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首页> 外文期刊>Advances in civil engineering >The Stability Factors’ Sensitivity Analysis of Key Rock B and Its Engineering Application of Gob-Side Entry Driving in Fully-Mechanized Caving Faces
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The Stability Factors’ Sensitivity Analysis of Key Rock B and Its Engineering Application of Gob-Side Entry Driving in Fully-Mechanized Caving Faces

机译:综采空压面上扶手型进入驾驶的稳定因素及其工程应用

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To reveal the critical factors of the main roof influencing stability of surrounding rocks of roadways driven along goaf in fully-mechanized top-coal caving faces, this paper builds a structural mechanics model for the surrounding rocks based on geological conditions of the 8105 fully-mechanized caving face of Yanjiahe Coal Mine, and the stress and equilibrium conditions of the key rock block B are analyzed, and focus is on analyzing rules of the key rock block B influencing stability of roadways driven along goaf. Then, the orthogonal experiment and the range method are used to confirm the sensitivity influencing factors in numerical simulation, which are the basic main roof height and the fracture location, the length of the key rock block B, and the main roof hardness in turn. It is revealed that the basic main roof height and its fracture location have a greater influence on stability of god-side entry driving. On the one hand, the coal wall and the roof of roadways driven along goaf are damaged, and the deformation of surrounding rocks of roadways and the vertical stress of narrow coal pillars tend to stabilize along with the increase of the basic main roof height. On the other hand, when the gob-side entry is located below the fracture line of the main roof, the damage caused by gob-side entry is the most serious. Therefore, on-site gob-side entry driving should avoid being below the fracture line of the main roof. At last, industrial tests are successfully conducted in the fully-mechanized top-coal caving faces, 8105 and 8215, of Yanjiahe Coal Mine.
机译:揭示沿着综放大煤洞穴沿着GOF驱动的道路围绕道路的周围岩石稳定性的主要因素,这篇论文基于8105全机械化的地质条件为周围岩石构建了一个结构力学模型分析了燕家海煤矿的洞穴,以及关键岩石块B的应力和平衡条件,重点是分析了沿着GOF驱动的道路稳定性的关键岩石块B的规则。然后,正交实验和范围方法用于确认数值模拟中的灵敏度影响因素,这是基本主屋顶高度和断裂位置,键岩体B的长度,以及依次的主屋顶硬度。据透露,基本主屋顶高度及其骨折位置对神侧进入驾驶的稳定性产生了更大的影响。一方面,沿着GOF驱动的煤墙和巷道的屋顶受损,并且围绕道路围岩的变形和窄煤柱的垂直应力往往随着基本主屋顶高度的增加而稳定。另一方面,当GOB侧进入位于主屋顶的断裂线下方时,由GOB侧进入造成的损坏是最严重的。因此,现场GOB侧进入驾驶应避免在主屋顶的断裂线以下。最后,工业测试成功地在燕家河煤矿的齐全的顶级煤洞面积,8105和8215中成功进行。

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