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On the application of the beam model for linear dynamic analysis of pile and suction caisson foundations for offshore wind turbines

机译:梁模型在海上风力涡轮机桩桩线性动力分析中的应用

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Piles and suction caissons are the most common foundation solutions for fixed Offshore Wind Turbines at intermediate water depths. They are generally used as a single element, presenting large diameters and short aspect ratios. These specific dimensions drastically differ from the ones of classical applications (offshore platforms, bridges, tall buildings etc.). Thus, in this paper the validity of their modelling as beam elements for the particular problem of OWT is revised. The results of a soil-beam model, based on the integral Reciprocity Theorem in Elastodynamics and specific Green?s functions for the layered half-space for the soil behaviour coupled with Timoshenko?s beam Finite Elements, are benchmarked against the ones of a soil-shell model, based on Boundary Elements for the soil coupled with shell Finite Elements. The comparative study is conducted in terms of foundation characterization variables (impedance functions and kinematic interaction factors). Their influence on the OWT seismic response is also studied through a substructuring procedure. From the results, some expressions for determining the applicability range of the beam simplification are proposed as functions of the relative foundation-soil stiffness ratio. It is observed that this applicability range goes beyond that the one commonly considered. .
机译:桩和吸盘是中间水深固定的海上风力涡轮机最常见的基础解决方案。它们通常用作单个元素,呈现大直径和短纵横比。这些特定尺寸与古典应用程序(海上平台,桥梁,高层建筑等)大大不同。因此,在本文中,修订了作为OWT特定问题的光束元件的模型的有效性。基于弹性动力学的整体互动定理和针对分层半空间的整体互动定理的土壤梁模型的结果与Timoshko梁有限元相结合的土壤行为的分层半空间,与土壤中的那些基准测试-Shell模型,基于土壤的边界元件与壳有限元耦合。比较研究是根据基础表征变量(阻抗函数和运动相互作用因子)进行的。还通过子结构过程研究了对OWT地震反应的影响。从结果中,提出了用于确定光束简化的适用范围的一些表达式作为相对基础 - 土壤刚度比的函数。观察到,这种适用性范围超出了通常考虑的范围。 。

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