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首页> 外文期刊>Arabian journal of geosciences >Stability of slopes in a fire-prone mine in Jharia Coalfield, India
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Stability of slopes in a fire-prone mine in Jharia Coalfield, India

机译:印度Jharia Coalfield易火矿山的斜坡稳定性

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Stability of slope in an opencast mine is always associated with safety and economics. The steeper slope is always preferred from economic point of view but prone to failure, whereas flatter slopes are uneconomical. A proper understanding of slope which will be a steep enough to be stable is required for safety, economy, and stability of men and machineries. The Rajapur opencastmine is one of the important mines in terms of good quality coal but has problems of water seepage, fire, and weak overburden materials. The existing coal mine has three working seams which are mostly thick and occur at shallow depths of about 50-60 m. Overall slope angle of the working faces as well as final pit is very steep which leads to failures. In the present paper, an attempt has been made to characterize the materials of the mine for simulation of existing slopes. The rock samples from the coal measures were collected to determine the petrophysical characteristics of various rock units. All the pertinent geological parameters from the exposed face were also collected during field visit to assess the slope mass rating (SMR). A two-dimensional finite difference tool was employed to simulate the existing slope geometry as well as relevant parameters of the rock units. The numerical simulation indicates various vulnerable points which are prone to failure as well as displacements at various points along the slope. The results of simulations are corroborated with the SMR value. The results are well matching with the field condition.
机译:露天矿的边坡稳定性始终与安全和经济相关。从经济的角度来看,陡峭的斜坡总是首选,但容易发生故障,而平坦的斜坡则不经济。为了确保人员和机械的安全性,经济性和稳定性,需要对坡度有足够的陡度以使其稳定的正确认识。就优质煤而言,拉贾普尔露天煤矿是重要的煤矿之一,但存在渗水,火灾和覆盖物薄弱的问题。现有的煤矿具有三个工作煤层,这些煤层大多数是厚的,并出现在约50-60 m的浅层深度。工作面以及最终坑的总体倾斜角度非常陡峭,从而导致故障。在本文中,已经尝试表征矿山的材料以模拟现有的边坡。收集了来自煤田的岩石样品,以确定各种岩石单元的岩石物理特征。在实地考察期间,还收集了裸露面的所有相关地质参数,以评估坡度质量等级(SMR)。使用二维有限差分工具来模拟现有的边坡几何形状以及岩石单元的相关参数。数值模拟表明了易于破坏的各种脆弱点以及沿斜坡的各个点的位移。 SMR值证实了仿真结果。结果与现场条件非常吻合。

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