Water-rock interaction-induced degradation of Jinping marble in in-situ environments: A multi-scale analysis of mechanical behavior

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.2024.106011
Chendi Lou , Ru Zhang , Zetian Zhang , Li Ren , Jing Xie , Kun Xiao , Mingchuan Li , Jifang Zhou , Anlin Zhang
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Abstract

In deep engineering practices, surrounding rocks are often subjected to long-term interactions between high pore pressure and high geostress environments, necessitating a thorough understanding of water-rock coupling effect under in-situ conditions. This study investigates these interactions by replicating the deep, high-pressure environment of China Jinping Underground Laboratory (CJPL) through a specially designed high-pressure water-rock coupling apparatus. The research focuses on Jinping marble, conducting in-situ stress saturation treatments under varying solvent pH conditions (7, 8, and 9) and exposure durations (1 d, 23 d, 60 d, and 100 d) at a simulated depth of 2400 m. Extensive macroscopic and microscopic mechanical tests on the treated samples reveal significant time-dependent degradation in key mechanical parameters, including fracture toughness, hardness, and deformation modulus, with the initial decline being more rapid. The fracture surfaces of rock samples treated with pressurized saturation predominantly exhibit transgranular fractures, with intergranular fractures as secondary features. The observed water-rock coupling effects arise from both physical and chemical mechanisms. Notably, within the pH range of 7–9, rock samples treated with a neutral solvent show a more pronounced deterioration trend compared to those treated with an alkaline solvent. Complementary in-situ water analysis from Jinping Mountain further indicates that high confining pressure substantially restricts water infiltration in deep environments. These insights advance the theoretical foundation for safe and effective deep engineering practices.
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在深部工程实践中,围岩经常受到高孔隙压力和高地应力环境的长期相互作用,需要深入了解原位条件下的水岩耦合效应。​​对处理后的试样进行的大量宏观和微观力学试验表明,断裂韧性、硬度和变形模量等关键力学参数的退化具有明显的时间依赖性,且初期下降更为迅速。经加压饱和处理的岩样裂缝表面以穿晶裂缝为主,粒间裂缝次之。所观察到的水岩耦合效应有物理机制和化学机制。值得注意的是,在pH值为7 ~ 9的范围内,中性溶剂处理的岩石样品比碱性溶剂处理的岩石样品表现出更明显的变质趋势。​这些见解为安全有效的深层工程实践提供了理论基础。
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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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