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Centrifuge modeling of lateral bearing behavior of offshore wind turbine with suction bucket foundation in sand

机译:砂式吸入桶基础的海上风力发电机侧向轴承行为的离心模型。

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Suction bucket foundation is a promising alternative for offshore wind turbine foundations. The lateral bearing behavior and failure mechanism" are significant topics for optimizing its design criteria. In this study, a group of centrifuge tests were performed to investigate the lateral bearing capacity of suction bucket foundation with three aspect ratios. Force-controlled lateral static and cyclic tests were performed at a centrifuge acceleration of 50 g. Four soil conditions were considered in centrifuge tests with a combination of loose/dense and dry/saturated sand. The load-displacement and the stiffness-displacement relationships are presented in the paper, and it is concluded that the lateral bearing capacity can be reached when the normalized lateral displacement (displacement divided by the bucket diameter) reached 3% as the first method. Displacement rates are plotted against the lateral load to give the second method for defining the ultimate lateral capacity. In cyclic tests, the lateral displacement and stiffness are correlated to the cycle numbers in the first 5 cycles, but the change is less apparent in the rest. The results demonstrated the behavior of bucket foundation in service conditions. Finally, a simplified calculation method is used as the third method and checked with tests results.
机译:吸斗式基础是海上风力发电机基础的有希望的替代方案。 “侧向承载行为和破坏机理”是优化其设计标准的重要课题。在这项研究中,进行了一组离心试验,研究了三个长宽比的吸水桶基础的侧向承载能力。力控制的侧向静力和循环力试验在50 g的离心加速度下进行,在离心试验中考虑了四种土壤条件,结合了松散/密实和干/饱和砂土,在本文中给出了载荷-位移和刚度-位移的关系,得出的结论是,当第一种方法的标准化横向位移(位移除以铲斗直径)达到3%时,可以达到横向承载力,将位移率与横向载荷作图,得出第二种方法来定义极限横向能力在循环测试中,横向位移和刚度与前5个循环的次数相关周期,但其余的变化并不明显。结果证明了铲斗基础在使用条件下的行为。最后,将简化的计算方法用作第三种方法,并与测试结果进行比较。

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