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Soft Clay Stabilization with Geosynthetic Vertical Drains beneath Road and Railway Embankments: A Critical Review of Analytical Solutions and Numerical Analysis

机译:道路和铁路路堤下地球合式垂直排水沟软粘土稳定:对分析解决方案的关键综述及数值分析

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In the wide array of existing ground improvement schemes, the use of vertical drains with vacuum preloading is considered as the most effective and economical method for improving soft clays (normally consolidated to lightly over-consolidated) prior to construction of infrastructure. Vertical drains installed to significant depths promote radial flow inducing consolidation rapidly enhancing the shear strength of the compressed ground. In this paper, the analytical solutions based on lateral soil permeability (parabolic variation) are discussed considering the variation of vacuum pressure with depth along the prefabricated vertical drains (PVD). Using the Cavity Expansion Theory (CET), the smear zone caused by the installation of PVD by steal mandrel was predicted and compared with laboratory measurements obtained from large-scale radial consolidation tests. The effects of drain unsaturation and vacuum pressure along the drain length are also discussed. The numerical analyses incorporating equivalent plane strain solutions were performed to predict the soil responses based on two selected case histories in Thailand. The research findings provided insight as to which of the above aspects needed to be simulated accurately in numerical modelling. The application of cyclic loading on PVD stabilized ground was also examined using a finite element approach under railway embankment.
机译:在各种现有地面改进方案中,使用真空预加载的垂直排水管的使用被认为是改善基础设施之前改善软粘土(通常巩固到轻微巩固)的最有效和经济的方法。垂直漏极安装在显着深度深度促进径向流动诱导整合迅速增强压缩地的剪切强度。在本文中,讨论了基于横向土壤渗透率(抛物型变化)的分析溶液,考虑到沿预制垂直漏极(PVD)的深度的真空压力的变化。使用腔扩展理论(CET),预测由窃取心轴安装PVD引起的涂抹区,并与从大规模的径向固结试验中获得的实验室测量相比。还讨论了沿漏极长度的排出不饱和度和真空压力的影响。进行了掺入等效平面应变溶液的数值分析,以预测泰国两种选定案例历史的土壤反应。研究结果提供了最重要的是,在数值建模中准确地模拟上述方面中的哪个方面。还在铁路路堤下的有限元方法检查了循环载荷对PVD稳定地的应用。

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