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Physical Modeling of a Footing on Soft Soil Ground with Deep Cement Mixed Soil Columns under Vertical Loading

机译:竖向荷载下深水泥混合土桩在软土地基上的物理模拟

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Deep cement mixing (DCM) technique is a deep in-situ stabilization technique by mixing cement powder or slurry with soft soils below the ground surface to improve their properties and behavior. Some of DCM treated soft soil grounds are approximately in a plane-strain condition; for example, a fill embankment on DCM improved ground. In this study, a plane-strain physical model was created with instrumentation and used to investigate the bearing capacity and failure mode of a soft soil improved by an end-bearing DCM column group. This study focuses on the observed wedge-shaped shear failure of the model ground and attempts to give an account of the failure. Two different methods are used to calculate the bearing capacity of the model ground, and the computed values are compared with the measured ones. It is found that the simple Brom’s method gives a better estimate of the bearing capacity of the present model ground. It is also found that measured data of pore water pressures at different locations in the soft soil indicate coupling between failure of columns and consolidation of the soft soil. This study has presented the first time that a wedge-shaped block failure was observed for pattern of DCM treated soil ground.
机译:深层水泥搅拌(DCM)技术是一种深层原位稳定技术,通过将水泥粉末或浆液与地表以下的软土混合以改善其性能和性能。 DCM处理过的一些软土地基大约处于平面应变条件下。例如,DCM上的填筑路堤改善了地面。在这项研究中,使用仪器创建了平面应变物理模型,并将其用于研究采用端承式DCM柱组改善的软土的承载力和破坏模式。这项研究的重点是观察到的模型地面的楔形剪切破坏,并试图对破坏进行解释。两种不同的方法用于计算模型地基的承载力,并将计算值与实测值进行比较。发现简单的Brom方法可以更好地估算当前模型地面的承载力。还发现,在软土中不同位置的孔隙水压力的测量数据表明,柱破坏与软土固结之间存在耦合。这项研究首次提出了在DCM处理过的土壤地面上观察到楔形块状破坏。

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