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Simulation-Based Approach to Assess Impact of Increasing Skip Capacity for Underground Mining

  • Fazleena Badurdeen,
  • Alperen Bal,
  • Zach Agioutantis,
  • Steve Hicks

摘要

Material excavated in underground mines must be hoisted to the surface level for processing and distribution. The capacity of these hoisting facilities, known as skips, can be a limiting factor that determines the rate at which excavated material can be removed to the surface. This paper presents the application of discrete event simulation to study the operations of an underground coal mining system to evaluate the impact of increasing skips capacity, together with adding buffers ahead of skips, and any bottlenecks that will be encountered. Different scenarios are considered to evaluate any variation in performance based on the area of the mine being excavated. The results reveal that adding a new skip facility can help increase monthly production output by more than 16% compared to the current levels, indicating a very favorable return on the investment. Findings also show that overall utilization of the skip facilities declines and that expected output is driven by the effective carrying capacity of the belt conveyors. Further research can be conducted to determine the effective buffer capacity and also the optimal effective belt conveyor carrying capacities to maximize production output.