用 MICP 方法改良膨胀土的蠕变和长期强度特性的试验研究

IF 1.827 Q2 Earth and Planetary Sciences
Xuwen Tian, Hongbin Xiao, Hunayu Su, Qianwen Ouyang
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引用次数: 0

摘要

微生物诱导碳酸盐沉淀(MICP)是改善岩土工程材料性能的一种很有前途的方法。然而,有关经 MICP 处理的膨胀土的蠕变行为和长期强度的研究却很少。因此,本研究进行了三轴固结排水蠕变试验,以研究 MICP 对膨胀土蠕变行为和长期强度的改善效果。结果表明,随着偏差应力的增加,MICP 处理过的膨胀土的蠕变过程包括四个阶段:瞬时蠕变、减速蠕变、稳态蠕变和加速蠕变。根据蠕变试验结果,提出了一种计算方法,以快速准确地确定 MICP 处理膨胀土的长期抗剪强度。在不同的约束压力条件下,改良膨胀土的长期抗剪强度显著提高,表明 MICP 方法能有效提高膨胀土的长期抗剪强度。此外,MICP 改良膨胀土的长期内聚力和长期内摩擦角都略有降低,长期抗剪强度约为短期抗剪强度的 65% 至 70%。这项研究证实了 MICP 方法对抑制膨胀土蠕变和提高其长期强度的积极作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Experimental study on creep and long-term strength characteristics of expansive soil improved by the MICP method

Experimental study on creep and long-term strength characteristics of expansive soil improved by the MICP method

Microbial-induced carbonate precipitation (MICP) is a promising method for improving the properties of geotechnical engineering materials. However, little research has been conducted on the creep behavior and long-term strength of MICP-treated expansive soil. Therefore, this study performed triaxial consolidated undrained creep tests to investigate the improvement effect of MICP on the creep behavior and long-term strength of expansive soil. The results indicate that with the increase of deviatoric stress, the creep process of MICP-treated expansive soil includes four stages: instantaneous creep, decelerating creep, steady-state creep, and accelerated creep. Based on the creep test results, a calculation method has been proposed to quickly and accurately determine the long-term shear strength of MICP-treated expansive soil. Under different confining pressure conditions, the long-term shear strength of the improved expansive soil has been significantly increased, indicating that the MICP method can effectively enhance the long-term shear strength of expansive soil. Furthermore, both the long-term cohesion and the long-term internal friction angle of the MICP-improved expansive soil have been slightly reduced, with the long-term shear strength being approximately 65 to 70% of the short-term shear strength. This study confirms the positive effects of the MICP method on inhibiting the creep of expansive soil and enhancing its long-term strength.

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来源期刊
Arabian Journal of Geosciences
Arabian Journal of Geosciences GEOSCIENCES, MULTIDISCIPLINARY-
自引率
0.00%
发文量
1587
审稿时长
6.7 months
期刊介绍: The Arabian Journal of Geosciences is the official journal of the Saudi Society for Geosciences and publishes peer-reviewed original and review articles on the entire range of Earth Science themes, focused on, but not limited to, those that have regional significance to the Middle East and the Euro-Mediterranean Zone. Key topics therefore include; geology, hydrogeology, earth system science, petroleum sciences, geophysics, seismology and crustal structures, tectonics, sedimentology, palaeontology, metamorphic and igneous petrology, natural hazards, environmental sciences and sustainable development, geoarchaeology, geomorphology, paleo-environment studies, oceanography, atmospheric sciences, GIS and remote sensing, geodesy, mineralogy, volcanology, geochemistry and metallogenesis.
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