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首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >Optimization of the load-and-haul operation at an opencast colliery
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Optimization of the load-and-haul operation at an opencast colliery

机译:Opencast煤矿的负载和运营优化

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The current coal raining climate is characterized by coal price volatility, political instability, high labour costs, and increasing operational costs. This is exacerbated by a steady decline in the growth of global coal demand due to the increased use of alternative and renewable fuels in the energy industry. Locally, the overall mining cost inflation indices shows a yearly increase of 2% over the national consumer inflation. In order for coal mines to survive and mine profitably, they need to capitalize on the opportunity to improve their productivity and focus on one factor they can control: operational efficiency. Increasing productivity is one of the key drivers to counter diminishing profit margins. Increasing production effectively reduces operating costs. However, the emphasis should not only be on increasing output with the same input, but increasing the output while decreasing the input, and ultimately adding optimum value to current resources. Research shows that an increase in production will ultimately decrease the operation's unit cost, especially fixed costs.In this study a load-and-haul fleet optimization approach has been used to identify the opportunities for operational improvement at an opencast colliery. The study combines the results of a literature review, on-site time studies, and statistical data analysis in order to determine the best loader-truck fleet combinations for increased production. Several relevant key performance indicators (KPIs) for the evaluation and identification of productivity improvement opportunities were defined during this study. These KPIs are bucket fill factor, loading conditions, loading cycle time, utilization, and deviations from schedule. The priority delays determined by on-site time studies compared to the time book for each delay showed that idle or waiting time by the loaders, face preparation and relocation, and process delays had significant deviations. However, the results showed that this operation is under-trucked, hence optimizing the loader-related inputs proved less effective than optimizing truck-related inputs. The results indicated that a homogeneous truck fleet consisting of five Caterpillar 789C trucks, combined with a Caterpillar 994K loader, is the most efficient fleet option and will produce 1455 t/h. The combined optimized effect of each identified KPI of production led to a tonnage improvement opportunity of 54211 per shift.
机译:目前的煤炭雨水雨量的特点是煤价波动,政治不稳定,劳动力成本高,越来越多的运营成本。由于在能源行业中使用替代品和可再生燃料的使用增加,这将加剧了全球煤炭需求增长的稳步下降。在本地,整体采矿成本通胀指标显示全国消费通胀的每年增加2%。为了让煤矿生存和矿井有利可图,他们需要利用机会提高他们的生产力,并专注于他们可以控制的一个因素:运营效率。提高生产力是抵消利润率递减的关键障碍之一。增加生产有效降低了运营成本。但是,重点不仅应该在增加相同的输入输出时,而且在降低输入的同时增加输出,并最终向当前资源增加最佳值。研究表明,生产的增加将最终降低运营的单位成本,特别是固定成本。本研究已被用来识别露天矿业在运营改善机会的机会。该研究结合了文献综述,现场时间研究和统计数据分析的结果,以确定最佳的装载机 - 卡车队列组合,用于增加产量。在本研究期间定义了几种相关关键绩效指标(KPI)的评估和识别生产力提高机会。这些KPI是铲斗填充因子,装载条件,加载循环时间,利用率和偏差。由现场时间研究确定的优先级延迟与每个延迟的时间延迟相比显示了装载机,面部准备和重定位的空闲或等待,以及过程延迟具有重要偏差。然而,结果表明,该操作不足,因此优化了与优化卡车相关的输入的有效的加载程序相关的输入。结果表明,由五个Caterpillar 789C卡车组成的均匀卡车舰队,与Caterpillar 994K装载机组成,是最有效的舰队选项,并将产生1455吨/小时。每个识别的KPI的合并优化效果导致每班次54211的吨位改善机会。

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