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Unloading scheme to control sliding mass at Angouran open pit mine, Iran

机译:伊朗安古拉露天矿控制滑动质量的卸载方案

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Angouran zinc-lead open pit mine, located in the northwest of Iran, has experienced a large-scale slope failure in the order of 12Mm3 volume. The main challenges due to this giant failure are subsequent responses of the sliding mass, geometry of the slip surface, and where unloading procedures should be performed to stabilize the slope and restart mining operation. To find solutions for the challenges, a comprehensive site investigation and monitoring was conducted to compare the primary and secondary discontinuity patterns, besides a three-dimensional discrete element modeling to identify the failure scenario and determine the governing mechanism. According to the results, the failure region was divided into three main parts: sheared, sliding, and crushed zones. Based on the slip surface geometry and the relative position of the main parts in the failure region, an unloading scheme was presented. It is estimated that over 4mm3 should be unloaded to restart mining operation.
机译:位于伊朗西北部的安古拉锌铅露天矿已经历了一次大规模的边坡破坏,其体积约为12Mm3。由于这种巨大破坏而造成的主要挑战是滑动质量的后续响应,滑动面的几何形状以及应执行卸荷程序以稳定边坡并重新开始采矿作业的问题。为了找到解决方案,除了进行三维离散元建模以识别故障情况并确定控制机制外,还进行了全面的现场调查和监视,以比较主要和次要的不连续性模式。根据结果​​,破坏区域分为三个主要部分:剪切,滑动和压碎区域。根据滑动面的几何形状和主要零件在失效区域的相对位置,提出了一种卸载方案。据估计,应卸掉4mm3以上才能重新开始采矿作业。

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