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采场下电振放矿底部结构探讨
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作者 王同生 《有色科技》 1989年第4期31-33,共3页
关键词 电振放矿 采场下 底部结构 电振机
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新桥矿露天延深开采下盘边坡稳定性分析 被引量:3
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作者 李小庆 顾玉成 《露天采矿技术》 CAS 2017年第4期18-21,共4页
针对新桥矿露天采场延深后的下盘边坡,通过现场调查,资料分析得出边坡失稳破坏的主要模式,采用GeoStudio软件建立下盘边坡模型,分析降雨前后的安全系数,并进行稳定性分析,为了确保后期的安全开采以及最终边坡的稳定性,对边坡防治措施进... 针对新桥矿露天采场延深后的下盘边坡,通过现场调查,资料分析得出边坡失稳破坏的主要模式,采用GeoStudio软件建立下盘边坡模型,分析降雨前后的安全系数,并进行稳定性分析,为了确保后期的安全开采以及最终边坡的稳定性,对边坡防治措施进行了研究,提出了一系列的防治措施。 展开更多
关键词 露天采场下盘边坡 破坏模式 稳定性分析 防治措施
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Designing an optimal stope layout for underground mining based on a heuristic algorithm 被引量:2
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作者 Sandanayake Don Suneth Sameera Topal Erkan Asad Mohammad Waqar Ali 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第5期767-772,共6页
An optimal layout or three-dimensional spatial distribution of stopes guarantees the maximum profitability over life span of an underground mining operation.Thus,stope optimization is one of the key areas in undergrou... An optimal layout or three-dimensional spatial distribution of stopes guarantees the maximum profitability over life span of an underground mining operation.Thus,stope optimization is one of the key areas in underground mine planning practice.However,the computational complexity in developing an optimal stope layout has been a reason for limited availability of the algorithms offering solution to this problem.This article shares a new and efficient heuristic algorithm that considers a three-dimensional ore body model as an input,maximizes the economic value,and satisfies the physical mining and geotechnical constraints for generating an optimal stope layout.An implementation at a copper deposit demonstrates the applicability and robustness of the algorithm.A parallel processing based modification improving the performance of the original algorithm in terms of enormous computational time saving is also presented. 展开更多
关键词 Stope optimization Underground mining Underground mine planning Heuristic algorithm
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An improved method to assess the required strength of cemented backfill in underground stopes with an open face 被引量:19
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作者 Li Li Michel Aubertin 《International Journal of Mining Science and Technology》 SCIE EI 2014年第4期549-558,共10页
Backfill is increasingly used in underground mines to reduce the surface impact from the wastes produced by the mining operations. But the main objectives of backfilling are to improve ground stability and reduce ore ... Backfill is increasingly used in underground mines to reduce the surface impact from the wastes produced by the mining operations. But the main objectives of backfilling are to improve ground stability and reduce ore dilution. To this end, the backfill in a stope must possess a minimum strength to remain self-standing during mining of an adjacent stope. This required strength is often estimated using a solution proposed by Mitchell and co-workers, which was based on a limit equilibrium analysis of a wedge exposed by the open face. In this paper, three dimensional numerical simulations have been performed to assess the behavior of the wedge model. A new limit equilibrium solution is proposed, based on the backfill displacements obtained from the simulations. Comparisons are made between the proposed solution and experimental and numerical modeling results. Compared with the previous solution, a better agreement is obtained between the new solution and experimental results for the required cohesion and factor of safety. For large scale(field) conditions, the results also show that the required strength obtained from the proposed solution corresponds quite well to the simulated backfill response. 展开更多
关键词 Underground mines Backfill Required strength Analytical solutions Numerical modeling Mitchell's solution
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Numerical analysis of stability for mined-out area in multi-field coupling 被引量:5
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作者 罗周全 谢承煜 +3 位作者 周吉明 贾楠 刘晓明 徐海 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第2期669-675,共7页
There were differences between real boundary and blast hole controlling boundary of irregular mined-out area in underground metal mines. There were errors in numerical analysis of stability for goaf, if it was analyze... There were differences between real boundary and blast hole controlling boundary of irregular mined-out area in underground metal mines. There were errors in numerical analysis of stability for goaf, if it was analyzed as regular 3D mined-out area and the influence of coupling stress-seepage-disturbance was not considered adequately. Taking a lead zinc mine as the background, the model was built by the coupling of Surpac and Midas-Gts based on the goaf model precisely measured by CMS.According to seepage stress fundamental equations based on the equivalent continuum mechanical and the theory about equivalent load of dynamic disturbance in deep-hole blasting, the stability of mined-out area under multi-field coupling of stress-seepage-dynamic disturbance was numerically analyzed. The results show that it is more consistent between the numerical analysis model based on the real model of irregular 3D shape goaf and the real situation, which could faithfully reappear the change rule of stress–strain about the surrounding rock under synthetic action of blasting dynamic loading and the seepage pressure. The mined-out area multi-field coupling formed by blasting excavation is stable. Based on combination of the advantages of the CMS,Surpac and Midas-Gts, and fully consideration of the effects of multi-field coupling, the accurate and effective way could be provided for numerical analysis of stability for mined-out area. 展开更多
关键词 mined-out area measured actually multi-field coupling stress-seepage-disturbance stability for mined-out area
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