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Numerical Simulation Research in Soft Rock Mine of Goaf Caving Height

机译:脱落洞高度软岩矿的数值模拟研究

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After long-term sedimentary structure effect, the coal face roof rock itself appeares various fractures and after mining the coal, owing to mine pressure appeared, part of goaf overburden rock gradually become distortion,delamination even fall. Due to the collapse of roofs, formation of air disasters are related to the caving height. Therefore, study the caving height is a key factor of realizing mine safe and effective production. This paper bases on the background of One Mine, using UDEC to study 5-3s soft rock mine working face of goaf caving height, first weighting interval and cycle weighting interval. By analyzing the simulation results, it reflects the relationship between advancing degree of working face and the goaf caving height. The conclusion provides a reference for resolving the problem of mine roof collapse in similar mine.
机译:经过长期沉积结构效果,煤炭面屋顶岩石本身出现各种骨折,挖掘煤炭后,由于矿井压力出现,部分覆盖岩石岩石逐渐变形,分层甚至跌倒。由于屋顶的崩溃,空气灾害的形成与洞穴高度有关。因此,研究洞穴高度是实现矿井安全有效生产的关键因素。本文在一个矿井背景上,使用UDEC学习5-3S软岩矿工作面的GoF崩落高度,第一加权间隔和循环加权间隔。通过分析仿真结果,它反映了工作面的推进程度与GOF塌陷高度之间的关系。结论为解决类似矿井屋顶塌陷问题提供了参考。

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