软土沉降C类预测的耦合效应

IF 5.6 1区 工程技术 Q1 ENGINEERING, GEOLOGICAL
Shan Huang, Jinsong Huang, Richard Kelly, Shui-Hua Jiang, Merrick Jonse, A. H. M. Kamruzzaman
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引用次数: 0

摘要

在非耦合固结分析中,沉降和孔隙水压力是独立求解的,而在耦合固结分析中,为了保证连续性,沉降和孔隙水压力是同时求解的(即土体因压缩引起的体积变化必须等于耗散引起的体积变化)。研究了软土沉降反分析中土体变形与孔隙水压力耗散的耦合效应。进一步评价了耦合和非耦合本构模型对不同类型监测数据的适用性,为选择固结模型和实现可靠的长期预测提供了实用指导。首先回顾了考虑预制垂直排水管和蠕变变形的软土固结一维控制方程。然后,以澳大利亚新南威尔士州巴利纳的试验路堤为例,展示了耦合效应和监测数据对沉降预测的影响。结果表明,考虑耦合效应不仅可以改善长期沉降预测,而且可以减少更新后的土壤参数中的不确定性,特别是当同时使用沉降和孔隙水压力数据时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coupling effects on class C predictions of soft soil settlements

In uncoupled consolidation analysis, settlement and pore water pressure are solved independently, whereas in coupled analysis, they are solved simultaneously to ensure continuity (i.e., the volume change in soil due to compression must equal the water volume change caused by dissipation). This study investigates the coupling effects of soil deformation and pore water pressure dissipation in the back analysis of soft soil settlements. It further evaluates the suitability of both coupled and uncoupled constitutive models with different types of monitoring data, providing practical guidance for selecting consolidation models and achieving reliable long-term predictions. The one-dimensional governing equations for soft soil consolidation, incorporating prefabricated vertical drains and creep deformation, are first reviewed. A case study of a trial embankment in Ballina, New South Wales, Australia, is then used to demonstrate the impact of coupling effects and monitoring data on settlement predictions. The results show that considering coupling effects not only improves long-term settlement predictions but also reduces uncertainties in the updated soil parameters, especially when both settlement and pore water pressure data are used.

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来源期刊
Acta Geotechnica
Acta Geotechnica ENGINEERING, GEOLOGICAL-
CiteScore
9.90
自引率
17.50%
发文量
297
审稿时长
4 months
期刊介绍: Acta Geotechnica is an international journal devoted to the publication and dissemination of basic and applied research in geoengineering – an interdisciplinary field dealing with geomaterials such as soils and rocks. Coverage emphasizes the interplay between geomechanical models and their engineering applications. The journal presents original research papers on fundamental concepts in geomechanics and their novel applications in geoengineering based on experimental, analytical and/or numerical approaches. The main purpose of the journal is to foster understanding of the fundamental mechanisms behind the phenomena and processes in geomaterials, from kilometer-scale problems as they occur in geoscience, and down to the nano-scale, with their potential impact on geoengineering. The journal strives to report and archive progress in the field in a timely manner, presenting research papers, review articles, short notes and letters to the editors.
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