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Numerical Investigation of Soft Clayey Soil Improved by Soil-Cement Columns under Harmonic Load

机译:水泥土桩在谐波荷载作用下改善软土的数值研究

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Deep soil mixing is one of the improvement methods in geotechnical engineering which is widely used in soft soils. This article investigates the consolidation behavior of a soft clay soil which is improved by soil-cement column (SCC) by numerical modeling using Plaxis2D program. This behavior is simulated under vertical static and cyclic load which is applied on the soil surface. The static load problem is the simulation of a physical model test in an axisymmetric condition which uses a single SCC in the model center. The results of numerical modeling consist of settlement of soft soil composite, stress on soft soil and column, and excessive pore water pressure in the soil show a good correspondence with the test results. The response of soft soil composite to the cyclic load in vertical direction also compared with the static results. Also the effects of two variables namely the cement content used in a SCC and the area ratio (the ratio of the diameter of SCC to the diameter of composite soil model, a) is investigated. The results show that the stress on the column with the higher value of a, is lesser compared with the stress on other columns. Different rate of consolidation and excessive pore pressure distribution is observed in cyclic load problem. Also comparing the results of settlement of soil shows higher compressibility in the cyclic load problem.
机译:土层深层搅拌是岩土工程中的一种改良方法,广泛用于软土中。本文通过使用Plaxis2D程序进行数值模拟,研究了软土的固结特性,该固结特性通过土壤水泥柱(SCC)进行了改进。这种行为是在施加于土壤表面的垂直静态和循环载荷下模拟的。静态载荷问题是在轴对称条件下对物理模型测试的仿真,该模型在模型中心使用单个SCC。数值模拟的结果包括软土复合材料的沉降,软土和圆柱体上的应力以及土壤中过高的孔隙水压力与试验结果具有很好的对应性。与静态结果相比,软土复合材料在垂直方向上对循环荷载的响应也有所不同。还研究了两个变量的影响,即SCC中使用的水泥含量和面积比(SCC的直径与复合土模型的直径之比,a)。结果表明,与其他列的应力相比,a值较高的列的应力较小。在循环荷载问题中观察到不同的固结速率和过多的孔隙压力分布。同样,比较土壤沉降的结果表明,在循环荷载问题中具有更高的可压缩性。

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