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Soil flow mechanisms around and between stiffeners of caissons during installation in clay

机译:沉箱中加固件周围和加固件之间的土壤流动机制

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Structural stiffeners placed inside caissons have created significant uncertainty regarding soil flow mechanisms, side friction, and end bearing, and consequently in the prediction of the underpressure required for installation. This paper describes centrifuge modelling of the penetration of stiffened skirts in overconsolidated clay, identifying the soil flow mechanisms around and between stiffeners and the penetration resistance. The effects of stiffener width and spacing as well as soil strength ratio are discussed. The present guidelines for predicting the point of soil backflow in the gap that forms between the stiffeners are shown to be invalid and a new expression, based on a stability factor (su/γ′B, where su and γ′ are the undrained shear strength and effective unit weight of the soil, respectively, and B is the combined width of the skirt and stiffener close to the caisson tip) is proposed. End bearing at the skirt tip and base stiffener are seen to dominate installation resistance. The normalized installation resistance stabilizes at a value of ~17.5 at deep penetrations and is shown to be independent of whether the cavity between the stiffeners remains open or is backfilled with a soil-water mixture. This factor of 17.5 is shown to be in good agreement with reported field data and centrifuge test data and hence may be used to obtain a first-order estimate of the installation resistance of a caisson with stiffeners.
机译:放置在沉箱内部的结构加强筋在土壤流动机理,侧向摩擦和端承方面存在很大的不确定性,因此在预测安装所需的负压方面也存在很大不确定性。本文描述了超固结粘土中加劲裙板的渗透的离心模型,确定了加劲肋周围和之间的土壤流动机理以及抗渗透性。讨论了加劲肋宽度和间距以及土强度比的影响。基于稳定因子(su /γ'B,其中su和γ'是不排水的抗剪强度),目前用于预测加劲肋之间形成的缝隙中土壤回流点的指导原则是无效的,并且是一个新表达式(B是裙板和加劲肋靠近沉箱顶部的组合宽度)。可以看到裙缘末端和底部加劲肋的端部轴承支配着安装阻力。规范的安装阻力在深处穿透时稳定在〜17.5的值,并且显示出与加强板之间的空腔保持开放还是被土壤-水混合物回填无关。事实证明,该系数17.5与报告的现场数据和离心机测试数据高度吻合,因此可用于获得带有加强筋的沉箱安装阻力的一阶估算。

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