Strength changes associated with water transport in unsaturated tuff during drying

IF 7 1区 工程技术 Q1 ENGINEERING, GEOLOGICAL International Journal of Rock Mechanics and Mining Sciences Pub Date : 2025-02-01 DOI:10.1016/j.ijrmms.2024.105984
Yota Togashi , Haruhiko Kotabe , Masahiko Osada , Shingo Asamoto , Ken Hatakeyama
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Abstract

The impact of water content on the strength of sedimentary rocks is a critical area of research, particularly in the contexts of disaster prevention and the construction of underground structures. Despite numerous factors being identified as contributors to the strength variations in sedimentary rocks caused by water content, a comprehensive understanding remains elusive. Moreover, only a limited number of cases have been discussed on strength changes in these rocks during water transport processes. In this study, one-dimensional water transport experiments were conducted during the drying process on Neogene tuff samples from Japan. The experiments focused on the unsaturated permeation of the porous media and analyzed the variations in advection and diffusion terms relative to saturation changes at multiple points. During the drying process, water transfer occurred primarily through diffusion, although advection was significant in the early stages to equilibrate the hydraulic head at the center of the specimen. Furthermore, the same tuff samples, with adjusted water content during the drying process, were tested using Brazilian and uniaxial compression methods to examine the variations in strength properties owing to the variations in water content. By comparing these results with the water transport data, we observed that significant alterations in strength occurred after the convergence of the advection term. It was shown for the first time that the decrease in strength of tuff occurs only during the water diffusion phase. These results are expected to be applied to more accurate evaluation of rock mass stability and advanced numerical analysis.
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非饱和凝灰岩干燥过程中水输运的强度变化
水含量对沉积岩强度的影响是一个重要的研究领域,特别是在灾害预防和地下结构建设方面。尽管有许多因素被确定为沉积岩中由含水量引起的强度变化的贡献者,但全面的理解仍然是难以捉摸的。此外,对这些岩石在水运过程中强度变化的研究还比较有限。本研究对日本新近系凝灰岩样品进行了干燥过程中的一维水输运实验。实验重点研究了多孔介质的非饱和渗透,分析了多点上平流项和扩散项相对于饱和度变化的变化。在干燥过程中,水主要通过扩散进行传递,尽管平流在早期阶段很重要,以平衡试件中心的水头。此外,同样的凝灰岩样品,在干燥过程中调整含水量,使用巴西和单轴压缩方法进行测试,以检查由于含水量变化而导致的强度特性变化。将这些结果与水运资料进行比较,我们观察到平流项辐合后强度发生了显著变化。首次表明凝灰岩强度的降低只发生在水扩散阶段。这些结果有望应用于更准确的岩体稳定性评价和高级数值分析。
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来源期刊
CiteScore
14.00
自引率
5.60%
发文量
196
审稿时长
18 weeks
期刊介绍: The International Journal of Rock Mechanics and Mining Sciences focuses on original research, new developments, site measurements, and case studies within the fields of rock mechanics and rock engineering. Serving as an international platform, it showcases high-quality papers addressing rock mechanics and the application of its principles and techniques in mining and civil engineering projects situated on or within rock masses. These projects encompass a wide range, including slopes, open-pit mines, quarries, shafts, tunnels, caverns, underground mines, metro systems, dams, hydro-electric stations, geothermal energy, petroleum engineering, and radioactive waste disposal. The journal welcomes submissions on various topics, with particular interest in theoretical advancements, analytical and numerical methods, rock testing, site investigation, and case studies.
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