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Degradation of a discrete infilled joint shear strength subjected to repeated blast-induced vibrations

机译:反复爆炸引起的振动引起的离散填充接头抗剪强度的降低

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摘要

This paper presents the results of a series of numerical modeling experiments aimed at quantifying blastinduced degradation of shear strength of discontinuities. Near-field vibration history of a single-row production blast in a limestone quarry was used as input to the numerical model. For this purpose, two rock blocks, representing a stiff massive sulfide rock and a weaker limestone rock, were simulated using the2 D Particle Flow Code(PFC2 D). Rock mass containing a single inclined joint was modeled as MohrCoulomb. The results show that the crack generation rate is increased in both samples after repetitive vibration loading. Joint shear strength degradation rate in the stiffer massive sulfide rock sample is higher than the softer limestone rock, which is attributed to the higher seismic impedance mismatch. The results show that even low-amplitude blasting vibrations(<80 mm/s), when repeated as in multi-hole blasts, can significantly degrade joint shear strength in the nearby pit walls.

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