Performance improvement of mining haul trucks operating on trolley systems

J. Mazumdar
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引用次数: 8

Abstract

A typical mining facility uses off-road mining trucks to haul materials, such as coal, ore, and overburden from the pit to a stockpile where the material can be stored or processed. A conventional haul truck operates with diesel engine, adding considerable fuel expenses to the entire mining operation. The objective of the mines is to achieve the movement of the highest possible payload per hour while minimizing operating costs over the lifetime of the machines. Operating the trucks with power from the overhead trolley lines, especially while going up on a grade significantly increases productivity, reduces fuel costs and qualifies as a green solution. One of the major concerns of using trolley system is the availability of the trolley line, which affects the productivity directly since one or more trucks rely on the trolley line. The possible fault influencing the availability comes from the various operating parameters of the truck as well as the design of the trolley system. Whenever a fault occurs, it is desirable to isolate this truck for maintenance without affecting the substations and the other trucks on the same line. This paper presents the performance improvement of the trolley assisted haul trucks and their solutions through simulation study and field experimental results.
在无轨电车系统上运行的矿用运输卡车的性能改进
典型的采矿设施使用越野采矿卡车将煤、矿石和覆盖层等材料从矿坑运送到可以储存或加工材料的仓库。传统的运输卡车使用柴油发动机,为整个采矿作业增加了相当大的燃料费用。地雷的目标是实现每小时尽可能高的有效载荷的移动,同时在机器的使用寿命内尽量减少操作成本。使用架空电车线路的电力来操作卡车,特别是在斜坡上行驶时,可以显著提高生产率,降低燃料成本,并被认为是一种绿色解决方案。使用电车系统的主要问题之一是电车线路的可用性,由于一辆或多辆货车依赖于电车线路,它直接影响到生产率。影响可用性的可能故障来自于小车的各种运行参数以及小车系统的设计。每当发生故障时,最好隔离这辆卡车进行维修,而不影响变电站和同一线路上的其他卡车。通过仿真研究和现场试验结果,提出了小车辅助运输车辆的性能改进及解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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