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杨欣欣, 郤保平, 何水鑫, 董赟盛, 辛国旭. 砂岩热冲击破裂特征及其孔隙连通性分析[J]. 岩土工程学报, 2022, 44(10): 1925-1934. DOI: 10.11779/CJGE202210019
引用本文: 杨欣欣, 郤保平, 何水鑫, 董赟盛, 辛国旭. 砂岩热冲击破裂特征及其孔隙连通性分析[J]. 岩土工程学报, 2022, 44(10): 1925-1934. DOI: 10.11779/CJGE202210019
YANG Xin-xin, XI Bao-ping, HE Shui-xin, DONG Yun-sheng, XIN Guo-xu. Fracture characteristics and pore connectivity of sandstone under thermal shock[J]. Chinese Journal of Geotechnical Engineering, 2022, 44(10): 1925-1934. DOI: 10.11779/CJGE202210019
Citation: YANG Xin-xin, XI Bao-ping, HE Shui-xin, DONG Yun-sheng, XIN Guo-xu. Fracture characteristics and pore connectivity of sandstone under thermal shock[J]. Chinese Journal of Geotechnical Engineering, 2022, 44(10): 1925-1934. DOI: 10.11779/CJGE202210019

砂岩热冲击破裂特征及其孔隙连通性分析

Fracture characteristics and pore connectivity of sandstone under thermal shock

  • 摘要: 为研究高温砂岩在水中热冲击冷却后的破裂特征及损伤规律,利用显微CT技术,对600℃的高温砂岩在不同温度水中热冲击冷却后孔隙的细观结构特征进行了分析。对冷却介质温度与孔隙发育特征之间关系进行分析,并对孔隙分形维数的变化趋势进行研究,研究结果表明:高温砂岩热冲击处理后,萌生大量孔、裂隙,孔隙间较脆弱的地方产生喉道,并逐渐发育扩展,同时孔隙发育扩大,最终大量孔隙连通形成连通团。随着冷却介质温度的降低,生成的连通团体积增大,砂岩渗透率增大,破坏程度增强。砂岩孔隙体积分数与分形维数线性正相关,孔隙体积分数越大,分形维数越大,砂岩损伤越严重,分形维数可用于表征其损伤程度。600℃高温花岗岩、石灰岩、砂岩在水中热冲击冷却后的孔隙、裂隙发育特征具有较大差异。花岗岩表现为明显的脆性断裂,砂岩孔隙发育明显,石灰岩萌生孔隙的同时有裂隙发育。

     

    Abstract: To study the fracture characteristics and damage laws of high-temperature sandstone under thermal shock in water after cooling, the micro-CT technique is used to analyze the meso-pore cracks of sandstone at 600℃ under thermal shock after cooling in water at different temperatures. The relationship between the temperature of cooling medium and the pore development is analyzed, and the developing trend of fractal dimension of the pores is investigated. The results show that after the thermal shock treatment of high-temperature sandstone, a large number of new pores sprout, and the throat is generated in the fragile place between the pores and gradually develops and expands. Eventually, a large number of pores are connected to form pore clusters. With the decrease of the temperature of the cooling medium, the volume of the connected clusters increases, the permeability increases, and the damage degree increases. The volume fraction of the pores of sandstone is linearly and positively correlated with the fractal dimension. The larger the volume fraction of the pores, the larger the fractal dimension, and the more severe the damage of sandstone. The fractal dimension can be used to characterize the damage degree of sandstone. The pores and fracture characteristics of granite, limestone and sandstone at 600℃ are quite different under thermal shock after cooling in water. The granite is characterized by obvious brittle fracture, for the sandstone, the pore development is obvious, and for the limestone, there are pores and fractures.

     

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