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首页> 外文期刊>European Journal of Environmental and Civil Engineering >Field measurements and back calculations of settlements of structures founded on improved soft soils by stone columns
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Field measurements and back calculations of settlements of structures founded on improved soft soils by stone columns

机译:石柱上改进软土的结构落场测量和后退计算

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The soft soil is extensively located in many areas of Bejaia region, Algeria, which usually have a low bearing capacity, high compressibility, insufficient strength and subject to the risk of liquefaction. Due to the ongoing increase in urban and industrial growth and the need for greater access to the lands, the unfavourable soil conditions require deep foundations or soil improvement. A lot of soil improvement methods have been used to deal with soft soil problems. Since 1999, one of the techniques extensively used in Harbour area of Bejaia is vibro replacement. A shallow raft foundation on stone columns was designed for a battery of 10 steel silos of grain storage. The project was put into operation in March 2006. The structure was instrumented from 2006 to 2012 for monitoring settlements and silo deformations. The measured settlements over seven years are analysed and discussed in this paper. Large settlements are measured. Some problems are observed on the foundation raft starting from a differential settlement of about 7 cm. The settlement evolution indicates that 50% of the total settlements are reached over the first 6 months of the structure exploitation. To compare the load-settlement behaviour prediction with the measurements, calculations are carried out by means of the three-dimensional and the two-dimensional geotechnical finite-element analyses.
机译:软土广泛地位于阿尔及利亚的Bejaia地区的许多领域,该地区通常具有低承载能力,高压缩性,强度不足,而受到液化风险的影响。由于城市和工业增长的持续增加,需要更多地进入土地,不利的土壤条件需要深层基础或土壤改善。已经使用了许多土壤改善方法来处理软土问题。自1999年以来,在Bejaia的港口地区广泛使用的技术之一是Vibro替代品。石柱上的浅层筏基础是专为谷物储存10钢筒仓的电池而设计的。该项目于2006年3月投入运营。该结构于2006年至2012年被检测,用于监测结算和筒仓变形。在本文中分析和讨论了7年超过七年的定居点。测量大型定居点。从大约7厘米的差动沉降开始,在基础筏上观察到一些问题。结算演变表明,在结构开采的前6个月内达到了50%的总沉淀。为了将负载结算行为预测与测量进行比较,通过三维和二维岩土工程有限元分析来执行计算。

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