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Analysis of Axially Loaded Short Rigid Composite Caisson Foundation Based on Continuum Approach

机译:基于连续体方法的轴向受力短刚度复合沉箱基础分析

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The concept of an open pipe pile with a gravel plug is used to develop a new short rigid composite caisson foundation for floodplains and lowlands. It consists of a shallow pipe or caisson, sunk to the desired depth by conventional sinking techniques; the soil within the caisson shaft is removed; and granular material is filled in and compacted to enhance the stability and load-carrying capacity. The caisson shaft is considered to be rigid, undergoes rigid body translation, and hence is analyzed as an incompressible cylinder, whereas the core inside is treated as a compressible pile. The soil displacements are calculated at the midpoints of the outer surfaces of each element and at the centers of the bases of the caisson shaft and the granular core by numerically integrating Mindlin' s solution for a vertical point load inside a semiinfinite medium. A parametric study is carried out to bring out the effects of various parameters on the load sharing, the shear stress distribution, and the settlement of the proposed foundation.
机译:带有砾石塞的开放式管桩的概念用于开发新的短刚性复合沉箱基础,用于洪泛区和低地。它由浅管或沉箱组成,通过常规沉没技术沉入所需深度。沉井井筒内的土壤被清除;填充并压实颗粒状材料,以增强稳定性和承载能力。沉箱轴被认为是刚性的,经过刚体平移,因此被分析为不可压缩的圆柱体,而内部的芯被视为可压缩的桩。通过对半无限介质内部垂直点载荷的Mindlin解进行数值积分,可以在每个单元外表面的中点以及沉井井筒和粒状岩心底部的中心计算土壤位移。进行了参数研究,以了解各种参数对荷载分配,剪切应力分布和拟建基础沉降的影响。

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