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UNIAXIAL CAPACITIES OF SAND-FILLED LARGE CYLINDRICAL STRUCTURES IN SOFT FOUNDATION

机译:软土地基中大砂形圆柱结构的单轴承载力

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Large diameter cylindrical structures are a kind of large-diameter thin-walled structures which are suitable for a verity of coastal projects such as embankments, breakwaters, wharfs and sea cofferdams. The amount of cylinder material per meter is independent of the cylinder diameter, and the bearing capacities of the structure, especially the horizontal and moment bearing capacities, increase with the increase of its diameter. This kind of structure is economic, reliable and easy to construct. In construction, multiple vibration hammers are installed at the upper part of the cylinder, and as the hammers vibrate synchronously, the soil adjacent to the cylinder wall is disturbed, allowing the large cylinder to sink under its dead weight. The prospect for applying this kind of structure in soft foundation is bright. However, due to the complexity of the interaction mechanism between the large cylinder, internal sand and saturated soft soil foundation, the bearing characteristics of sand-filled large cylindrical structures in soft foundation, especially the effect of the internal sand on the bearing capacities, are not clear. In this paper, the effects of internal sand filling height, foundation depth and soil undrained shear strength on the uniaxial capacities and the failure mechanism of sand-filled large cylindrical structures are studied via finite element numerical analysis. Meanwhile, uniaxial capacities of sand-filled large cylindrical structures are compared with those of suction bucket foundations and non-sand-filled large cylindrical structures in identical conditions. In addition, approximating expressions for calculating the bearing capacities of sand-filled large cylindrical structures are proposed to provide reference for the design of such structures.
机译:大直径圆柱结构是一种大直径薄壁结构,适用于各种沿海项目,例如路堤,防波堤,码头和围堰。每米的圆柱材料量与圆柱直径无关,并且结构的承载能力(尤其是水平承载能力和力矩承载能力)随其直径的增加而增加。这种结构经济,可靠并且易于构造。在结构中,多个振动锤安装在缸体的上部,并且随着锤子的振动,缸壁附近的土壤受到干扰,从而使大型缸体在其自重作用下下沉。在软基础上应用这种结构的前景是光明的。但是,由于大圆筒,内砂和饱和软土地基之间相互作用机理的复杂性,软土地基中充砂大圆筒结构的承载特性,特别是内砂对承载力的影响较大。不清楚。通过有限元数值分析,研究了内部充砂高度,地基深度和土壤不排水抗剪强度对充砂大圆筒结构单轴承载力及破坏机理的影响。同时,在相同条件下,将充沙大型圆筒形结构的单轴承载力与吸斗式地基和非充沙大型圆筒形结构的单轴承载能力进行了比较。此外,提出了近似的表达式,用于计算填充砂的大型圆柱结构的承载力,为此类结构的设计提供参考。

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