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Novel Segmented Roadside Plugging-Filling Mining Method and Overlying Rock Mechanical Mechanism Analyses

机译:新型分段路边堵塞灌装采矿方法和覆盖岩机械机制分析

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摘要

The no-pillar mining method is widely used in coal mining engineering because of its superiority in resolving mine pressure hazards and protecting natural resources. In view of the geological conditions of stable strata in a coal mine of the Shandong Coal Zone, a novel segmented roadside plugging-filling mining method is proposed by introducing the filling coefficient into roadside filling. The operation process is designed with a new grouting filling forming device. Based on the relationship between the theoretical deflection of a cantilever beam and geometric settlement and parallel settlement models, strength formulas applicable to the segmented roadside plugging-filling (SRPF) method at different migration stages are obtained, and the deformation formulas of a roadway toward a rock slab are solved by an elastic equivalent model. Further, the determination procedure of the filling mode under the mining method is clarified. The SRPF method was implemented on a test stope, and the test results indicated that the theoretical deformation produced by the SRPF method was small and can meet the mining requirements. Through on-site test monitoring, the deformation of surrounding rock was 0−160 mm and the filling body under the SRPF method could maintain its own strength and the stability of the surrounding rock. In addition, entire successful mining been completed in the working stope, which further proves the applicability of this method. The backfilling cost of the gob-side filling was reduced by approximately 50%, and the backfilling efficiency was improved in the mine. The description of the novel mining method may provide theoretical and practical guidance for coal mining in similar geological conditions.
机译:由于其在解决矿矿压危险和保护自然资源的优越方面,无支柱采矿方法广泛应用于煤矿工程。鉴于山东煤区煤矿稳定地层的地质条件,提出了一种新颖的分段路边填充采矿方法,将灌装系数引入路边填充物。操作过程采用新的灌浆填充成形装置设计。基于悬臂梁和几何沉降和平行沉降模型的理论偏转之间的关系,获得了适用于不同迁移级的分段路边堵塞(SRPF)方法的强度公式,以及朝向巷道的变形公式通过弹性等效模型解决了岩石板。此外,阐明了采矿方法下的填充模式的确定过程。 SRPF方法在测试迹象上实施,测试结果表明,SRPF方法产生的理论变形小,并可满足采矿要求。通过现场测试监测,周围岩石的变形为0-160毫米,SRPF方法下的填充体可以保持其自身的强度和周围岩石的稳定性。此外,整个成功的开采在工作状态下完成,进一步证明了这种方法的适用性。 GOB侧填充的回填成本降低了大约50%,在矿井中改善了回填效率。新型采矿方法的描述可以为类似地质条件中的煤开采提供理论和实践指导。

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