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Numerical Simulation of Squeezing Failure in a Coal Mine Roadway due to Mining-Induced Stresses

机译:采动应力对煤矿巷道挤压破坏的数值模拟

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Squeezing failure is a common failure mechanism experienced in underground coal mine roadways due mainly to mining-induced stresses, which are much higher than the strength of rock mass surrounding an entry. In this study, numerical simulation was carried out to investigate the mechanisms of roadway squeezing using a novel UDEC Trigon approach. A numerical roadway model was created based on a case study at the Zhangcun coal mine in China. Coal extraction using the longwall mining method was simulated in the model with calculation of the mining-induced stresses. The process of roadway squeezing under severe mining-induced stresses was realistically captured in the model. Deformation phenomena observed in field, including roof sag, wall convexity and failed rock bolts are realistically produced in the UDEC Trigon model.
机译:挤压破坏是地下煤矿巷道中常见的破坏机制,主要是由于采矿引起的应力,该应力远高于巷道周围的岩体强度。在这项研究中,进行了数值模拟,以研究使用新型UDEC Trigon方法进行巷道挤压的机理。基于中国张村煤矿的案例研究,建立了数值巷道模型。在模型中模拟了采用长壁开采法开采煤炭,并计算了开采引起的应力。该模型现实地捕获了在严重的采矿诱发的应力下的巷道挤压过程。在UDEC Trigon模型中实际产生了在野外观察到的变形现象,包括屋顶下陷,墙面凸度和破坏的锚杆。

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