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Numerical analysis of blast‑induced damage in rock slopes

机译:岩石斜坡爆炸造成损伤的数值分析

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Blast-induced disturbance is one of the major risks in rock engineering. Hoek et al. considered the disturbance factor (D) in the Hoek-Brown failure criterion. The lack of a detailed guide has led to technical challenges so that Hoek proposed numerical modeling to solve this problem. In this study, numerical modeling of a simple slope through 3D Distinct Element Code (3DEC) was carried out considering two modes of discontinuities to update and quantify the simple descriptive guide. Each of these modes was divided to 5 models based on rock mass properties, and then, the relevant borehole pressure was applied. Blast-induced dynamic changes were qualitatively analyzed using the failure zone capabilities in 3DEC analysis. The results were then quantitatively analyzed with the assist of Fish programming language using the recorded peak particle velocities values. The impact of an increase in burden and spacing on dynamic changes was investigated. According to qualitative analysis, discontinuities reduce the dynamic pressure; geological strength index (GSI) is related to the expansion of damage; and direction of discontinuities is effective in transferring the dynamic pressure. A coefficient of determination of 0.922 was obtained in quantitative analysis. Furthermore, the distance from the blasting site, dip of the discontinuities, GSI and the factor D had the highest impact on the rock mass damage, respectively. Based on the effect of the direction of discontinuities, type of rock mass, burden and spacing on the factor D, the previous estimation guide was updated.
机译:爆炸诱导的扰动是岩石工程中的主要风险之一。 Hoek等人。考虑了Hoek-Brown失效标准中的扰动因子(d)。缺乏详细的指南导致了技术挑战,使HOEK提出了数值模型来解决这个问题。在本研究中,考虑到两个不连续模式来更新和量化简单的描述引导,执行简单斜率通过3D独特元素代码(3DEC)的数值建模。这些模式中的每一种基于岩石质量特性分为5种型号,然后施加相关的钻孔压力。使用3DEC分析中的故障区功能进行定性分析爆炸引起的动态变化。然后使用录制的峰值粒子速度值与鱼编程语言的辅助定量分析结果。调查了负担增加和间隔对动态变化的影响。根据定性分析,不连续性降低了动态压力;地质强度指数(GSI)与损害的扩张有关;不连续的方向在转移动态压力方面是有效的。在定量分析中获得0.922的测定系数。此外,从爆破部位,不连续倾向,GSI和因子D的距离分别对岩体质量损伤的影响最高。基于不连续方向,因子D的岩体类型,岩体类型,负担和间距的影响,更新了先前的估计指南。

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