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基于真三轴加卸载试验的软煤巷道围岩变形与破坏特征弹塑性分析

Elastoplastic analysis on deformation and failure characteristics of surrounding rock of soft-coal roadway based on true triaxial loading and unloading tests.

作者信息

Jiang Chongyang, Wang Lianguo, Guo Jiaxing, Wang Shuai

机构信息

State Key Laboratory of Intelligent Construction and Healthy Operation and Maintenance of Deep Underground Engineering, China University of Mining and Technology, Xuzhou, 221116, China.

出版信息

Sci Rep. 2024 Sep 10;14(1):21103. doi: 10.1038/s41598-024-72052-4.

Abstract

Since accidents such as roof caving, rock fragmentation, and severe deformation are particularly likely to occur during roadway excavation in soft and thick coal seams, grasping the range and distribution of deformation and fracturing of surrounding rock is of crucial for evaluating roadway stability and optimizing support design in such coal seams. In this study, based on the stress paths encountered during roadway excavation, true triaxial loading and unloading tests were carried out on soft coal, and the deformation and strength evolutions of soft coal under different intermediate principal stress conditions were analyzed. The test results show that the stress-strain relationship in the pre-peak plasticity-strengthening and post-peak plasticity-weakening stages follows a quadratic function, and the strengeth evolution conforms to the Mogi-Coulomb criterion. Moreover, analytical solutions for the displacement of surrounding rock, the radius of the broken zone, and the radius of the plastic zone of soft-coal roadways under excavation stress paths were derived after taking the nonlinear hardening and softening characteristics of the strain of soft coal, the Mogi-Coulomb criterion, the intermediate principal stress, and the dilatancy characteristics of surrounding rock into comprehensive consideration. Finally, in accordance with a practical engineering case, the influences of the intermediate principal stress coefficient, the lateral pressure coefficient, and the support force on the deformation and failure characteristics of the soft-coal roadway were analyzed. The analysis reveals that an increase in intermediate principal stress aggravates the deformation of surrounding rock and enlarges the plastic and broken zones; variations in the lateral pressure coefficient alter the shape of the broken zone and the distribution of surface displacement; and an increase in the support force effectively reduces the plastic zone, broken zone, and surface displacement of the roadway. The research results can provide valuable theoretical basis for the stability evaluation and support design of soft-coal roadways.

摘要

由于在松软厚煤层巷道掘进过程中极易发生冒顶、片帮及严重变形等事故,掌握围岩变形与破裂的范围及分布对于评估此类煤层巷道的稳定性和优化支护设计至关重要。本研究基于巷道掘进过程中所经历的应力路径,对软煤进行了真三轴加卸载试验,分析了不同中间主应力条件下软煤的变形及强度演化规律。试验结果表明,峰前塑性强化和峰后塑性弱化阶段的应力 - 应变关系呈二次函数,强度演化符合莫吉 - 库仑准则。此外,综合考虑软煤应变的非线性硬化与软化特性、莫吉 - 库仑准则、中间主应力以及围岩扩容特性后,推导了掘进应力路径下软煤巷道围岩位移、破裂区半径及塑性区半径的解析解。最后,结合实际工程案例,分析了中间主应力系数、侧压系数及支护力对软煤巷道变形破坏特征的影响。分析结果表明,中间主应力增大加剧了围岩变形,扩大了塑性区和破裂区;侧压系数变化改变了破裂区形状和表面位移分布;支护力增大有效减小了巷道的塑性区、破裂区及表面位移。研究成果可为软煤巷道稳定性评估及支护设计提供有价值的理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/690a/11387745/3caf8a550282/41598_2024_72052_Fig1_HTML.jpg

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