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Effects of pre-existing discontinuities on the residual strength of rock mass - Insight from a discrete element method simulation

机译:既有间断点对岩体残余强度的影响-离散元法模拟的启示

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When rock failure is unavoidable, the designer of engineering structures must know and account for the residual strength of the rock mass. This is particularly relevant in underground coal mine openings. Pre-existing discontinuities play an important role in the mechanical behavior of rock masses and thus it is important to understand the effects of such pre-existing discontinuities on the residual strength. For this purpose, the present study demonstrates a numerical analysis using a discrete element method simulation. The numerical results indicate that fracture intensity has no significant influence on the residual strength of jointed rock masses, independent of confining conditions. As confining pressures increase, both peak and residual strengths increase, with residual strength increasing at a faster rate. The finding was further demonstrated by analyzing documented laboratory compressive test data from a variety of rocks along with field data from coal pillars. A comprehensive interpretation of the finding was conducted using a cohesion-weakening-friction-strengthening (CWFS) model. The effect of rock bolts on rock mass strength was also evaluated by using a discrete element method model which suggested that rock bolts can significantly increases residual strength but have limited effect on increasing the peak strength of rock masses. (C) 2016 Elsevier Ltd. All rights reserved.
机译:当不可避免的岩石破裂时,工程结构的设计者必须知道并考虑岩体的残余强度。这在地下煤矿开口中尤为重要。预先存在的不连续性在岩体的力学行为中起着重要作用,因此重要的是要了解此类预先存在的不连续性对残余强度的影响。为此,本研究演示了使用离散元方法仿真的数值分析。数值结果表明,断裂强度对节理岩体的残余强度没有显着影响,而与约束条件无关。随着围压的增加,峰强度和残余强度都增加,残余强度以更快的速度增加。通过分析记录下来的各种岩石的实验室压缩测试数据以及煤柱的现场数据,进一步证明了这一发现。使用内聚力弱化摩擦增强模型(CWFS)对发现进行了全面的解释。还使用离散元方法模型评估了锚杆对岩体强度的影响,该模型表明,锚杆可以显着增加残余强度,但对增加岩体峰值强度的作用有限。 (C)2016 Elsevier Ltd.保留所有权利。

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