGH ADVANCED SOIL-STRUCTURE 3D MODELLING

机译:通过高级土壤结构3D建模支持海上风轮机的工程分析

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摘要

Monopiles are at present the most widespread foundation type for offshore wind turbines (OWTs), due to their simplicity and economic convenience. The current trend towards increasingly powerful OWTs in deeper waters is challenging the existing procedures for geotechnical design, requiring accurate assessment of transient soil-monopile interaction and, specifically, of the associated modal frequencies. In this work, advanced 3D finite element (FE) modelling is applied to the dynamic analysis of soil-monopile-OWT systems under environmental service loads. Numerical results are presented to point out the interplay of soil non-linearity and cyclic hydro-mechanical (HM) coupling, and its impact on transient response of the system at increasing load magnitude. It is shown how the lesson learned from advanced modelling may directly inspire simplified, yet effective, spring models for the engineering dynamic analysis of OWTs.
机译:单桩由于其简单性和经济便利性,目前是海上风力涡轮机(OWT)最为广泛的基础类型。当前在更深水域中日益强大的OWT的趋势正在挑战现有的岩土工程设计程序,要求对瞬态土壤-单桩相互作用,尤其是相关的模态频率进行准确的评估。在这项工作中,将先进的3D有限元(FE)建模应用于在环境服务负荷下的土壤单层OWT系统的动力学分析。数值结果表明了土壤非线性与循环水力耦合(HM)的相互影响,以及在负载量增加时其对系统瞬态响应的影响。它显示了从高级建模中汲取的教训如何直接启发简化,有效的弹簧模型用于OWT的工程动力学分析。

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  • 来源
  • 会议地点 Trondheim(NO)
  • 作者单位

    Geo Structures D'Appolonia S.p.A. via Martiri di Cefalonia 2 - 20097 San Donato Milanese (Italy);

    Geo Structures D'Appolonia S.p.A. via Martiri di Cefalonia 2 - 20097 San Donato Milanese (Italy);

    Geo-Engineering Section/Offshore Engineering Section Delft University of Technology Stevinweg 1 - 2628 CN Delft (The Netherlands);

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