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Application of Simulation Technology to the Design of Coal Clearance Systems

机译:仿真技术在煤隙系统设计中的应用

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Longwall mining operations have been in place in Australia since the early 1960s. This mining method is currently used to extract the bulk of coal obtained from underground mines in Australia (CSIRO, 2010). Despite the high tonnages extracted the expected utilisation of much equipment remains relatively low. To some extent this level of utilisation is infl uenced by the variability in conditions inherent in the mining process. This variability in production rates presents challenges to those attempting to design a coal clearance system. The diffi culty is to design a system that has suffi cient capacity to support production, without over capitalising or incurring high operating costs. The need to allow for a series of largely unplanned events in the design of a coal clearance system makes simulation modelling an ideal technology to employ. Simulation modelling is a methodology that allows a system with interacting components to be modelled over time, while explicitly taking into account unplanned events that may disrupt operations. This paper discusses how dynamic simulation models have been used to assist in the design of coal clearance systems. Typically this type of modelling has been used to look at the likely profi le of production rates from the Longwall shearer and to determine how well various proposed combinations of belts, bins and stockpiles would support production.
机译:自20世纪60年代初以来,Longwall采矿业务已到达澳大利亚。该采矿方法目前用于提取从澳大利亚的地下矿山获得的大部分煤(CSIRO,2010)。尽管高吨位提取了预期利用大量设备仍然相对较低。在某种程度上,这种利用水平受到采矿过程中固有的条件的变异性的影响。这种生产率的这种变化对试图设计煤炭清除系统的人具有挑战。 Diffi Culty是设计一种系统,该系统具有足够的能力来支持生产,而无需大写或产生高运营成本。需要允许在煤炭清除系统的设计中进行一系列主要意外的事件使仿真建模建立一种理想的技术。仿真建模是一种方法,允许一个系统随着时间的推移建模的交互组件,同时明确地考虑了可能破坏操作的计划生事件。本文讨论了如何使用动态仿真模型来帮助设计煤隙系统。通常,这种类型的建模已被用于从长墙剪切者看出可能的生产率的可能性速率,并确定皮带,垃圾箱和库存的各种拟议组合如何支持生产。

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