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Evolution and effect of the stress concentration and rock failure in the deep multi-seam coal mining

机译:深部多煤层开采应力集中与破坏的演化及影响

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Supports crushing accident occasionally occurs in the protected seam exploitation of deep multi-seam coal mining structure and results in adverse effect to the production. To prevent its recurrence in a newly developed working field, a 3D numerical extraction model was built based on the geologic and mining conditions of Jining coal mine to evolve the changes, state and characteristics of the reconstructed vertical and lateral stress in rock interlayer after protective seam exploitation. Stress release and increase zones of this mining structure were separated. Mining-induced localized stress concentration and the interlayer rock failure behavior were explored. The action of concentrated stress on the hydraulic supports in protected seam was discussed upon the major stress redistribution. Using the infinitesimal strain method, a mechanical model was created to further explore, from the vertical and lateral directions, the cause and mechanism of localized stress concentration and rock failure behavior in rock interlayer. The field investigation was finally performed to verify the numerical and mechanical results, and the essential control measures were proposed to prevent this accident. Key findings of this study bring some new insights into the deep multi-seam coal extraction and help to promote a more reliable underground mining.
机译:深部多煤层开采结构的保护层开采中有时发生支护破碎事故,对生产造成不利影响。为防止其在新开发的工作领域中再次发生,根据济宁煤矿的地质和采矿条件建立了3D数值提取模型,以演化保护性煤层后岩层中垂直和侧向应力的变化,状态和特征。开发。应力释放和该采矿结构的增加区域是分开的。探索了采矿引起的局部应力集中和层间岩石破坏行为。根据主要应力的重新分布,讨论了集中应力对受保护煤层中水力支架的作用。使用无限小应变方法,建立了一个力学模型,以从垂直和横向方向进一步探讨岩石夹层中局部应力集中和岩石破坏行为的原因和机理。最后进行了现场调查,以验证数值和机械结果,并提出了必要的控制措施来防止此事故。这项研究的主要发现为深部多煤层煤的开采带来了一些新见解,并有助于促进更可靠的地下开采。

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