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Mining method optimisation of Bayi gold mine based on the value engineering principle

机译:基于价值工程原理的BACI金矿开采方法优化

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Bayi gold mine is located in the northeast of Habahe County, Altai city, Xinjiang autonomy region, China. There are No. 1 and No. 2 mining districts in the mine, of which No. 1 is the main production district. The group of12# veins is the main orebody, of which the top veins over +610 m were mined out with the open pit mining method. The upper part of the remaining orebodies is mined underground with the short-hole shrinkage stoping method. However, at about +400 m level, those veins gradually merge into one 30-60-m thick orebody, hence the mining method for the lower thick orebody has to be changed. For safe mining, the backfill method has been suggested. In this paper, mining method selection was regarded as a system engineering problem with multi-objective decision-making. In the primary selection, three kinds of underground backfill mining methods were proposed. A comprehensive multi-objective decision-making index system for mining method optimisation was built up based on the value engineering principle, and technical feasibility, resources utilisation and economic benefit factors were taken in consideration for safe mining and environmental protection. In order to integrate the experts' experience and to put the original qualitative comparison into quantitative analysis, the comparative importance of the functional parameters decided by the 0-1 compulsory scoring method was introduced. Therefore, the functions and values of primary selected mining methods with unified multi-objective data for comparison were obtained. Based on that, the optimised mining method, i.e. sublevel open stoping with delayed backfill, was selected. The final optimised mining method was designed and put into stope preparation.
机译:Bayi Gold Lime位于中国新疆阿尔泰市阿尔泰市哈哈县东北部。该矿山的第1号和第2位矿区,其中1号是主要生产区。 12群#静脉是主要的矿体,其中顶部静脉超过+ 610米的露天采矿方法。剩余的矿体的上部是通过短孔收缩止动方法在地下开采。然而,在约+ 400米级,这些静脉逐渐合并成一个30-60米的厚矿体,因此必须改变较低厚矿体的采矿方法。为了安全挖掘,已经提出了回填方法。在本文中,采矿方法选择被认为是具有多目标决策的系统工程问题。在主要选择中,提出了三种地下回填采矿方法。基于价值工程原理建立了综合多目标决策指标系统,建立了基于价值工程原理,并考虑了安全采矿和环境保护的技术可行性,资源利用和经济效益因素。为了整合专家的经验并将原始的定性比较纳入定量分析,介绍了由0-1强制评分方法决定的功能参数的比较重要性。因此,获得了具有用于比较的统一多目标数据的主选定的挖掘方法的功能和值。基于此,选择了优化的采矿方法,即使用延迟回填的Sublevel开放。设计并投入了最终优化的采矿方法。

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