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Geotechnical aspects of offshore wind turbine dynamics from 3D non-linear soil-structure simulations

机译:基于3D非线性土壤结构模拟的海上风力发电机动力学的岩土方面

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摘要

The development of the offshore wind industry is motivating substantial research efforts worldwide, where offshore wind turbines (OWTs) of increasing size are being installed in deeper water depths. Foundation design is a major factor affecting the structural performance of OWTs, with most installations founded to date on large diameter monopiles.This work promotes advanced 3D finite element (FE) modelling for the dynamic analysis of OWT-monopile-soil systems. A detailed FE model of a state-of-the-art 8 MW OWT is analysed by accounting for dynamic soil-monopile interaction in presence of pore pressure effects. For this purpose, the critical-state, bounding surface SANISAND model is adopted to reproduce the hydro-mechanical cyclic response of the sand deposit. The response to realistic environmental loading histories (10 min duration) are simulated, then followed by numerical rotor-stop tests for global damping estimation.While linking to existing literature, all FE results are critically inspected to gain insight relevant to geo-technical design. The modelling tools adopted (i) support the robustness of 'soft-stiff foundation design with respect to natural frequency shifts, even during severe storm events; (ii) provide values of foundation damping in line with field measurements; (iii) suggest that pore pressure effects might more likely affect soil-monopile interaction under weak-to-moderate environmental loading.
机译:海上风力产业的发展正在全世界范围内进行大量的研究工作,其中越来越大的海上风力涡轮机(OWT)被安装在更深的水深中。基础设计是影响OWT结构性能的主要因素,迄今为止,大多数安装都建立在大直径单桩上。这项工作促进了用于OWT单桩土系统动力分析的高级3D有限元(FE)建模。通过考虑存在孔隙压力效应的动态土壤-单层相互作用,分析了最先进的8 MW OWT的详细有限元模型。为此,采用临界状态边界表面SANISAND模型来重现砂矿的水力循环响应。模拟对实际环境载荷历史的响应(持续时间为10分钟),然后进行数字转子停止试验以进行整体阻尼估算。在与现有文献相结合的同时,所有有限元结果都经过严格检查,以获取与岩土工程设计相关的见解。所采用的建模工具(i)即使在严重风暴事件中,也支持“软硬地基”设计在自然频移方面的鲁棒性; (ii)根据现场测量值提供基础阻尼值; (iii)表明,在弱到中度的环境负荷下,孔隙压力的作用可能更可能影响土壤与土壤的相互作用。

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