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An improved two-step soil-structure interaction modeling method for dynamical analyses of offshore wind turbines

机译:改进的两步式土-结构相互作用建模方法在海上风机动力分析中的应用

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The detailed modeling of soil-structure interaction is often neglected in simulation codes for offshore wind energy converters. This has several causes: On the one hand, soil models are in general sophisticated and have many degrees of freedom. On the other hand, for very stiff foundations the effect of soil-structure interaction could often be discounted. Therefore, very simple approaches are utilized or the whole structure is assumed to be clamped at the seabed. To improve the consideration of soil-structure interaction, a six-directional, coupled, linear approach is proposed, which contains an implementation of soil-structure interaction matrices in the system matrices of the whole substructure. The aero-hydro-servo-elastic simulation code FAST has been modified for this purpose. Subsequently, a 5 MW offshore wind energy converter with pile foundation is regarded in two examples. (C) 2015 Elsevier Ltd. All rights reserved.
机译:海上风能转换器的模拟代码中常常忽略了土壤-结构相互作用的详细模型。这有多种原因:一方面,土壤模型通常是复杂的,并且具有许多自由度。另一方面,对于非常坚硬的地基,通常可以忽略土与结构相互作用的影响。因此,可以采用非常简单的方法,或者假定整个结构都被夹紧在海底。为了改善对土-结构相互作用的考虑,提出了一种六向耦合的线性方法,该方法在整个子结构的系统矩阵中包含了土-结构相互作用矩阵的实现。为此,修改了航空-水-动力-弹性模拟代码FAST。随后,在两个示例中考虑了具有桩基础的5 MW海上风能变流器。 (C)2015 Elsevier Ltd.保留所有权利。

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