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首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >Modelling open pit shovel-truck systems using the Machine Repair Modek
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Modelling open pit shovel-truck systems using the Machine Repair Modek

机译:使用Machine Repair Model对露天铲车系统进行建模

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Shovel-track systems for loading and hauling material in open pit mines are now routinely analysed using simulation models or off-the-shelf simulation software packages, which can be very expensive for once-off or occasional use. The simulation models invariably produce different estimations of fleet sizes due to their differing estimations of cycle time. No single model or package can accurately estimate the required fleet size because the fleet operating parameters are characteristically random and dynamic. In order to improve confidence in sizing the fleet for a mining project, at least two estimation models should be used. This paper demonstrates that the Machine Repair Model can be modified and used as a model for estimating track fleet size in an open pit shovel-truck system. The modified Machine Repair Model is first applied to a virtual open pit mine case study. The results compare favourably to output from other estimation models using the same input parameters for the virtual mine. The modified Machine Repair Model is further applied to an existing open pit coal operation, the Ewagga Section of Optimum Colliery as a case study. Again the results confirm those obtained from the virtual mine case study. It is concluded that the Machine Repair Model can be an affordable model compared to off-the-shelf generic software because it is easily modelled in Microsoft Excel, a software platform that most mines already use. This paper reports part of the work of a MSc research study submitted to the University of Witwatersrand, Johannesburg, South Africa.
机译:现在,通常使用仿真模型或现成的仿真软件包对用于露天矿中装载和运输物料的铲轨系统进行常规分析,这对于一次性使用或偶尔使用可能会非常昂贵。由于仿真模型对周期时间的不同估计,因此它们始终会产生不同的车队规模估计。没有一个模型或程序包可以准确估计所需的机队规模,因为机队的运行参数具有随机性和动态性。为了提高对采矿项目的车队规模的信心,应至少使用两个估计模型。本文表明,可以修改“机器维修模型”并将其用作估计露天铲车系统中轨道车队规模的模型。修改后的机器维修模型首先应用于虚拟露天矿案例研究。结果与使用虚拟矿山的相同输入参数的其他估计模型的输出相比具有优势。修改后的机器维修模型将进一步应用于现有的露天煤矿运营,以最佳煤矿的Ewagga部分为例。结果再次证实了从虚拟矿山案例研究中获得的结果。结论是,与现成的通用软件相比,机器维修模型可以负担得起,因为它可以轻松地在Microsoft Excel中建模,Microsoft Excel是大多数地雷已经使用的软件平台。本文报告了提交给南非约翰内斯堡威特沃特斯兰德大学的理学硕士研究的一部分工作。

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