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Some Remarks on Practical Aspects of Laboratory Testing of Deep Soil Mixing Composites Achieved in Organic Soils

机译:有机土壤深土混合复合材料实验室检测实践方面的几点备注

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This paper presents the results of laboratory testing of organic soil-cement samples are presented in the paper. The research program continues previously reported the authors' experiences with cement-fly ash-soil sample testing. Over 100 of compression and a dozen of tension tests have been carried out altogether. Several samples were waiting for failure test for over one year after they were formed. Several factors, like: the large amount of the tested samples, a long observation time, carrying out the tests in complex cycles of loading and the possibility of registering the loads and deformation in the axial and lateral direction - have made it possible to take into consideration numerous interdependencies, three of which have been presented in this work: the increments of compression strength, the stiffness of soil-cement in relation to strength and the tensile strength. Compressive strength, elastic modulus and tensile resistance of cubic samples were examined. Samples were mixed and stored in the laboratory conditions. Further numerical analysis in the Finite Element Method numerical code Z_Soil, were performed on the basis of laboratory test results. Computations prove that cement-based stabilization of organic soil brings serious risks (in terms of material capacity and stiffness) and Deep Soil Mixing technology should not be recommended for achieving it. The numerical analysis presented in the study below includes only one type of organic and sandy soil and several possible geometric combinations. Despite that, it clearly points to the fact that designing the DSM columns in the organic soil may be linked with a considerable risk and the settlement may reach too high values. During in situ mixing, the organic material surrounded by sand layers surely mixes with one another in certain areas. However, it has not been examined and it is difficult to assume such mixing already at the designing stage. In case of designing the DSM columns which goes through a thin layer of organic soil it is recommended to carry out each time the core drilling which checks the degree of material mixing and their strength.
机译:本文介绍了有机土水泥样品的实验室测试的结果文件中提出。该研究计划继续先前报道的作者的水泥 - 粉煤灰 - 土壤样品的测试经验。过压缩和拉伸试验一打的100已被完全执行。几个样品等待故障测试超过一年,他们形成了。几个因素,如:大量的测试样品中,长的观察时间,执行在载荷的复杂循环测试和注册在轴向和横向上的载荷和变形的可能性 - 使得有可能考虑到考虑到众多的相互依赖关系,其中三个已经在这项工作中被提出:抗压强度,水泥土相对于强度和拉伸强度刚度的增量。抗压强度,弹性模量和立方体样品的耐拉伸性进行了研究。样品混合并存储在实验室条件。在有限元法的数值代码Z_Soil进一步的数值分析中,实验室测试结果的基础上进行的。计算证明有机土的,基于水泥稳定带来了不应该被推荐为实现它的严重风险(在物质能力和刚度方面)和深层土壤混合技术。下面在研究中提出的数值分析仅包括一种类型的有机和沙土和几个可能的几何组合。尽管如此,它清楚地表明了一个事实,即设计在有机土壤中的DSM列可能具有相当的风险联系起来,并解决可能达到过高的值。过程中原位混合,有机材料包围由砂层可靠地与在某些区域彼此混合。然而,它并没有被检查,所以很难在设计阶段已经承担此类混合。在设计其经过有机土的薄层的DSM列的情况下,建议每次进行岩心钻探,检查材料的混合和它们的强度的程度。

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