首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Investigating the effect of simultaneous extraction of two longwall panels on a maingate gateroad stability using numerical modeling
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Investigating the effect of simultaneous extraction of two longwall panels on a maingate gateroad stability using numerical modeling

机译:用数值模拟研究两种长墙板同时提取两个长墙板对MAINGE oberoad稳定性的影响

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In longwall mining method, the stability of the maingate and tailgate gateroads is of great importance because these excavations are used for essential services such as ventilation and transportation. The aim of this paper is to develop a numerical model to investigate the stability of a maingate gateroad named P8-maingate during caving and extraction of P7 and P8 coal panels of Tabas Parvadeh underground mine. Stability analysis is carried out by critical shear strain criterion, zone plasticity conditions, support system efficiency and strength-stress ratio conditions using FLAC(3D), a software based on finite difference numerical methods. In the critical shear strain criterion method, the stability analysis is conducted by comparing the shear strain increments of the element in the model and Sakurai critical shear strain. In the second stability analysis method based on zone plasticity, the zones indicating shear plastic failures are the potential instability-causing regions. In the support system efficiency method, the applied load and pressure are compared to the yielding strength of the support systems to check their stability. In the Strength-Stress Ratio (SSR) method, a safety factor is determined for the gates, and the strength versus stress plots of the gates are assessed to control the stability condition. The results of numerical modeling indicate the stability of the P8-maingate using these methods. The modeling results are then compared to the instrumentation data to investigate the consistency where a good agreement was observed.
机译:在Longwall采矿方法中,Maingate和Tailgate obateads的稳定性非常重要,因为这些挖掘用于通风和运输等基本服务。本文的目的是开发一个数值模型,以研究塔巴斯帕斯地下P7和P8煤板的崩落和提取时叫做P8-Maingate的Maing玻璃的稳定性。稳定性分析由临界剪切应变标准,区域可塑性条件,支持系统效率和使用FLAC(3D)的强度应力比条件进行,这是一种基于有限差分数值方法的软件。在临界剪切应变准则方法中,通过比较模型中元素的剪切应变增量和樱桃临界剪切应变的剪切应变增量来进行稳定性分析。在基于区域可塑性的第二稳定性分析方法中,指示剪切塑性故障的区域是潜在的不稳定区域。在支撑系统效率方法中,将施加的负载和压力与支撑系统的屈服强度进行比较,以检查其稳定性。在强度应力比(SSR)方法中,针对栅极确定安全系数,评估栅极的强度与应力图进行控制以控制稳定性条件。数值模型的结果表明使用这些方法的P8-maingate的稳定性。然后将建模结果与仪表数据进行比较,以研究观察到良好协议的一致性。

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