3D simulations of deep mixed columns under road embankment

Q4 Engineering
A. Abed, L. Korkiala-Tanttu, J. Forsman, K. Koivisto
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引用次数: 1

Abstract

When column stabilisation is meant to function as a ground improvement under an embankment, the design cases to be considered consist of overall stability, compression resistance of the column heads, arching of the embankment on the columns and settlements. This paper focuses on the compression resistance of the columns. The proper geotechnical design of deep mixed (deep stabilised) columns under road embankment requires good estimation of the stress-strain behaviour of the columns and the surrounding soil under the embankment and traffic loading. Earlier Finnish design approaches relied on an even traffic load of 10 kN/m2 on the road surface. The dimensioning methods for column stabilised soil are also based on the idea of an even traffic load. Due to Eurocode recommendations a more realistic scenario is introduced, which remarkably increases the magnitude of the traffic loading. After deriving suitable material properties and stiffness parameters for static and dynamic traffic loading, three-dimensional finite element calculations are performed to achieve better understanding of the mechanical interaction between the embankment, columns and soil under the new loading configuration. Even though more investigations are needed before delivering a final statement, the calculations show that, for the considered case in this paper, the new loading scenario has no relevant consequences on the design compared to the earlier design approach.
路堤下深层混合柱的三维模拟
当立柱稳定旨在作为路堤下的地基改良时,应考虑的设计方案包括整体稳定性、柱头抗压性、立柱上路堤的拱起和沉降。本文主要研究柱的抗压性能。路堤下深层混合(深层稳定)柱的适当岩土工程设计需要对路堤下柱和周围土壤的应力-应变特性以及交通荷载进行良好的估计。芬兰早期的设计方法依赖于路面上10kN/m2的均匀交通荷载。柱稳定土的尺寸确定方法也基于均匀交通荷载的思想。根据欧洲规范的建议,引入了一种更现实的场景,这显著增加了交通负荷的大小。在推导出静态和动态交通荷载的合适材料特性和刚度参数后,进行了三维有限元计算,以更好地了解新荷载配置下路堤、立柱和土壤之间的机械相互作用。尽管在提交最终报表之前需要进行更多的调查,但计算表明,对于本文中考虑的情况,与早期的设计方法相比,新的荷载方案对设计没有相关影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Rakenteiden Mekaniikka
Rakenteiden Mekaniikka Engineering-Mechanical Engineering
CiteScore
0.50
自引率
0.00%
发文量
2
审稿时长
16 weeks
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