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首页> 外文期刊>Engineering Geology >Improved compound support system for coal mine tunnels in densely faulted zones: A case study of China's Huainan coal field
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Improved compound support system for coal mine tunnels in densely faulted zones: A case study of China's Huainan coal field

机译:密度断层区煤矿隧道的改进复合载体系统:以中国淮南煤炭田案例为例

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摘要

When tunnelling in densely faulted zones of coal mines, serious deformation often occurs due to adverse geological conditions such as extremely broken and weak rock mass, high tectonic stress, fissure water. To investigate a more efficient support strategy for tunnels passing through densely faulted zones, a tunnel in China's Huainan mining area is taken as an experimental site to study an improved support method. Some key factors associated with the stability of tunnels in the densely faulted zone are analysed. Based on the analysis of failure characteristics of a previously excavated tunnel, a detailed procedure for the improved support method is proposed in which a long pipe pre-grouting method together with a new kind of grouting cable are applied. Finally, the improved support strategy is implemented in the experimental tunnel. The monitoring results suggest that serious deformation is avoided, and the improved compound support method is feasible for tunnels in densely faulted zones.
机译:当在煤矿的密度断层区域中隧穿时,由于不利的地质条件,例如极其破碎和弱岩体,高构造应力,裂缝水,通常会发生严重变形。为了调查通过密度断层区域的隧道更有效的支撑策略,中国淮南矿区的隧道被视为研究改进的支持方法的实验现场。分析了与密度断层区域中隧道稳定性相关的一些关键因素。基于先前挖掘隧道的故障特性的分析,提出了一种改进的支撑方法的详细程序,其中施加具有新种类的灌浆电缆的长管预制方法。最后,在实验隧道中实施了改进的支持策略。监测结果表明,避免了严重变形,并且改善的复合载体方法对于密度断层区域中的隧道是可行的。

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