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Analysis of spalling failure in marble rock slope: a case study of Neyriz marble mine, Iran

机译:大理石岩质边坡剥落破坏分析:以伊朗内里兹大理石矿为例

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The expansion of the Neyriz marble mine into deeper levels caused an unexpected failure particularly in the toes of lower benches. This phenomenon can impact the overall stability of the quarry and results in undesirable environmental and technical consequences. To understand the failure mechanism, a comprehensive study including-laboratory testing, in situ field testing and theoretical analyses are carried out. The theory of the brittle failure which was mainly developed based on the experiences gained during excavation in granite rocks is adopted and augmented in this study to explain the governing mechanism of failure. Mechanical properties of the marble are determined using conventional rock mechanics tests, and the in situ stress field was evaluated using a modified under coring test. Analyzing the laboratory and field data with the available empirical criteria for brittle failure shows that the level of stress in the lower bench is high enough to initiate the brittle failure. Finally, constitutive models developed for this failure mode are adopted in conjunction with numerical modeling to investigate the observed failure in the quarry. Two modeling strategies, based on elastic and elastic-plastic analyses, are considered. Comparing the predicted failure surface with the observed failure profile, it can be concluded that the brittle failure criteria can very well capture the failure mechanism in this marble quarry. This shows that the criteria proposed to describe spalling failure around underground excavation in granite can be effectively employed for assessing the brittle failure in deep open cast and quarry mines in good quality rocks such as marble.
机译:Neyriz大理石矿山扩建至更深的地方导致了意想不到的失败,尤其是在下台阶的脚趾处。这种现象会影响采石场的整体稳定性,并导致不良的环境和技术后果。为了理解失效机理,进行了包括实验室测试,原位现场测试和理论分析在内的全面研究。本研究采用并扩大了脆性破坏理论,该理论主要基于花岗岩岩石开挖过程中获得的经验来解释破坏的机理。使用常规的岩石力学测试确定大理石的机械性能,并使用改进的取芯测试评估原位应力场。用现有的脆性破坏经验标准分析实验室和现场数据表明,下工作台的应力水平足够高,足以引发脆性破坏。最后,针对此故障模式开发的本构模型与数值模型结合使用,以研究采石场中观察到的故障。考虑了基于弹性和弹塑性分析的两种建模策略。将预测的破坏面与观察到的破坏轮廓进行比较,可以得出结论,脆性破坏准则可以很好地捕获该大理石采石场的破坏机理。这表明提出的描述花岗岩地下开挖剥落破坏的标准可以有效地用于评估优质露天岩石和采石场中大理石等优质岩石的脆性破坏。

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