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Effects of strain softening on the penetration resistance of offshore bucket foundation in nonhomogeneous clay

机译:应变软化对非均质黏土中海上桶形基础抗渗性能的影响

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摘要

The concrete-made bucket foundations were employed as emerging solution to support the wind turbine or breakwater, where the relatively large thicknesses of skirts and the strain softening effect related to the soil sensitivity and ductility were necessary to be explicitly accounted for. However, few of current study concerned this topic. This paper therefore reported an extensive parametric investigation of penetrating behaviour for bucket foundation in nonhomogeneous clay to allow a better estimation of penetration resistance of bucket foundation. The three-dimensional (3D) large deformation finite element (LDFE) analysis model incorporating the effect of strain softening on soil strength was set up and validated by comparing to the published centrifuge data. Then the evolution of soil flow mechanism and the distribution of soil strength softening were examined with the soil plug generated inside skirt assessed. Based on the numerical results, a new analytical model was proposed to predict the penetration resistance of bucket foundation in clay accounting for a partially-remoulded condition.
机译:用混凝土制成的桶形基础作为新兴解决方案来支撑风力涡轮机或防波堤,其中必须明确考虑裙板相对较大的厚度以及与土壤敏感性和延性有关的应变软化作用。但是,当前的研究很少涉及该主题。因此,本文对非均质黏土中桶形基础的渗透特性进行了广泛的参数研究,以更好地估计桶形基础的抗渗透性。建立了包含应变软化对土壤强度影响的三维(3D)大变形有限元(LDFE)分析模型,并与公开的离心机数据进行了比较验证。然后利用裙带内产生的土壤堵塞物,研究了土壤流动机理的演变和土壤强度软化的分布。基于数值结果,提出了一种新的分析模型,用于预测部分重塑条件下桶形基础在黏土中的抗穿透性。

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