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Implementation of a non-linear foundation model for soil-structure interaction analysis of offshore wind turbines in FAST

机译:FAST中海上风力发电机土-结构相互作用分析的非线性基础模型的实现

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摘要

Bottom-fixed offshore wind turbines (OWTs) involve a wide range of engineering fields. Of these, modelling of foundation flexibility has been given little priority. This paper investigates the modelling of bottom-fixed OWTs in the non-linear aero-hydro-servo-elastic simulation tool FAST v7. The OWTs considered is supported on a monopile. The objective of this paper was to implement a non-linear foundation model in this software. The National Renewable Energy Laboratory's idealized 5MW reference turbine was used as a base for the analyses. Default modelling of foundation in FAST v7 is by means of a rigid foundation. This implies that soil stiffness and damping is disregarded. Damping may lead to lower design loads. A softer foundation, on the other hand, will increase the natural periods of the system, shifting them closer to the frequencies of the environmental loads. This may in turn lead to amplified moments at the mudline. Therefore, it is important to include soil stiffness and damping in analyses. In this paper, a non-linear foundation model is introduced in FAST v7 by means of uncoupled parallel springs. To verify that the implementation is successful, non-linear load-displacement curves of the foundation spring are presented. These show the typical hysteresis loops of an inelastic material, which confirms the implementation. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:底部固定式海上风力涡轮机(OWT)涉及广泛的工程领域。其中,基础灵活性建模几乎没有被优先考虑。本文研究了非线性气动-水-伺服-弹性仿真工具FAST v7中底部固定的OWT的建模。所考虑的OWT受单桩支持。本文的目的是在该软件中实现非线性基础模型。国家可再生能源实验室的理想5MW参考涡轮机被用作分析的基础。 FAST v7中基础的默认建模是通过刚性基础进行的。这意味着忽略了土壤刚度和阻尼。阻尼可能会导致较低的设计负载。另一方面,较软的基础会增加系统的自然周期,使它们更接近环境负荷的频率。这反过来可能导致泥线处的弯矩增大。因此,重要的是要在分析中包括土壤刚度和阻尼。在本文中,FAST v7通过非耦合并联弹簧引入了非线性基础模型。为了验证实施是否成功,给出了地弹簧的非线性载荷-位移曲线。这些显示了非弹性材料的典型磁滞回线,证实了这种实现。版权所有(c)2016 John Wiley&Sons,Ltd.

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