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Dynamic Characteristics of Saturated Silty Soil Ground Treated by Stone Column Composite Foundation

机译:石柱复合地基处理饱和粉质土的动力特性

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摘要

A shaking table model test was carried out to develop an understanding of the performance improvement of saturated silty soil ground using stone column composite foundation as reinforcement. It is found that at less than 0.161 g loading acceleration, soil between piles has not yet been liquefied, the response acceleration scarcely enlarges, and the shear displacement almost does not appear in silty soil. At 0.252 g loading acceleration, as a result of liquefaction of soil between piles, the response acceleration increases rapidly and reaches its peak, and the shear displacement of silty soil increases significantly. At 0.325 g loading acceleration, the integral rigidity of foundation decreases greatly, which reduces its capability of vibration transmission and result in the response acceleration amplification coefficient is less than that at the former loading acceleration, but the shear displacement of silty soil further increases. The stone column composite foundation can greatly reduce both the shear displacement and the settlement of ground compared with untreated foundation. Under the condition of 7-degree seismic fortification, the design meets seismic resistance requirements.
机译:进行了振动台模型试验,以了解使用石柱复合地基作为加固物的饱和粉质土壤地基性能改进的认识。结果表明,在小于0.161μg的荷载加速度下,桩间土尚未液化,响应加速度几乎没有增大,粉质土中几乎没有出现剪切位移。在荷载加速度为0.252μg时,由于桩间土壤液化,响应加速度迅速增加并达到峰值,粉质土的剪切位移也显着增加。在0.325μg荷载加速度下,地基的整体刚度大大降低,降低了其传递振动的能力,导致响应加速度放大系数小于以前的荷载加速度,但粉质土的剪切位移进一步增大。与未经处理的地基相比,石柱复合地基可以大大减少剪切位移和地面沉降。在7度地震设防的条件下,设计满足抗震要求。

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