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Ground improvement of soft soil by geotextile-encased columns

机译:土工织物包裹柱对软土地基的改良

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This paper compares the field response of two test embankments constructed on similar soft soil deposits. The un-strengthened foundation had vertical drains underneath the embankment and the strengthened foundation had geotextile-encased granular columns, both provided with basal geogrid reinforcement. The effectiveness of the encased granular columns was assessed by comparing the settlement below the embankments, the horizontal displacement of the soft foundation and the excess pore pressures in the middle of the soft clay layer. The results showed that the granular encased columns significantly reduced the maximum settlement occurring below the embankment as well as the maximum horizontal displacement in the clayey foundation. At the same settlement level, the load-carrying capacity of the strengthened foundation was found to increase by as much as around 2.5 times that of the un-strengthened one. It was also observed that the geotextile-encased granular columns caused a noticeable reduction in the maximum excess pore pressure following load application. Furthermore, the degree of consolidation achieved at the end of embankment construction was quite high when encased granular columns were used.
机译:本文比较了在相似的软土沉积物上建造的两个试验路堤的现场响应。未加固的地基在路堤下方有垂直排水孔,加固后的地基有土工布包裹的颗粒柱,均设有基础土工格栅加固。通过比较路堤下方的沉降,软土地基的水平位移和软粘土层中部的过大孔隙压力,评估了包裹颗粒柱的有效性。结果表明,粒状包裹柱显着减少了路堤下方的最大沉降以及黏性地基中的最大水平位移。在相同的沉降水平下,发现加固后的基础的承载能力增加了未加固基础的约2.5倍。还观察到,土工布包裹的颗粒柱在施加载荷后引起最大过大孔隙压力的明显降低。此外,当使用封闭的颗粒柱时,在路堤施工结束时达到的固结度非常高。

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