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Modeling and Evaluation of Benefits of Trolley Assist System for Mining Trucks

机译:采矿卡车推车辅助系统效益的建模与评价

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As the exploitation of an open pit mine is evolving, the depth and therefore the distance traveled by the mine haul trucks increases. As a result, the operational cost of mining operation increases due to the higher consumption of fuel and tires. This work presents the evaluation of the performance of a truck fleet when using a trolley assistance system. A model of the trolley system is developed using an AFE converter, which in combination with the integrated electric-mechanical model of a mining truck, allows quantifying the production increase, fuel savings and net energy consumption during an up-down cycle of the truck. A set of evaluations are presented, first on idealized uphill and downhill routes, and then using the coordinates of a route of a copper mine located to the north of Chile. Results show a 44% increase in the upgrade speed, a 16% reduction of the travel time, and a fuel saving of over 85% on each up-down cycle. The tool developed allows evaluating the performance of a truck fleet in any mine facility, just knowing the coordinates of the mine routes and the models of the trucks.
机译:随着开放式坑洼的开发正在进行,深度,因此矿井卡车行进的距离增加。结果,由于燃料和轮胎的消耗较高,采矿操作的运行成本增加。这项工作介绍了使用手推车援助系统时卡车舰队性能的评估。使用AFE转换器开发了一种台车系统的模型,它与采矿卡车的集成电机模型相结合,允许在卡车的上下周期期间量化生产增加,燃料节省和净能量消耗。提出了一系列评估,首先是理想化的上坡和下坡路线,然后使用位于智利北部的铜矿路线的坐标。结果显示升级速度增加44%,减少旅行时间的16%,每次上下周期都有超过85%的燃料。该工具开发允许评估卡车队在任何矿井设施中的性能,只知道矿山路线和卡车型号的坐标。

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