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Analysis of Geomechanical Changes in Hanging Wall Caused by Longwall Multi Top Caving in Coal Mining

机译:采煤长壁多顶崩引起悬壁的力学变化分析。

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摘要

The method of sublevel coal extraction requires multi caving of the hanging wall layers, which are recompressed, and where each represent a hanging wall in sublevel stoping. Extensive stress and deformation changes in the surrounding area and in the mine represent a safety hazard for employees since the supporting system in the mine roadway could collapse. By accepting geomechanical principals in following caving processes in underground coal mining with the Velenje mining method in above ground acquisition, there are mutual connections made, between the geomechanical parameters of the occurring geological materials in connection with the intensity of coal mining. A numerical model, which allows for in-depth analyses of the geomechanical processes which occur in the hanging wall, the footwall, and in the coal seam during sublevel coal excavation, is broadly applicable and highly relevant for analyzing the intensity and the level of caving processes in sublevel coal mining, and for making realistic plans for coal excavation with worker safety in mind.
机译:地下采煤的方法需要对悬挂壁层进行多次崩落,这些壁层被重新压缩,并且每个都代表了地下停止中的悬挂壁。由于矿井巷道中的支撑系统可能坍塌,因此周围区域和矿井中应力和变形的广泛变化对员工构成了安全隐患。通过在地上采集中使用Velenje采矿方法在地下煤矿开采中的后续崩落过程中接受地质力学原理,在发生的地质材料的地质力学参数与煤炭开采强度之间建立了相互联系。数值模型可以深入分析地下煤层开挖过程中在悬壁,下盘壁和煤层中发生的地质力学过程,该模型广泛适用,并且与分析崩落的强度和水平密切相关。煤矿开采过程中的流程,以及考虑到工人安全制定切实可行的采煤计划。

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