Study on the Damage Evolution and Failure Mechanism of Floor Strata under Coupled Static-Dynamic Loading Disturbance

Processes Pub Date : 2024-07-18 DOI:10.3390/pr12071513
Hailong Li, Haibo Bai, Wenjie Xu, Bing Li, Peitao Qiu, Ruixue Liu
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Abstract

In the field test, we found that the failure depth of the goaf floor strata tends to be further because the periodic breaking and caving of the immediate roof, upper roof, and roof key stratum has dynamic stress disturbance effects on the floor. To further analyze its formation mechanism, this paper studies the damage evolution and fracture mechanism of goaf floor rock under the coupled static-dynamic loading disturbance caused by roof caving, based on the stress distribution state, the damage evolution equation of coal measure rock, the damage constitutive model, and the fracture criterion of floor rock. The main conclusions are listed as follows: 1. Based on the mining floor stress distribution, the floor beam model establishes the response mechanism of floor rock stress distribution. Also, the equation of stress distribution at any position in floor strata under mining dynamic load is given. 2. Combining the advantages of Bingham and the Generalized-Boydin model, the B-G damage constitutive model is established, which can describe the constitutive characteristics of coal measure rock under the coupled static-dynamic loading disturbance well. Furthermore, the variation law of parameters changing with strain rate is analyzed. 3. According to the twin-shear unified strength yield theory and the B-G damage constitutive model, coal measure rock’s twin-shear unified strength damage fracture criterion is established. Finally, the stress distribution expression of floor strata under concentrated and uniform dynamic loads is introduced, and the fracture criterion of goaf floor strata under a coupled static-dynamic loading disturbance is proposed.
静态-动态耦合荷载扰动下楼板地层的损伤演变和破坏机理研究
在野外试验中,我们发现,由于近顶板、上顶板、顶板关键地层的周期性破碎和塌陷对底板产生动应力扰动作用,使得鹅卵石底板地层的破坏深度有进一步加深的趋势。为了进一步分析其形成机理,本文基于应力分布状态、煤量岩石损伤演化方程、损伤构成模型和底板岩石断裂准则,研究了顶板塌陷引起的静-动耦合荷载扰动作用下煤层底板岩石的损伤演化和断裂机理。主要结论如下:1.基于采场底板应力分布,底板梁模型建立了底板岩石应力分布的响应机制。同时,给出了采矿动荷载作用下底板地层任意位置的应力分布方程。2.结合 Bingham 模型和广义-Boydin 模型的优点,建立了 B-G 损伤组成模型,该模型能够很好地描述静-动耦合荷载扰动下煤措施岩的组成特征。此外,还分析了参数随应变速率变化的变化规律。3.3. 根据孪剪统一强度屈服理论和 B-G 破坏构造模型,建立了煤质岩的孪剪统一强度破坏断裂准则。最后,介绍了集中动荷载和均匀动荷载作用下底板地层的应力分布表达式,提出了静动荷载耦合扰动下羊草地层的断裂准则。
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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