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Analyses of De-Confinement Mechanisms of Unstable Failures in Underground Mining Conditions

机译:地下采矿条件下不稳定故障解除限制机制分析

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The de-confinement mechanisms of unstable failures as they occur in deep coal mining conditions are investigated using a distinct element numerical modeling code. The Mohr-Coulomb and continuously yielding joint constitutive models were used to study the compressive failures in coal and slip behavior of coal-rock interfaces, respectively. The effect of strength variations within interfaces on the failure mechanism of mining faces is also studied. The stability of interface slip failures was found to have a significant role in the failure mode of coal sidewalls. When the interfaces experience stable slip failures, the sidewalls are more likely to fail in a stable manner. With occurrence of unstable slips at interfaces, unstable compressive failures of sidewalls are triggered. The numerical modeling results support the proposed de-confinement mechanisms and emphasize the importance of including the coal-rock interface behavior in the analyses of unstable compressive failures. The significance of the proposed mechanisms in underground mining conditions is that rock discontinuities with large cohesion drop can become potential factors, inducing unstable compressive failures at ribs and mining faces. Therefore, the de-confinement mechanisms should be taken into consideration in mine design.
机译:因为它们发生在深采煤条件下是不稳定的故障的去限制机构使用的是不同的元数值模拟代码调查。莫尔 - 库仑和不断产生的联合构模型,用于研究的煤岩界面煤和滑移性能压缩故障,分别。强度变化对挖掘面的失效机理接口内的效果进行了研究。接口滑故障的稳定性被发现有煤炭侧壁的失效模式显著的作用。当界面体验稳定的滑移失败,侧壁更可能以稳定的方式失败。随着在界面不稳定打滑的发生,侧壁的不稳定压缩故障被触发。数值模拟结果支持拟议去约束机制,并强调包括不稳定的压缩故障的分析,煤岩界面行为的重要性。地下开采条件而提出的机制的意义在于,岩石的不连续性与大的凝聚力下降可能成为潜在的因素,在肋骨和采工作面诱发不稳定压缩故障。因此,去约束机制,应考虑在矿井设计。

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