The influence of the disturbing effect of roadways through faults on the faults' stability and slip characteristics

IF 5
Shuaifeng Lu, Andrew Chan, Xiaolin Wang, Shanyong Wang, Zhijun Wan, Jingyi Cheng
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Abstract

In order to mitigate the risk of geological disasters induced by fault activation when roadways intersect reverse faults in coal mining, this paper uses a combination of mechanical models with PFC2D software. A mechanical model is introduced to represent various fault angles, followed by a series of PFC2D loading and unloading tests to validate the model and investigate fault instability and crack propagation under different excavation rates and angles. The results show that (1) the theoretical fault model, impacted by roadway advancing, shows a linear reduction in horizontal stress at a rate of −2.01 MPa/m, while vertical stress increases linearly at 4.02 MPa/m. (2) At field excavation speeds of 2.4, 4.8, 7.2, and 9.6 m/day, the vertical loading rates for the model are 2.23, 4.47, 6.70, and 8.93 Pa/s, respectively. (3) Roadway advancement primarily causes tensile-compressive failures in front of the roadway, with a decrease in tensile cracks as the stress rate increases. (4) An increase in the fault angle leads to denser cracking on the fault plane, with negligible cracking near the fault itself. The dominant crack orientation is approximately 90°, aligned with the vertical stress.

Abstract Image

通过断层的巷道扰动作用对断层稳定性和滑移特性的影响
为了降低煤矿巷道与逆断层相交时断层活化引发地质灾害的风险,本文采用了力学模型与PFC2D软件相结合的方法。引入力学模型来表示不同的断层角度,并通过PFC2D加载和卸载试验对模型进行验证,研究了不同开挖速率和角度下断层的失稳和裂纹扩展。结果表明:(1)理论断层模型受巷道推进影响,水平应力以- 2.01 MPa/m的速率线性减小,垂直应力以4.02 MPa/m的速率线性增大;(2)在现场开挖速度为2.4、4.8、7.2和9.6 m/d时,模型的竖向加载速率分别为2.23、4.47、6.70和8.93 Pa/s。(3)巷道推进主要引起巷道前方的拉压破坏,随着应力速率的增大,拉裂缝数量减少。(4)断层角度越大,断层面的裂缝越密集,断层本身附近的裂缝可以忽略。主裂纹方向约为90°,与垂直应力方向一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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