One-dimensional compression creep change under temperature and suction effects

IF 2.3 Q2 ENGINEERING, GEOLOGICAL International Journal of Geotechnical Engineering Pub Date : 2022-01-13 DOI:10.1080/19386362.2021.2025306
Hachimi Dahhaoui, N. Belayachi, Abdeldjalil Zadjaoui, T. Nishimura
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Abstract

ABSTRACT The impact of temperature and unsaturation on the creep behaviour of bentonite is an important topic for environmental geotechnics as in the case of waste storage and energy geostructures. This paper presents an experimental study on the one-dimensional creep of Maghnia bentonite (MB), using two high-pressure oedometer cells, allowing to impose temperature and suction conditions for an unsaturated medium . The characteristics of these two cells and the protocol developed in the framework of this experimental study are briefly presented. The findings highlight a new perspective on the hypothesis (A) which distinguishes between primary and secondary consolidation, and hypothesis (B), which is governed by structural viscosity. The results indicated that the creep behaviour followed the principle of hypothesis (A) under temperature effect, while it followed hypothesis (B) principle under the suction effect. The void ratio variability under secondary compression depends not only on the vertical stress, but also on the temperature and the first load level . Moreover, as soil suction descreases, the normalized void ratio become higher. The creep coefficient (Cαe) increased as temperature and vertical stress increased, while they decreased as the suction increased.
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温度和吸力作用下的一维压缩蠕变变化
温度和不饱和对膨润土蠕变行为的影响是环境岩土工程的一个重要课题,如在废物储存和能源土工结构的情况下。本文提出了一项实验研究的Maghnia膨润土(MB)的一维蠕变,使用两个高压计细胞,允许施加温度和吸力条件的非饱和介质。简要介绍了这两种细胞的特点和在本实验研究框架内制定的方案。这些发现突出了对假设(a)和假设(B)的新观点,假设(a)区分了初级和次级固结,假设(B)由结构粘度控制。结果表明,温度作用下的蠕变行为遵循假设(A)原则,吸力作用下的蠕变行为遵循假设(B)原则。二次压缩下孔隙率的变化不仅与竖向应力有关,还与温度和第一次荷载水平有关。随着吸力的减小,归一化孔隙比增大。蠕变系数(Cαe)随温度和垂直应力的增大而增大,随吸力的增大而减小。
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来源期刊
CiteScore
5.30
自引率
5.30%
发文量
32
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