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A discrete-event model to simulate the effect of truck bunching due to payload variance on cycle time, hauled mine materials and fuel consumption

机译:离散事件模型,用于模拟由于有效载荷变化而导致的卡车捆扎对周期时间,运输的矿山材料和燃料消耗的影响

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Data collected from truck payload management systems at various surface mines shows that the payload variance is significant and must be considered in analysing the mine productivity,energy consumption,greenhouse gas emissions and associated cost.Payload variance causes significant differences in gross vehicle weights.Heavily loaded trucks travel slower up ramps than lightly loaded trucks.Faster trucks are slowed by the presence of slower trucks,resulting in‘bunching’,production losses and increasing fuel consumptions.This paper simulates the truck bunching phenomena in large surface mines to improve truck and shovel systems’efficiency and minimise fuel consumption.The study concentrated on completing a practical simulation model based on a discrete event method which is most commonly used in this field of research in other industries.The simulation model has been validated by a dataset collected from a large surface mine in Arizona state,USA.The results have shown that there is a good agreement between the actual and estimated values of investigated parameters.
机译:从各个露天矿的卡车有效载荷管理系统收集的数据表明,有效载荷差异很大,在分析矿山的生产率,能源消耗,温室气体排放量和相关成本时必须考虑这些差异。有效载荷差异会导致车辆总重的显着差异。卡车的行驶坡道比轻载的卡车慢。由于存在速度较慢的卡车,导致“成束”,生产损失和燃料消耗增加,因此使卡车减速。本文模拟了大型露天矿的卡车集束现象,以改善卡车和铲车该系统着重于完成基于离散事件方法的实用仿真模型,该模型是其他行业在该研究领域中最常用的模型。该仿真模型已通过从大型企业收集的数据集进行了验证美国亚利桑那州的露天矿。结果表明,研究参数的实际值和估计值之间的一致性。

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