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Safety analysis of tunnel in gob of high steep thick coal seam (II) -2-D numerical simulation for response of surrounding rock to extraction

机译:高陡厚煤层(II)-2-D数值模拟隧道隧道安全分析,以响应周围岩石萃取的响应

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Taking Wusongshan Tunnel in Tongling City as an example, two-dimensional numerical simulation of new large span highway tunnel directly through gob of steep coal seam were carried out to study the response of surrounding rock induced by mining. The actual location and scale of the ground fissure consistent well with the simulation results, which verified the analysis. The results showed that, different from those in gob of horizontal or gently inclined coal seam, the response of surrounding rock in gob of steep coal seam have the following characteristics: (1) shallow mining affects significantly on the values of settlement of earth surface and the tunnel, and deep mining on the scope; (2) in the shallow layer, a small scale coal being reserved or being effective filled after excavation can benefit greatly to the safety of structure and stability of the surrounding rock; (3) sharper uneven settlement would occur at the floor than the roof of coal seam, which can threaten the tunnel structure and should attract more special attention; (4) for this project, deep faults affect the safety of structure of tunnel and stability of surrounding rock also. Based on these results, treament plan were developed of Wusongshan Tunnel, which can also be refered for other similar projects.
机译:以铜陵市为例,以陡坡煤层直接通过陡峭煤层直接通过陡峭的煤层直接通过陡峭的煤层隧道进行二维数值模拟。地面裂缝的实际位置和规模与仿真结果一致,验证了分析。结果表明,与水平或轻微倾斜煤层的甘豆相似的结果,陡峭的煤层甘露果蝇中的围岩响应具有以下特点:(1)浅采矿对地球表面沉降的值显着影响隧道,深入挖掘范围; (2)在浅层中,挖掘后保留或有效填充的小型煤可以大大受益于周围岩石的结构和稳定性的安全性; (3)在地板上比煤层的屋顶锐利不均匀的结算,这可能会威胁隧道结构,并应吸引更特别的关注; (4)对于这个项目,深点影响隧道结构的安全性和周围岩石的稳定性。根据这些结果,武装山隧道开发了后期计划,也可以参考其他类似项目。

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