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A numerical study of spalling and related rockburst under dynamic disturbance using a particle-based numerical manifold method (PNMM)

机译:基于粒子数值流形方法(PNMM)的动态扰动下剥落及相关岩爆的数值研究

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In this paper, the spalling failure of rock materials and spalling-induced rockbursts in tunnels are numerically investigated using a particle-based numerical manifold method (PNMM). The ability of PNMM for modelling spalling failure of rocks is validated in both one-dimensional (1D) and two-dimensional (2D) cases. The thickness of the first spall in rock bars and the spalling fracture pattern in rock plates are in good agreement with the theoretical analysis and numerical solutions in the literature. The values of spall strength at different loading rates are calculated by the particle velocities on the free surface of rock bar. Afterward, the rockburst in tunnels triggered by dynamic disturbance is simulated by the validated model. The mechanism of rockburst under this condition is proven to be closely related to spalling failure. The effect of the static in-situ stress on rockbursts are considered. Modelling results reveal that rockbursts are most likely to take place when the dynamic disturbance comes from the direction of the higher in-situ stress. Parametric studies also indicate that the larger difference exists between the horizontal and vertical in-situ stresses, the more severe rockburst could be triggered.
机译:本文采用基于粒子的数字流形方法(PNMM)对隧道内岩石材料的散裂破坏和散裂诱发的岩爆进行了数值研究。一维(1D)和二维(2D)情况均验证了PNMM对岩石剥落破坏进行建模的能力。岩石条中第一条剥落的厚度和岩石板中的剥落断裂模式与文献中的理论分析和数值解非常吻合。在不同加载速率下的剥落强度值是根据岩石棒自由表面上的粒子速度来计算的。然后,通过验证模型对动力扰动触发的隧道岩爆进行了模拟。在这种情况下,岩爆的机理被证明与剥落破坏密切相关。考虑了静态原地应力对岩爆的影响。模拟结果表明,当动态扰动来自较高的原地应力方向时,最有可能发生岩爆。参数研究还表明,水平和垂直原地应力之间存在较大的差异,可能触发更严重的岩爆。

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