Settlement Analysis of a Sandy Clay Soil Reinforced with Stone Columns

IF 0.7 Q4 MECHANICS Studia Geotechnica et Mechanica Pub Date : 2022-11-06 DOI:10.2478/sgem-2022-0020
Y. Boru, Adamu Beyene Negesa, G. Scaringi, W. Puła
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引用次数: 5

Abstract

Abstract Mat foundations are most typically used in locations featuring weak soils such as soft clays and silts, particularly when building in demanding geotechnical conditions. Because of their poor engineering characteristics and significant difficulties associated with workability, these soils are often removed or avoided by excavating down to a specific depth. However, if thick layers are present, their removal becomes unpractical, costly, and creates inconvenience during construction. To overcome this issue, various reinforcement strategies can be adopted. In this study, the use of stone columns under mat foundations was investigated via numerical modeling. Two scenarios were compared: one in which stone columns were installed without any soil removal and another in which a layer of soft ground was removed and the foundation was installed without any ground treatment. Numerical results showed the clear beneficial effect of stone columns, which can significantly reduce settlements even in the presence of a thick deformable soil layer.
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碎石桩加固砂土的沉降分析
摘要垫基最常用于软粘土和淤泥等软土地区,尤其是在要求苛刻的岩土条件下建造时。由于其较差的工程特性和与可操作性相关的重大困难,这些土壤通常通过挖掘到特定深度来清除或避免。然而,如果存在厚层,则去除它们将变得不切实际,成本高昂,并在施工过程中造成不便。为了克服这个问题,可以采取各种强化策略。在本研究中,通过数值模拟研究了在垫基下使用立柱的情况。比较了两种情况:一种是在没有任何土壤清除的情况下安装立柱,另一种是拆除一层软土,在没有任何地面处理的情况下进行基础安装。数值结果表明,即使在存在较厚的可变形土层的情况下,立柱也能显著减少沉降,具有明显的有益效果。
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来源期刊
CiteScore
1.30
自引率
16.70%
发文量
20
审稿时长
16 weeks
期刊介绍: An international journal ‘Studia Geotechnica et Mechanica’ covers new developments in the broad areas of geomechanics as well as structural mechanics. The journal welcomes contributions dealing with original theoretical, numerical as well as experimental work. The following topics are of special interest: Constitutive relations for geomaterials (soils, rocks, concrete, etc.) Modeling of mechanical behaviour of heterogeneous materials at different scales Analysis of coupled thermo-hydro-chemo-mechanical problems Modeling of instabilities and localized deformation Experimental investigations of material properties at different scales Numerical algorithms: formulation and performance Application of numerical techniques to analysis of problems involving foundations, underground structures, slopes and embankment Risk and reliability analysis Analysis of concrete and masonry structures Modeling of case histories
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