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Ultimate strength assessment of jacket offshore wind turbine support structures subjected to progressive bending loading

机译:渐进弯曲载荷作用下的海上夹层风轮机支撑结构的极限强度评估

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The present study aims to assess the ultimate strength of a jacket offshore wind turbine support structures at different water depths. The progressive collapse analysis is carried out based on the finite element method accounting for the nonlinearities regarding material and geometry. A two-step analysis is carried out, in which at first, the axial dead loads are applied in a linear quasi-static analysis and then the resulting pre-stressed jacket support structure is analysed by a nonlinear finite element analysis in order to identify the ultimate strength. The present study employs a global strength approach so as to assess the ultimate strength of the jacket support structures consisting of several supporting modules with different stiffness. The moment-curvature relationships are presented for the jacket support structures at water depths of 40, 60 and 80 m. The effects of the thickness and leg inclination on the ultimate strength are investigated.
机译:本研究旨在评估在不同水深下的护套海上风力涡轮机支撑结构的极限强度。渐进倒塌分析是基于有限元方法进行的,其中考虑了有关材料和几何形状的非线性。进行两步分析,首先,将轴向静载荷应用到线性拟静力分析中,然后通过非线性有限元分析对所得的预应力套管支护结构进行分析,以识别出极限强度。本研究采用整体强度方法,以评估由几个具有不同刚度的支撑模块组成的护套支撑结构的极限强度。给出了水深为40、60和80 m时的套管支撑结构的弯矩曲率关系。研究了厚度和腿部倾斜度对极限强度的影响。

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