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Non-linear Analysis of Soft Ground Consolidation at the Ballina By-pass

机译:Ballina旁通的软面整合非线性分析

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This study presents a numerical assessment of consolidation under vacuum preloading with a system of vertical drains and membrane, considering the non-linear properties of the soil This membrane system, already widely used in Australia, is where an airtight membrane is placed over the drainage layer to allow a vacuum to be distributed within the sand platform, along the surface of the soil, and down the vertical drains. To date, there have only been a few fundamental investigations and field studies that have tried to assess the way in which the vacuum can propagate in soft clay, both laterally and vertically. In this model, both vertical and horizontal drainage was considered to reflect more realistic in-situ conditions. Moreover, the change of compressibility and permeability during consolidation was taken into consideration, including a possible loss of vacuum along the length of the drain. This model was initially verified for a single drain using large scale laboratory testing, and subsequently applied to a fully instrumented case study, namely the Ballina Bypass (along the Pacific Highway, NSW). The numerical solutions capturing the lateral distribution of the vacuum provided accurate predictions of the pore water pressure and associated settlement.
机译:本研究提出了在真空预载下整合的数值评估,其具有垂直排水和膜系统,考虑到澳大利亚广泛使用的土壤的非线性性质,是气密膜放置在排水层上的情况下为了允许真空分布在砂平台内,沿着土壤的表面分布,沿着垂直排水管。迄今为止,只有一些基本的调查和实地研究试图评估真空可以在软粘土中传播的方式,横向和垂直。在该模型中,垂直和水平排水都被认为是反映更现实的原位状况。此外,考虑了固结期间可压缩性和渗透性的变化,包括沿漏极长度的可能损失真空。最初使用大规模实验室检测的单排水管验证了该模型,随后应用于完全仪表的案例研究,即Ballina Bypass(沿太平洋高速公路,NSW)。捕获真空横向分布的数值溶液提供了对孔隙水压力和相关沉降的精确预测。

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