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Three-Dimensional Analysis of Gate-Entry Stability in Multiple Seams Longwall Coal Mine Under Weak Rock Conditions

机译:弱岩条件下多煤层长壁煤矿巷道入口稳定性的三维分析

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A study of multiple seams longwall mining is proposed to investigate its applicability in Indonesia coal mine. The study area of this research is PT Gerbang Daya Mandiri (GDM) coal mine located in East Kalimantan Island. The study of seam interaction is crucial for developing multiple seams longwall mining especially when it comes to weak rock conditions which are usually found in most of the coal reserves in Indonesia. This paper will use numerical simulation to investigate the effect of the first mined-out seam on the development of the second coal seam gate-entry by considering a couple of key parameters including depth of the coal seam and interburden length. The simulation model consists of two main indicators for instability which include failure zone, the contour of safety factor. The results show that the effect of seam interaction on gate-entry has different intensity based on the thickness of the interburden and coal seam depth. This work also provided appropriate support configuration for maintaining the stability of gate-entry.
机译:为了研究其在印尼煤矿中的适用性,提出了多煤层长壁开采的研究。该研究的研究区域是位于东加里曼丹岛的PT Gerbang Daya Mandiri(GDM)煤矿。煤层相互作用的研究对于发展多煤层长壁开采至关重要,特别是在印尼大多数煤炭储量中通常遇到的弱岩石条件下。本文将通过数值模拟,通过考虑包括煤层深度和煤层长度在内的几个关键参数,研究第一个采煤层对第二个煤层闸门入口发展的影响。仿真模型由两个主要的不稳定性指标组成,包括破坏区,安全系数等值线。结果表明,煤层相互作用对闸门进入的影响具有不同的强度,这取决于煤层厚度和煤层深度。这项工作还提供了适当的支撑配置,以维持门禁系统的稳定性。

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