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Application of a Brittle Failure Model to Assess Roof Stability in Coal Mine Entries

机译:脆性失效模型在煤矿条目中评估屋顶稳定性的应用

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摘要

Stress-driven instability of roof rocks in coal mine entries can result in large roof falls with associated safety hazards. Failure may be related to spalling, cutter formation, and delamination of bedding of the roof strata. The mode of failure is similar to failure of brittle rocks observed in hard rock environments. Additionally, coal mine roof rocks and coal materials can exhibit brittle failure characteristics when tested in the laboratory. A brittle failure criterion that considers both extensional fracturing under low confinement as well as shear failure under increased confinement is applied in numerical models of coal mine entries. The results show that such models can replicate field-monitored rock mass deformations and depths of failure. The results further show that the predicted zone of extension failure resembles the "softening zone" that is described in coal mine roof support literature. The authors conclude that modeling the presence of a reduced strength extension failure zone produces a satisfactory simulation of rock response around coal mine entries.
机译:煤矿条目中屋顶岩石的应力驱动的不稳定性可能导致大型屋顶与相关的安全危害有关。失效可能与剥落,刀具形成和屋顶地层寝具的分层有关。失败模式类似于在硬岩环境中观察到的脆性岩石的故障。此外,在实验室测试时,煤矿屋顶岩石和煤炭材料可以表现出脆性失效特性。在煤矿条目的数值模型中应用了在低限制下认为在低限制和剪切失效下的脆性破裂的脆性故障标准。结果表明,此类模型可以复制现场监控的岩体质量变形和失败深度。结果进一步表明,预测的延伸区失效区域类似于煤矿屋顶支持文献中描述的“软化区”。作者得出结论,建模降低的强度延伸失效区的存在会使煤矿条目周围的岩石反应造成令人满意的模拟。

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