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Numerical modeling of vacuum preloading and field applications

机译:真空预压和现场应用的数值模拟

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This study describes the effect of unsaturation at a drain boundary on the behaviour of a single prefabricated vertical drain subjected to vacuum preloading based on a two-dimensional plane strain finite element model incorporating the modified Cam-Clay model. Unsaturation of soil adjacent to the drain can occur due to mandrel withdrawal or application of vacuum pressure through prefabricated vertical band drains (PVDs). Following initial laboratory simulation in a large-scale radial drainage consolidometer, the authors have attempted to explain the observed retardation of pore pressure dissipation through a series of models, which consider the effect of unsaturation at the drain-soil interface. The results indicate that the introduction of an unsaturated soil layer adjacent to a PVD improves the accuracy of numerical predictions. Lastly, a multidrain analysis is conducted to study the behaviour of an embankment stabilized with vertical drains subjected to vacuum preloading, and the field measurements are compared with a series of numerical model predictions.
机译:这项研究基于二维平面应变有限元模型并结合了改进的Cam-Clay模型,描述了在排水边界处的不饱和度对单个预制垂直排水进行真空预压的行为的影响。由于心轴抽出或通过预制的垂直带状排水管(PVD)施加真空压力,可能导致排水管附近的土壤不饱和。在大型径向排水固结仪上进行了初步的实验室模拟之后,作者试图通过一系列模型来解释观察到的孔隙压力耗散的延迟,该模型考虑了排水-土壤界面处的不饱和作用。结果表明,在PVD附近引入非饱和土层可提高数值预测的准确性。最后,进行了多排水分析,以研究受真空预压的垂直排水稳定的路堤的性能,并将现场测量结果与一系列数值模型预测进行比较。

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