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Numerical Analyses of Soil Arching in Rigid Pile Supported Embankments

机译:刚性桩支护路堤土拱效应的数值分析

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The piled embankment, consisting of the foundation, pile, pile caps, and the earth-filling embankment, is a complex soil-structure system. One of the working principles of the rigid pile supported embankment is the soil arching effect. Many factors, such as the surcharge load over the fill, consolidation of soft soil foundation and differential settlements between piles and the around soil, would play a role. In this paper, a numerical model of rigid pile supported embankment was built using ABAQUS software, a series of numerical analyses were performed to research the shape of soil arching for different fills and different loads on the fill. In the numerical analyses, the fill of embankment is silty clay or gravelly soil and the material of foundation is soft soil. Silty clay, gravelly soil and soft soil are simulated as elastic-plastic material following the Coulomb friction law. Piles conformed to a linear elastic law. After the calculation, the following results were obtained. (a) The shape of soil arching in 2D would be a trigon. (b) Soil arching height would grow with loads on the surface of fills. (c) The angle of soil arching changed with the load increasing on the fill and depended on the fill characteristics, such as peak internal friction angle, cohesion and elasticity modulus.
机译:桩基路堤由地基,桩基,桩帽和填土路堤组成,是一个复杂的土壤结构系统。刚性桩支撑路堤的工作原理之一是土拱效应。许多因素都将发挥作用,例如填土上的附加载荷,软土地基的固结以及桩与周围土壤之间的差异沉降。本文利用ABAQUS软件建立了刚性桩支护路堤的数值模型,并进行了一系列数值分析,研究了不同填土和不同填土荷载下土拱的形状。在数值分析中,路堤的填充物为粉质粘土或砾石土,地基材料为软土。遵循库仑摩擦定律将粉质粘土,砾石土和软土模拟为弹塑性材料。桩符合线性弹性定律。计算后,获得以下结果。 (a)二维的土壤拱形形状为三角形。 (b)土拱的高度会随着填充物表面的载荷而增加。 (c)土拱的角度随荷载的增加而变化,并取决于填料的特性,例如峰值内摩擦角,内聚力和弹性模量。

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