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Seismic bearing capacity of shallow footings on cementimproved soils

机译:水泥改良土壤上浅层地基的抗震能力

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摘要

A single rigid footing constructed on sandy-clay soil was modeled and analyzed using FLAC software under static conditions and vertical ground motion using three accelerograms. Dynamic analysis was repeated by changing the elastic and plastic parameters of the soil by changing the percentage of cement grouting (2, 4 and 6 %). The load-settlement curves were plotted and their bearing capacities compared under different conditions. Vertical settlement contours and time histories of settlement were plotted and analyzed for treated and untreated soil for the different percentages of cement. The results demonstrate that adding 2, 4 and 6 % of cement under specific conditions increased the dynamic bearing capacity 2.7, 4.2 and 7.0 times, respectively.
机译:使用FLAC软件在静态条件下和垂直地震动下使用三个加速度图对在沙质粘土上构造的单个刚性基础进行建模和分析。通过改变水泥灌浆的百分比(2%,4%和6%)来改变土壤的弹性和塑性参数,从而重复进行动态分析。绘制了载荷-沉降曲线,并比较了它们在不同条件下的承载能力。绘制了垂直沉降等高线和沉降的时间历程,并分析了不同百分比水泥对已处理和未处理土壤的影响。结果表明,在特定条件下添加2%,4%和6%的水泥,动态承载能力分别提高了2.7倍,4.2倍和7.0倍。

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