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Behavior of Weak Soils Reinforced with End-Bearing Soil-Cement Columns Formed by the Deep Mixing Method

机译:深层搅拌法形成的端承式水泥土桩加固弱土的行为

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摘要

This article reports on a series of small-scale, plane strain, 1g physical model tests designed to investigate the bearing capacity and failure mechanics of end-bearing soil-cement columns formed via Deep Mixing (DM). Pre-formed soil-cement columns, 24mm in diameter and 200mm in length, were installed in a soft clay bed using a replacement method; the columns represented improvement area ratios, a(p), of 17%, 26%, and 35% beneath a rigid foundation of width 100mm. Particle Image Velocimetry (PIV) was implemented in conjunction with close-range photogrammetry in order to track soil displacement during loading, from which the failure mechanisms were derived. Bearing capacity performance was verified using Ultimate Limit State numerical analysis, with the results comparing favorably to the analytical static and kinematic solutions proposed by previous researchers. A new equation for bearing capacity was derived from this numerical analysis based on the improvement area ratio and cohesion ratio of the soil column and ground model.
机译:本文报道了一系列小规模,平面应变,1g物理模型测试,旨在研究通过深层混合(DM)形成的端承式水泥砂浆柱的承载力和破坏机理。使用替换方法将直径为24mm,长度为200mm的预制水泥土柱安装在软粘土床中。在宽度为100mm的刚性基础下,圆柱表示的改进面积比a(p)为17%,26%和35%。粒子图像测速(PIV)与近距离摄影测量法结合使用,目的是跟踪加载过程中的土壤位移,从中得出破坏机理。极限极限状态数值分析验证了轴承的性能,其结果与先前研究人员提出的静态和运动学解析方法相比具有优势。基于土柱和地基模型的改进的面积比和内聚比,从该数值分析中得出了一个新的承载力方程。

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