首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Large-Strain Vacuum-Assisted Consolidation with Non-Darcian Radial Flow Incorporating Varying Permeability and Compressibility
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Large-Strain Vacuum-Assisted Consolidation with Non-Darcian Radial Flow Incorporating Varying Permeability and Compressibility

机译:大应变真空辅助固结并结合可变渗透率和可压缩性的非达拉斯径向流

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摘要

A numerical solution has been developed for large-strain consolidation incorporating non-Darcian (nonlinear) radial flow with varying compressibility and permeability coefficients. The solution can accommodate both conventional fill surcharge as well as vacuum preloading. The smear effect caused by mandrel-driven vertical drains is also captured in the analysis. The proposed model is verified by comparing it with FEM simulation, existing laboratory data, other existing theoretical solutions, and its advantage of capturing the multiple factors influencing radial drainage and consolidation is demonstrated. The effects of non-Darcian flow are found to be significant for obtaining an accurate solution, unlike numerous past solutions that are based on linear Darcy flow. The salient finding of this study is that the conventional small-strain theory can overestimate the rate of consolidation with radial drainage, especially for highly compressible soils such as estuarine clays under substantial preloading pressures. It is also found that a considerable difference (larger than 5%) between large-strain and small-strain solutions inevitably occurs once the vertical strain exceeds approximately 15%, which can be regarded as a threshold beyond which the large-strain analysis becomes increasingly important. The proposed model is applied to a case study at Ballina Bypass (NSW, Australia), where prefabricated vertical drains have been installed in soft estuarine clay subjected to a combination of fill surcharge and vacuum preloading.
机译:对于大应变固结,已经开发了一种数值解决方案,该方案结合了具有可变压缩率和渗透系数的非达西(非线性)径向流。该解决方案既可以容纳传统的填充附加费,又可以容纳真空预加载。分析还捕获了由心轴驱动的垂直排水口引起的拖影效应。通过与有限元模拟,现有实验室数据,其他现有理论解决方案进行比较,对所提出的模型进行了验证,并证明了其在捕获影响径向排水和固结的多个因素方面的优势。与过去基于线性达西流的众多解决方案不同,发现非达西流对获得精确解具有重要意义。这项研究的显着发现是,传统的小应变理论可以高估径向排水的固结速率,特别是对于高度可压缩的土壤,例如在很大的预紧压力下的河口粘土。还发现,一旦垂直应变超过大约15%,大应变解决方案和小应变解决方案之间不可避免地会出现相当大的差异(大于5%),这可以看作是一个阈值,超过此阈值,大应变分析变得越来越多重要。拟议中的模型应用于在Ballina Bypass(澳大利亚新南威尔士州)的案例研究中,预制的垂直排水装置已安装在软质河口粘土中,经过填充超载和真空预压的组合。

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