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Modelling combined electroosmosis-vacuum-surcharge preloading consolidation considering large-scale deformation

机译:考虑大变形的电渗-真空-超载联合预压固结建模

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A numerical model, EC3, which was developed to simulate soil consolidation arising from the combined electroosmosis-vacuum-surcharge preloading processes, is presented. The EC3 model improves on its predecessor, model EC2, through incorporating the additional preloading element of vacuum and simulating the consolidation in three-dimensional (3D) space. In EC3, the 3D consolidation was simulated in polar coordinates, which allows for concurrent flows in the radial and vertical directions. The rates of the flows were formulated using the finite difference method. This method enables the model to approximate large-deformation consolidation where the deformation has yielded nonlinear changes in soil properties and nonlinear Darcy fluid flow. The performance of the model was validated against laboratory test results, and the model was applied to example problems in order to optimise the combined consolidation processes. The optimisation results suggested that the combined electroosmosis-vacuum-surcharge preloading process outperforms any two element combination processes with respect to the attained final soil layer settlement when the input parameters remain the same. The presence of a smear zone decreases the consolidation rate but increases the final settlement. The less permeable the smear zone is, the less the attained consolidation rate in the soil layer.
机译:提出了一个数值模型EC3,该模型用于模拟电渗-真空-超负荷联合预压过程引起的土壤固结。 EC3模型通过合并附加的真空预加载元素并模拟三维(3D)空间中的合并,对前身EC2模型进行了改进。在EC3中,在极坐标中模拟了3D固结,从而允许在径向和垂直方向上同时流动。流量的比率是使用有限差分法制定的。这种方法使模型能够近似大变形固结,其中变形导致土壤特性和非线性达西流体流动发生非线性变化。针对实验室测试结果验证了模型的性能,并将该模型应用于示例问题,以优化合并的合并流程。优化结果表明,在输入参数保持不变的情况下,电渗-真空-超负荷相结合的预加载过程在最终土壤层沉降方面要优于任何两个元素的组合过程。涂片区的存在会降低固结率,但会增加最终沉降量。涂片区的渗透性越差,在土壤层中达到的固结率越小。

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