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圆形巷道深度对岩爆特性影响的试验研究

Experimental Investigation on the Influence of Depth on Rockburst Characteristics in Circular Tunnels.

作者信息

Si Xuefeng, Peng Kang, Luo Song

机构信息

School of Resources and Safety Engineering, Central South University, Changsha 410083, China.

出版信息

Sensors (Basel). 2022 May 12;22(10):3679. doi: 10.3390/s22103679.

Abstract

To investigate the influence of depth on the rockburst of surrounding rock in a circular tunnel, true-triaxial tests at different depths were carried out on cubic granite specimens with a circular through-going hole. A micro camera was used to monitor the rockburst process of the circular hole sidewall in real time. The test results show that the failure process at different depths can be divided into four periods: the calm period, the particle ejection period, the rock fragment exfoliation period, and the rock bursting period. With an increase in depth, the three-dimensional unequal stress state gradually increased; the failure range and the size of rock fragments increased, the initial failure vertical stress linearly increased, and the strength and stability of the surrounding rock were enhanced. Therefore, the support range of surrounding rock should be increased as the depth increased to improve the overall stability of surrounding rock and reduce the failure range.

摘要

为研究圆形巷道围岩岩爆的深度影响,对含圆形贯通孔的立方花岗岩试件进行了不同深度的真三轴试验。采用微型摄像机实时监测圆孔侧壁的岩爆过程。试验结果表明,不同深度的破坏过程可分为四个阶段:平静期、颗粒喷射期、岩石碎块剥落期和岩石爆裂期。随着深度增加,三维不等应力状态逐渐增大;破坏范围和岩石碎块尺寸增大,初始破坏垂直应力线性增加,围岩强度和稳定性增强。因此,应随着深度增加而扩大围岩支护范围,以提高围岩整体稳定性,减小破坏范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1dbb/9146296/30e4f67280b0/sensors-22-03679-g001.jpg

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