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Effect of Vibro Stone-Column Installation on the Performance of Reinforced Soil

机译:振动石柱安装对加筋土性能的影响

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Empirical design methods for stone-column foundations are often on single stone columns or as a homogeneous medium of soil and column. These methods underestimate the capacity of the composite system because they do not take into account the increased confining stress acting on the stone column or the increased stiffness of the soil. This study used PLAXIS 2D to study the effect of the installation method on the confining pressure and soil stiffness around a single column by assuming the installation of the column could be modeled as an expanding cavity followed by consolidation of the surrounding soil. The mean stress and stiffness generated during installation between two adjacent columns was used in PLAXIS 3D to compare the settlement of circular foundations on estuarine deposits reinforced by stone columns at a site in Santa Barbara, California. Good agreement was found between the predicted and actual settlement of the trial foundations on three column arrangements. The predictions gave a better estimate of the settlement compared with those using a unit cell or homogeneous medium, showing that improvements to the soil should be taken into account when assessing stone-column performance.
机译:石柱基础的经验设计方法通常是在单个石柱上或作为土壤和柱的均质介质。这些方法低估了复合系统的能力,因为它们没有考虑作用在石柱上的限制应力的增加或土壤硬度的增加。这项研究使用PLAXIS 2D来研究安装方法对单根柱子的围压和土壤刚度的影响,方法是假设可以将柱子的安装模型化为扩张的空腔,然后固结周围的土壤。在PLAXIS 3D中,使用了两个相邻柱之间的安装过程中产生的平均应力和刚度,比较了加利福尼亚州圣塔芭芭拉的一个站点上由石柱加固的河口沉积物上圆形基础的沉降。在三栏的安排上,试验基金会的预计和实际解决方案之间达成了良好的协议。与使用单元池或均质介质的预测相比,这些预测对沉降有更好的估计,表明在评估石柱性能时应考虑对土壤的改良。

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