期刊论文详细信息
Frontiers in Earth Science
Mechanical properties and acoustic emission evolution of water-bearing sandstone under triaxial conditions
Earth Science
Xiujie Wei1  Lixin Zhang1  Guangchao Liu1  Yin Zhang2 
[1] Collage of Mining, Liaoning Technical University, Fuxin, China;School of Mechanics and Engineering, Liaoning Technical University, Fuxin, China;
关键词: triaxial stress;    water-bearing rock;    acoustic emission;    mechanical properties;    numerical calculation;   
DOI  :  10.3389/feart.2023.1212095
 received in 2023-04-25, accepted in 2023-07-17,  发布年份 2023
来源: Frontiers
PDF
【 摘 要 】

Accidents occur frequently in underground chambers owing to the high-stress environment, poor stability of rocks, and unreasonable mining and construction layout. Significant damage to the deep surrounding rock mass by confined water can result in water inrush and flooding accidents. This study numerically investigated the mechanical properties and acoustic emission (AE) signal evolution mechanism of water-bearing sandstone in deep high-stress mining environments. The results showed that, the lower the confining pressure, the lower is the compressive strength of the specimen, resulting in evident failure. The confining pressure inhibited the radial strain and enhanced the strength of the specimen. Furthermore, under the same confining pressure and different water pressure, the higher the water pressure value, the more evident was the failure phenomenon, and the lower was the peak stress. The water pressure decreased the strength of the specimen and its ability to resist damage. Moreover, for the same water pressure, the smaller the confining pressure, the larger was the maximum AE number and the total cumulative amount of acoustic emissions. When the specimen reached the peak stress and produced macroscopic failure, the AE number reached the maximum value. Finally, the AE activity decreased as the water pressure increased, and the higher the water pressure, the smaller was the cumulative AE number. Owing to the existence of water pressure, the internal structure of the model specimen was affected by the softening effect, which decreased the model strength, thereby suppressing the AE activity of the specimen. Our findings can provide a basis for numerical simulation research on mechanical properties and AE evolution mechanism of water-bearing sandstone under three-way stress state.

【 授权许可】

Unknown   
Copyright © 2023 Zhang, Liu, Wei and Zhang.

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RO202311147024216ZK.pdf 7494KB PDF download
FEART_feart-2023-1212095_wc_tfx1.tif 1627KB Image download
FEART_feart-2023-1212095_wc_tfx2.tif 1358KB Image download
FEART_feart-2023-1212095_wc_tfx3.tif 1409KB Image download
FEART_feart-2023-1212095_wc_tfx4.tif 1251KB Image download
【 图 表 】

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FEART_feart-2023-1212095_wc_tfx1.tif

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