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Analytical solutions for a single vertical drain with time-dependent vacuum combined surcharge preloading in membrane and membraneless systems

机译:膜和无膜系统中具有时间依赖的真空结合附加预载的单个垂直排水的解析解决方案

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摘要

Vertical drains combined with vacuum pressure and surcharge preloading are widely used to accelerate the consolidation process of soft clay in order to decrease the pore pressure as well as to increase the effective stress. Currently there are two types of vacuum preloading systems commercially available; (a) membrane system with an airtight membrane over the drainage layer and, (b) membraneless system where a vacuum system is connected to individual drain. Their effectiveness varies from site to site depending on the type of soil treated and the characteristics of the drain-vacuum system. This study presents the analytical solutions of vertical drains with vacuum preloading for both membrane and membraneless systems. According to the field and laboratory observations, the vacuum in both of the membraneless and membrane system was assumed to be decreasing along the drain whereas in the membrane system, it was maintained at a constant level. This model was verified by using the measured settlements and excess pore pressures obtained from large-scale laboratory testing and case studies in Australia. The analytical solutions improved the accuracy of predicting the dissipation of pore water pressure and the associated settlement. The effects of the permeability of the sand blanket in a membrane system and the possible loss of vacuum were also discussed.
机译:垂直排水结合真空压力和附加载荷预应力被广泛用于加速软粘土的固结过程,以降低孔隙压力并增加有效应力。当前,有两种类型的真空预加载系统可商购获得; (a)在排水层上具有气密膜的膜系统,以及(b)将真空系统连接到单个排水口的无膜系统。它们的有效性因处理的土壤类型和排水-真空系统的特性而异。这项研究为膜和无膜系统提供了带有真空预加载的垂直排水的解析解决方案。根据现场和实验室的观察,假设无膜和膜系统中的真空都沿着排水口降低,而在膜系统中,真空保持在恒定水平。通过使用在澳大利亚进行的大规模实验室测试和案例研究获得的测量沉降量和过大孔隙压力,验证了该模型。分析解决方案提高了预测孔隙水压力消散和相关沉降的准确性。还讨论了砂膜在膜系统中的渗透性和可能的​​真空损失的影响。

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