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[11] Young,洪王星,孙博文,唐旭海.不同盐水环境下页岩三轴力学及破坏特性试验研究,2023,45(11):2217-2226
[12] Young,荆晓娇.盐水干湿循环后砂岩物理力学特性试验研究,2023,45(10):2165-2171
[13] 李恒,Young,孙博文,杨景,董志锦,温森.双裂隙复合岩层单轴压缩力学性质及损伤机理离散元模拟,2023,54(10): 4000-4014
[14] 宋钰,Young,李克升,yinpengfei,潘鹏志.Mechanical behavior and fracture evolution mechanism of composite rock under triaxial compression: Insights from three-dimensional DEM modeling,2023,56(10): 7673-7699
[15] 李恒,Young,杨振,周小平,tianwenling,wangsusheng.Experimental and numerical study on the mechanical behaviors and crack propagation of sandstone containing two parallel fissures,2023,v 126,
[16] Young,黄彦华,chenxiaoqin,王建国,wangyingchao.深部岩石力学与地下工程导师团队培养研究生探索与实践,2023,2023年03期:107-113,7
[17] Young,黄彦华,kuangyingzhi,shidan,李阳.加快推进硕士研究生教育高质量发展——以中国矿业大学力学与土木工程学院为例,2023,2023年01期:80-87,8
[18] Young,李烨,马国伟,孙博文,杨景,Xu Jie,戴永浩.Experiment and numerical simulation study of dynamic mechanical behavior of granite specimen after high temperature treatment,2023,v 154,
[19] 董志锦,Young,孙博文,tianwenling,huangyanhua.Three-dimensional grain-based model study on triaxial mechanical behavior and fracturing mechanism of granite containing a single ?ssure,2022,122: 103602
[20] 杨振,Young,郑文博,Dwayne D. Tannant.Coupled thermal-hydraulic simulations of fracturing in granite under high temperature and high pressure treatment via peridynamic,2022,160: 105247
total152 2/16
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