首页> 外文会议>ISISS' 2011;International symposium on innovation sustainability of structures in civil engineering >STATIC ANALYSIS OF AXIAL ULTIMATE BEARING CAPACITY OF SINGLE PILE IN DIFFERENT DIAMETER AND SOIL LAYERS
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STATIC ANALYSIS OF AXIAL ULTIMATE BEARING CAPACITY OF SINGLE PILE IN DIFFERENT DIAMETER AND SOIL LAYERS

机译:不同直径和土层中单桩轴向极限承载力的静态分析

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Knowing axial ultimate bearing capacity of a structure is essential for construction of building,bridges and other huge structures. Moreover,knowing the effect of diameter change is crucial in the ultimate load carrying capacity of piles and the soil properties. The purpose of the paper is to investigate the axial ultimate bearing capacity of the piles at different diameter and to draw the t-z and q-z curves of the skin friction and end bearing capacities of the load resistance respectively,moreover to study the axial ultimate load carrying capacity of pile in homogenous soil layer and multi soil layer. The methodologies applied to evaluate the capacity are theoretical calculation using the static axial load and the ALLPILE software analyzing results. The result obtained shows that the piles having large diameter have higher bearing capacity and relatively low settlement and this is due to the increasing surface area of the pile shaft contact with soil interaction.
机译:了解建筑物的轴向极限承载力对于建造建筑物,桥梁和其他大型建筑物至关重要。此外,了解直径变化的影响对于桩的最终承载能力和土壤特性至关重要。本文的目的是研究不同直径桩的轴向极限承载力,并分别绘制蒙皮摩擦力的tz和qz曲线以及负载阻力的最终承载力,并研究轴向极限承载力。均质土层和多层土层中的桩基用于评估能力的方法是使用轴向静载荷和ALLPILE软件分析结果进行的理论计算。所得结果表明,大直径的桩具有较高的承载力和相对较低的沉降,这是由于桩轴与土壤相互作用的接触表面积增加所致。

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