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Research on Mechanism and Control of Floor Heave of Mining-Influenced Roadway in Top Coal Caving Working Face

机译:顶煤洞穴工作面采矿巷道落地机制与控制研究

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The stability of the surrounding rock is the key problem regarding the normal use of coal mine roadways, and the floor heave of roadways is one of the key factors that can restrict high-yield and high-efficiency mining. Based on the 1305 auxiliary transportation roadway geological conditions in the Dananhu No. 1 Coal Mine, Xinjiang, the mechanism of roadway floor heave was studied by field geological investigation, theoretical analysis, and numerical simulation. We think that the surrounding rock of the roadway presents asymmetrical shrinkage under the original support condition, and it is the extrusion flow type floor heave. The bottom without support and influence of mining are the important causes of floor heave. Therefore, the optimal support scheme is proposed and verified. The results show that the maximum damage depth of the roadway floor is 3.2 m, and the damage depth of the floor of roadway ribs is 3.05 m. The floor heave was decreased from 735 mm to 268 mm, and the force of the rib bolts was reduced from 309 kN to 90 kN after using the optimization supporting scheme. This scheme effectively alleviated the "squeeze" effect of the two ribs on the soft rock floor, and the surrounding rock system achieves long-term stability after optimized support. This provides scientific guidance for field safe mining.
机译:周围岩石的稳定性是关于煤矿道路正常使用的关键问题,道路的地板是可以限制高产和高效采矿的关键因素之一。基于1305年辅助运输巷道地质条件,新疆煤矿1号煤矿,采用现场地质调查,理论分析和数值模拟研究了巷道楼层的机制。我们认为巷道周围的岩石在原始支撑条件下呈现不对称收缩,并且是挤出流式底部升降。没有支持和挖掘影响的底部是楼层升起的重要原因。因此,提出并验证了最佳支持方案。结果表明,巷道地板的最大损伤深度为3.2米,道路肋条地板的损坏深度为3.05米。地板升降从735mm达到268mm减小,并且在使用优化支撑方案之后,肋螺栓的力从309 kn到90kN降低。该方案有效地减轻了软岩地板上的两个肋骨的“挤压”效应,周围的岩石系统在优化支撑后实现了长期稳定性。这为现场安全采矿提供了科学指导。

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