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In-pit crusher location as a dynamic location problem

机译:嵌入式破碎机定位作为动态位置问题

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摘要

The cost efficiency and high reliability of semi-mobile or combined in-pit crushing-conveying (IPCC) and truck systems, compared to conventional truck-shovel systems alone, make them more attractive for use in modern mining operations. Semi-mobile systems, which are the most common systems in open-pit mining, combine the advantages of both systems such that fewer trucks are required, operating costs are lowered, and the operation is environmentally sound. One major aspect of utilizing this system is determining the location of the in-pit crusher and the timing of relocations. Facility location models are rarely used in the mining sector, but these models may be used for solving the in-pit crusher location problem. To this end, the main parameters affecting the IPCC location in open pit mines are reviewed and examples given of how they are applied to a dynamic location-relocation problem. Subsequently, the model is implemented for Sungun copper mine in Iran and the number and the exact time of relocations of the IPCC units determined.
机译:与单独的传统卡车铲系统相比,半移动或组合的内部坑式破碎输送(IPCC)和卡车系统的成本效率和高可靠性使它们更具吸引力,在现代采矿业务中使用。半移动系统是露天挖掘中最常见的系统,将两种系统的优点相结合,使得需要更少的卡车,运营成本降低,操作是环保的。利用该系统的一个主要方面正在确定内坑破碎机的位置和重新定时。设施位置型号很少用于采矿部门,但这些型号可用于解决内部坑式破碎机定位问题。为此,正在审查影响露天矿物矿区IPCC位置的主要参数,并给出了它们如何应用于动态位置重定位问题的示例。随后,该模型用于IRAN中的SUNGUN铜矿和确定IPCC单元的数量和确切的时间。

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