Dai Jinqiu, Zhao Mingchao, Wang Zhenkang, Gao Han
School of Civil and Architectural Engineering, Anyang Institute of Technology, Anyang, China.
China Coal Technology and Engineering Group Shenyang Design & Research Institute, Shenyang, China.
PLoS One. 2024 Dec 4;19(12):e0314927. doi: 10.1371/journal.pone.0314927. eCollection 2024.
Due to the difficulty in predicting the occurrence of rockburst in deep mining areas,this paper proposes that the use of Peridynamics to analyze the mechanical characteristics of coal-rock composite structures under loading conditions from the perspective of energy, Determine the impact tendency of coal rock composite structures by combining rock elastic deformation energy index (WET) and rock impact energy index (WCF); Use Lammps software to simulate the loading of composite structural materials and compare and verify with experimental results, to more accurately determine the tendency of rockburst occurrence in different coal-rock composite structures.The results indicate that after the specimen reaches the yield stress, the sample exhibits an "X" shaped failure. The coal body has a significant impact on the overall model's fragmentation, and different combination states and ratios can affect the degree of damage in the coal-rock composite structure. which has important theoretical value for rock mechanics research. The research results can reduce the occurrence of rockburst accidents, the difficulty of mine support, and the cost of mining engineering, as well as improve mine safety levels.
由于深部矿区岩爆发生难以预测,本文提出采用近场动力学从能量角度分析加载条件下煤岩复合结构的力学特性,结合岩石弹性变形能指标(WET)和岩石冲击能指标(WCF)确定煤岩复合结构的冲击倾向;利用Lammps软件模拟复合结构材料的加载并与实验结果进行对比验证,以更准确地确定不同煤岩复合结构岩爆发生的倾向。结果表明,试样达到屈服应力后,呈现“X”形破坏。煤体对整体模型的破碎有显著影响,不同的组合状态和比例会影响煤岩复合结构的损伤程度,这对岩石力学研究具有重要理论价值。研究成果可减少岩爆事故的发生、降低矿井支护难度和采矿工程成本,以及提高矿井安全水平。