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Bearing Capacity of Strip Foundation on Soft Soil Reinforced with Stone Columns Using Method of Slices

机译:条形桩加固软土地基上条形基础的承载力

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Stone columns are recognized as an environmently-friendly and cost-effective ground improvement technique. Stone columns are used in soft soil to increase the bearing capacity, reduce the settlement, increase the rate of settlement and reduce the liquefaction potential of the ground. This paper presents an analytical model utilizing the method of slices to predict the ultimate bearing capacity of the soil reinforced with a group of stone columns. The soil within the failure zone was divided into slices and the limit equilibrium technique was adopted to perform the analysis. Shear forces and passive earth pressure on the boundaries of each slice were determined. By utilizing a circular failure plane, the minimum inter-slice force coefficients were determined. The analysis was carried out using the Morgenstern-Price method to estimate the failure surface together with the bearing capacity of the reinforced ground. The failure surface was determined by trial and error to estimate the minimum factor of safety. The ultimate bearing capacity was defined by increasing the foundation load until the factor of safety of one was obtained. Results of the present theory were compared with those available in the literature, where a good agreement between the two was noted.
机译:石柱被认为是一种环境友好且具有成本效益的地面改良技术。石柱用于软土中以增加承载力,减少沉降,增加沉降速率并降低地面的液化潜力。本文提出了一种利用切片法预测一组石柱加筋土的极限承载力的分析模型。将破坏区内的土壤切成薄片,并采用极限平衡技术进行分析。确定了每个切片边界上的剪切力和被动土压力。通过利用圆形破坏平面,确定了最小的层间力系数。使用Morgenstern-Price方法进行了分析,以估算破坏面以及加筋地面的承载力。通过反复试验确定破坏面,以估计最小安全系数。极限承载力是通过增加基础载荷直至获得安全系数来定义的。将本理论的结果与文献中的结果进行了比较,发现两者之间有很好的一致性。

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