Physical properties evolution and microscopic mechanisms of granite modified by thermal and chemical stimulation
作者:Jiliang Pan, Xun Xi, Xu Wu, Qifeng Guo, Fenhua Ren, Meifeng Cai · 发表于:Case Studies in Thermal Engineering · 年份:2022 · DOI:10.1016/j.csite.2022.102633 · 被引用次数:29 · 研究领域:Geothermal Energy Systems and Applications、Rock Mechanics and Modeling、Hydraulic Fracturing and Reservoir Analysis
Geothermal reservoirs are reformed by thermal and chemical stimulation combined with hydrofracture, which is more effective in forming artificial fracture networks. It is critical for the efficient development of geothermal resources to understand the changes in the physical properties of hot dry rock (HDR) during reservoir reconstruction. Granite samples subjected to thermal stimulation at different temperatures are conducted with static immersion tests of different chemical solutions for 48 days to study the effects of thermal and chemical stimulation on HDR. P-wave velocities, porosity, and thermophysical parameters (thermal conductivity and thermal diffusivity) of thermal-chemical-modified granite are measured by ultrasonic testing (UT), nuclear magnetic resonance (NMR), and transient plane source (TPS), respectively. The effects of different heat-treatment temperatures and chemical solutions on the physical properties of granites are studied. After that, the functional relationship between the physical parameters and heat-treatment temperature is quantitatively characterized, and the correlation between the different physical parameters is analyzed. The thermal and chemical damage mechanisms of granite are revealed from its physical properties, pore structures, and mineral compositions. Results showed that thermal stimulation is more likely to change the physical properties of granites than chemical stimulation, and the physical properties significantly changed at a temp...