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Assessment of roof stability in a room and pillar coal mine in the US using three-dimensional distinct element method

机译:使用三维离散元方法评估美国某房间和支柱煤矿的顶板稳定性

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This paper examines the effect of different geological and mining factors on roof stability in underground coal mines by combining field observations, laboratory testing, and numerical modeling. An underground coal mine in western Pennsylvania is selected as a case study mine to investigate the underlying causes of roof falls in this mine. Three-dimensional distinct element analyses were performed to evaluate the effect of different parameters, such as the variation of immediate roof rock mass strength properties, variation of discontinuity mechanical properties, orientations and magnitudes of the horizontal in-situ stresses, and the size of pillars and excavations on stability of the immediate roof. The research conducted in this paper showed that the bedding planes play an important role on the geo-mechanical behavior of roofs in underground excavations. Therefore, an appropriate numerical modeling technique which incorporates the effect of discontinuities should be employed to simulate the realistic behavior of the discontinuous rock masses such as the layered materials in roof strata of the underground coal mines. The three-dimensional distinct element method used in this research showed the capability of this technique in capturing the important geo-mechanical behavior around underground excavations. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过结合现场观察,实验室测试和数值模拟,研究了不同地质和采矿因素对地下煤矿顶板稳定性的影响。宾夕法尼亚州西部的一个地下煤矿被选为案例研究矿井,以调查该矿顶崩塌的潜在原因。进行了三维离散元分析,以评估不同参数的影响,例如即时顶板岩体强度特性的变化,不连续力学特性的变化,水平现场应力的方向和大小以及支柱的大小和开挖直接屋顶的稳定性。本文进行的研究表明,层理平面对地下挖掘中屋顶的地质力学特性起着重要作用。因此,应该采用一种结合了不连续性影响的数值模拟技术来模拟不连续岩体的真实行为,例如地下煤矿屋顶层中的分层材料。本研究中使用的三维离散元方法显示了该技术具有捕获地下基坑周围重要地质力学行为的能力。 (C)2016 Elsevier Ltd.保留所有权利。

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