[1] 周刚,李玉涛,吴振业.大屯矿区地应力测量与特征分析[J].煤炭学报,2005,30(3):314-318.ZHOU Gang, LI Yutao, WU Zhenye, et al. Measurement and characteristic analysis of geostress in the Datun mining area [J]. Journal of China Coal Society, 2005, 30(3): 314-318.[2] 韩军, 韩韶泽, 马双文, 等. 不同强度煤体声发射特征研究[J]. 地下空间与工程学报, 2021, 17(3): 739-747.Han Jun, Han Shaoze, Ma Shuangwen, et al. Study on acoustic emission characteristics of coal with different intensities[J]. Chinese Journal of Underground Space and Engineering, 2021, 17(3): 739-747.[3] 杨增福,杨胜利,杨文强. 煤岩单轴压缩条件下声发射与破坏特征差异性研究 [J]. 煤炭工程, 2021, 53 (04): 136-140.Yang Zengfu, Yang Shengli, Yang Wenqiang. Study on the Differences in Acoustic Emission and Failure Characteristics of Coal and Rock under Uniaxial Compression. Coal Engineering, 53(04), 136-140.[4] 张浪. 突出煤体变形破坏过程声发射演化特征综合分析[J]. 煤炭学报, 2018, 43(增1): 130-139.Zhang Lang. Comprehensive analysis of acoustic emission evolution characteristics during deformation and failure process of outburst coal[J]. Journal of China Coal Society, 2018, 43(Suppl. 1): 130-139.[5] 舒龙勇, 王凯, 张浪, 等. 突出煤体受载变形破坏声发射行为演化特征[J]. 采矿与安全工程学报, 2018, 35(3): 589-597.Shu Longyong, Wang Kai, Zhang Lang, et al. Investigation on acoustic emission behaviour evolution characteristics of outburst coal under uniaxial compression[J]. Journal of Mining & Safety Engineering, 2018, 35(3): 589-597.[6] Liu S M, Li X L, Li Z H, et al. Energy distribution and fractal characterization of acoustic emission (AE) during coal deformation and fracturing[J]. Measurement, 2019, 136: 122-131.[7] 沈铭华,刘晨辉,方士正,等.加载速率对煤样单轴压缩宏细观破裂特征的影响[J].煤炭工程,2023,55(12):147-154.Shen Minghua, Liu Chenhui, Fang Shizheng, et al. (2023). Effect of Loading Rate on Macroscopic and Microscopic Fracture Characteristics of Coal Samples under Uniaxial Compression. Coal Engineering, 55(12), 147-154.[8] Li Q G, Qian Y N, Hu Q T, et al. Acoustic emission response mechanism of hydraulic fracturing in different coal and rock: a laboratory study[J]. Rock Mechanics and Rock Engineering, 2022,55(8):4657-4672.[9] 李杨,袁安营.不同岩性煤岩体声发射特征参数及破坏前兆信息研究[J].煤炭工程,2018,50(12):86-89.Li Yang, Yuan Anying. (2018). Study on Acoustic Emission Characteristic Parameters and Failure Precursors of Coal and Rock with Different Lithologies. Coal Engineering, 50(12), 86-89.[10] 赵奎, 王更峰, 王晓军, 等. 岩石声发射 Kaiser 点信号频带能量分布和分形特征研究[J]. 岩土力学, 2008, (11): 3082-3088.Zhao Kui, Wang Gengfeng, Wang Xiaojun, et al. Study on energy distribution and fractal characteristics of acoustic emission signals at Kaiser point of rock[J]. Rock and Soil Mechanics, 2008, (11): 3082-3088.[11] 任建喜,王晓琳,张琨,等.不同加载模式下煤岩破坏特性试验研究[J].煤炭工程,2020,52(10):125-129.Ren Jianxi, Wang Xiaolin, Zhang Kun, et al. (2020). Experimental Study on the Fracture Characteristics of Coal and Rock under Different Loading Modes. Coal Engineering, 52(10), 125-129.[12] 曾宪涛, 姜耀东, 王宏伟, 严硕. 单轴压缩条件下煤岩体声发射特性研究[J]. 煤炭工程, 2015, 47(2): 75-77+81.Zeng Xiantao, Jiang Yaodong, Wang Hongwei, Yan Shuo. Study on acoustic emission characteristics of coal rock under uniaxial compression[J]. Coal Engineering, 2015, 47(2): 75-77+81.[13] 宋璐璐,赵志刚,贾志闯,等.基于声发射能量判定指标岩石破坏时刻预测研究[J].煤炭工程,2016,48(09):117-119.Song Lulu, Zhao Zhigang, Jia Zhichuang, et al. (2016). Prediction of Rock Failure Time Based on Acoustic Emission Energy Judgment Indicators. Coal Engineering, 48(09), 117-119.[14] 左建平, 裴建良, 刘建锋, 彭瑞东, 李岳春. 煤岩体破裂过程中声发射行为及时空演化机制[J]. 岩石力学与工程学报, 2011, 30(8): 1564-1570.Zuo Jianping, Pei Jianliang, Liu Jianfeng, Peng Ruidong, Li Yuechun. Acoustic emission behavior and spatiotemporal evolution mechanism of coal rock during fracture process[J]. Chinese Journal of Rock Mechanics and Engineering, 2011, 30(8): 1564-1570.[15] 唐巨鹏, 郝娜, 潘一山, 等. 基于声发射能量分析的煤与瓦斯突出前兆特征试验研究[J]. 岩石力学与工程学报, 2021, 40(1): 31-42.Tang Jupeng, Hao Na, Pan Yishan, et al. Experimental study on precursor characteristics of coal and gas outburst based on acoustic emission energy analysis[J]. Chinese Journal of Rock Mechanics and Engineering, 2021, 40(1): 31-42.[16] 徐芝纶.弹性力学简明教程(第四版) [M].北京:高等教育出版2013:15-20.[17] Griffith, A. A. The phenomena of rupture and flow in solids. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, 221(582-593), 163-198.[18] Irwin, R. Analysis of stresses and strains near the end of a crack subjected to general loading. Journal of Applied Mechanics, 24(3), 361-364.[19] Grinsztajn, L., Oyallon, E., & Varoquaux, G. (2022). Why do tree-based models still outperform deep learning on typical tabular data? Proceedings of the 36th Conference on Neural Information Processing Systems (NeurIPS 2022).[20] Lancaster, P., & Salkauskas, K. Surfaces generated by moving least squares methods. Mathematics of Computation, 37(155), 141-158.[21] 陈新忠,曹远威,刘世伟,等.基于数字图像的非接触式泊松比测试方法[J].煤炭学报,2014,39(S2):366-371.2023,42(06):1366-1383.Chen Xinzhong, Cao Yuanwei, Liu Shiwei, et al. "Non-Contact Poisson's Ratio Testing Method Based on Digital Image" [J]. Journal of China Coal Society, 2014, 39(S2): 366-371; 2023, 42(06): 1366-1383. |