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首页> 外文期刊>International Journal of Geosynthetics and Ground Engineering >Deep Soil Mixing in Sabkha Soils for Foundation Support in United Arab Emirates
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Deep Soil Mixing in Sabkha Soils for Foundation Support in United Arab Emirates

机译:阿拉伯联合酋长国的萨布卡土壤深层土壤混合为基础提供支持

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摘要

An extensive experimental and numerical investigation was done on one of the first applications of wet deep soil mixing (DSM) in Sabkha soils in the United Arab Emirates (UAE). The aim was to increase the bearing capacity of a shallow foundation and to reduce the foundation settlement. In local geotechnical engineering practice Sabkha soils have been well known as a problematic soil (i.e., having larger fines content, higher sulfate and chloride contents, lower shear strength, and higher compressibility) compared to surficial sandy soils that prevail across the country. A mix of 30% Ordinary Portland Cement (OPC) and 70% of Ground Granulated Blast-furnace Slag (GGBS) was used as cementitious binder. The DSM design involved two steps: (1) soil-cement mix design that determines the design strength of soil-cement mixture; and (2) geotechnical design that determines suitable pattern of DSM columns. A numerical analysis using Plaxis 3D was also conducted to verify the geotechnical design which was done with a simple analytical method. To confirm the hypothesis made during design, especially the strength of soil-cement mix columns with Sabkha material, a trial test that consists of installation of four DSM columns in which fresh cube samples are taken and a real-scale zone load test was performed at the site location. All testing proved that the DSM design was satisfactory. The results confirmed that soil mixing is a proper technology to improve the strength of Sabkha soil in economical way considering also the time saving during execution.
机译:在阿拉伯联合酋长国(UAE)的Sabkha土壤中,湿深层土壤混合(DSM)的首次应用之一进行了广泛的实验和数值研究。目的是增加浅地基的承载力并减少地基沉降。与在全国范围内流行的沙质土壤相比,在当地的岩土工程实践中,沙伯土壤被公认为是有问题的土壤(即,具有较大的细粉含量,较高的硫酸盐和氯化物含量,较低的剪切强度和较高的可压缩性)。使用30%的普通硅酸盐水泥(OPC)和70%的磨碎高炉矿渣(GGBS)的混合物作为水泥粘结剂。 DSM设计包括两个步骤:(1)水泥土混合物设计,确定水泥土混合物的设计强度; (2)确定合适的DSM色谱柱样式的岩土设计。还使用Plaxis 3D进行了数值分析,以验证采用简单分析方法完成的岩土设计。为了确认设计过程中的假设,特别是使用Sabkha材料的水泥土混合料柱的强度,进行了一项试验测试,该试验包括安装四个DSM柱,在其中取样了新鲜的立方体样品,并在进行了真实的区域载荷试验。网站位置。所有测试均证明DSM设计令人满意。结果证实,考虑到执行过程中的时间节省,土壤混合是一种以经济的方式提高Sabkha土壤强度的合适技术。

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