玄武岩酸致裂缝及孔隙结构演化

IF 5.6 2区 工程技术 Q1 ENGINEERING, MECHANICAL
Shuxin Liu , Xiaofei Liu , Xiaoran Wang , Qiang Sun , Jinhua Wang , Jiaxin Shao , Joseph F. Labuz
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引用次数: 0

摘要

玄武岩已成为CCUS应用中原位矿物碳酸化的有前途的候选者。在玄武岩地层中发育裂缝和孔隙网络,通过增加反应表面积来促进二氧化碳与岩石的相互作用是至关重要的。研究了酸致弱作用对玄武岩裂缝扩展和孔隙结构演化的机理影响。在不同的pH条件下,结合声发射(AE)监测、核磁共振(NMR)、x射线衍射(XRD)和扫描电镜(SEM)等多尺度表征技术,进行了缺口半圆弯曲(NSCB)测试。结果表明:随着pH值的降低,玄武岩的弹性模量、峰值载荷和断裂韧性显著下降,断裂过程带长度增加;与此同时,声发射事件数量和能量释放增加,表明裂纹萌生时间提前,扩展速度加快。声发射响应表现出起跳早、累积能量高、中低频、高振幅信号明显增加的特点。此外,拉伸型裂缝的比例随着酸度的增加而增加。核磁共振结果表明,酸处理后,微孔和大孔体积均有显著增加。随着酸度的增加,声发射事件的时空分形维数以及全尺度孔隙分形维数普遍减小,反映了孔隙网络内部连通性增强。在较强的酸性条件下,这些尺寸略有增加,表明微裂纹和孔隙发育更为复杂和分散。全尺度孔隙分形维数与声发射事件的时空分形维数呈正相关。从工程角度来看,井下测井与地球物理监测的结合可以为实时储层评价提供有用的参考,有助于提高玄武岩地层的注入能力和二氧化碳封存效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Acid-Induced fracture and pore structure evolution in basalt
Basalt has emerged as a promising candidate for in-situ mineral carbonation in CCUS applications. Developing fracture and pore networks in basalt formations is crucial for facilitating CO2-rock interactions by increasing the reactive surface area. This study investigates the mechanistic effects of acid-induced weakening on fracture propagation and pore structure evolution in basalt. Notched semi-circular bend (NSCB) tests were conducted under various pH conditions, combined with multi-scale characterization techniques including acoustic emission (AE) monitoring, nuclear magnetic resonance (NMR), X-ray diffraction (XRD), and scanning electron microscopy (SEM). The results show that with decreasing pH, the elastic modulus, peak load, and fracture toughness of basalt significantly decline, while the length of the fracture process zone (FPZ) increases. Meanwhile, the number of AE events and associated energy release intensify, suggesting earlier crack initiation and more rapid propagation. AE responses exhibit earlier onset, higher cumulative energy, and a marked increase in mid-to-low frequency, high-amplitude signals. Additionally, the proportion of tensile mode fractures increases with increasing acidity. NMR results indicate substantial increases in both micro- and macropore volumes following acid treatment. As acidity increases, the spatial and temporal fractal dimensions of AE events, along with the full-scale pore fractal dimension, generally decrease, reflecting enhanced internal connectivity of the pore network. Under stronger acidic conditions, these dimensions increase slightly, implying the development of more complex and dispersed microcracks and pores. The full-scale pore fractal dimension is positively correlated with the spatial and temporal fractal dimensions of AE events. From an engineering perspective, the integration of downhole logging with geophysical monitoring may offer a useful reference for real-time reservoir evaluation, contributing to improved injectivity and CO2 sequestration efficiency in basalt formations.
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来源期刊
Theoretical and Applied Fracture Mechanics
Theoretical and Applied Fracture Mechanics 工程技术-工程:机械
CiteScore
8.40
自引率
18.90%
发文量
435
审稿时长
37 days
期刊介绍: Theoretical and Applied Fracture Mechanics'' aims & scopes have been re-designed to cover both the theoretical, applied, and numerical aspects associated with those cracking related phenomena taking place, at a micro-, meso-, and macroscopic level, in materials/components/structures of any kind. The journal aims to cover the cracking/mechanical behaviour of materials/components/structures in those situations involving both time-independent and time-dependent system of external forces/moments (such as, for instance, quasi-static, impulsive, impact, blasting, creep, contact, and fatigue loading). Since, under the above circumstances, the mechanical behaviour of cracked materials/components/structures is also affected by the environmental conditions, the journal would consider also those theoretical/experimental research works investigating the effect of external variables such as, for instance, the effect of corrosive environments as well as of high/low-temperature.
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