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首页> 外文期刊>International journal of geomechanics >Vertical Load Transfer for Bored Piles Buried in Cohesive Intermediate Geomaterials
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Vertical Load Transfer for Bored Piles Buried in Cohesive Intermediate Geomaterials

机译:钻孔桩埋在凝聚力中间岩土材料中的垂直载荷转移

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摘要

In developing a vertical load transfer function for bored piles buried in cohesive intermediate geomaterials (IGM), it is essential to understand the shear behavior of the rough sidewall. The interface between the cohesive IGM and the concrete shafts could be simplified as a series of identical triangular asperities. The emphasis is to quantify the collapse load of asperities due to any change in the shear-induced dilation under constant normal stiffness (CNS) conditions. An asperity model was developed and the collapse load was also derived by a lower-bound limit solution with two lines of discontinuity, and an alternativet-wcurve was proposed. A design chart relevant to the material and geometric constants, including the asperity inclination and friction angle, was presented in a certain range, and a dimensionless bearing capacity factor,N, was introduced to facilitate the utilization. Case studies demonstrate that the axial load distribution predicted by the proposed method exhibits general accuracy with reference to the field observations.
机译:在开发围绕粘合中间地岩石(IgM)的钻孔桩的垂直载荷传递函数时,必须了解粗糙侧壁的剪切行为。粘性IgM和混凝土轴之间的界面可以被简化为一系列相同的三角形粗糙度。强调由于在恒定正常刚度(CNS)条件下的剪切诱导的扩张的任何变化导致粗糙度的塌陷载荷。开发了一种粗糙模型,并且还通过具有两条不连续性的下限限制溶液来源的塌陷载荷,并提出了替代恒星-WCurve。引入了一定范围内的与材料和几何常数相关的设计图,包括粗糙度倾斜和摩擦角,并且引入无量纲轴承容量系数,以便于利用。案例研究表明,所提出的方法预测的轴向载荷分布参考现场观察表现出一般的准确性。

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