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首页> 外文期刊>Journal of environment informatics >Production Scheduling and Waste Disposal Planning for Oil Sands Mining Using Goal Programming
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Production Scheduling and Waste Disposal Planning for Oil Sands Mining Using Goal Programming

机译:基于目标规划的油砂开采生产计划与废物处置计划

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摘要

In oil sands mining, timely provisions of ore and tailings containment with less environmental footprints are the main drivers of profitability and sustainability. The recent Alberta Energy Resources Conservation Board Directive 074 requires oil sands waste disposal planning to be an integral part of mine planning. This requires the development of a well integrated strategy of directional mining and tailings dyke construction for in-pit and ex-pit tailings storage management. The objectives of this paper are to: 1) determine the order and time of extraction of ore, dyke material and waste that maximizes the net present value; 2) determine the destination of dyke material that minimizes construction cost; and 3) minimize deviations from the production goals of the mining operation. We have developed, implemented, and verified a theoretical optimization framework based on mixed integer linear goal programming (MILGP) to address these objectives. This study presents an integration of mixed integer linear programming and goal programming in solving large scale mine planning optimization problems using clustering and pushback techniques. Application of the MILGP model was presented with an oil sands mining case. The MILGP model generated a smooth and uniform mining schedule that generates value and provides a robust framework for effective waste disposal planning. The results show that mining progresses with an ore to waste ratio of 1:1.5 throughout the mine life, generating an overall net present value of $14,237M. This approach improves the sustainable development of oil sands through better waste management.
机译:在油砂开采中,及时提供对矿石和尾矿的控制以及对环境的影响较小,是盈利和可持续性的主要驱动力。最近的艾伯塔省能源资源保护委员会指令074要求将油砂废物处置计划作为矿山计划的组成部分。这就需要开发一种用于井下和尾矿尾矿存储管理的定向采矿和尾矿堤建设的良好集成策略。本文的目标是:1)确定提取矿石,堤坝材料和废物的顺序和时间,以使净现值最大化。 2)确定堤坝材料的目的地,以最大程度地降低建设成本; 3)尽量减少与采矿作业的生产目标的偏差。我们已经开发,实施和验证了基于混合整数线性目标规划(MILGP)来解决这些目标的理论优化框架。这项研究提出了混合整数线性规划和目标规划的集成,以使用聚类和后推技术解决大规模矿山规划优化问题。在油砂开采案例中介绍了MILGP模型的应用。 MILGP模型生成了一个平稳而统一的采矿计划,该计划产生了价值并为有效的废物处置计划提供了可靠的框架。结果表明,采矿过程中矿山与矿山之比为1:1.5,总净现值为$ 142.37亿。这种方法通过更好的废物管理改善了油砂的可持续发展。

著录项

  • 来源
    《Journal of environment informatics》 |2012年第1期|p.20-33|共14页
  • 作者单位

    Mining Optimization Laboratory, School of Mining and Petroleum Engineering, Department of Civil and Environmental Engineering, 3-133 Markin/CNRL Natural Resource Engineering Facility, University of Alberta, Edmonton, Alberta T6G 2W2, Canada;

    Mining Optimization Laboratory, School of Mining and Petroleum Engineering, Department of Civil and Environmental Engineering, 3-133 Markin/CNRL Natural Resource Engineering Facility, University of Alberta, Edmonton, Alberta T6G 2W2, Canada;

    Mining Optimization Laboratory, School of Mining and Petroleum Engineering, Department of Civil and Environmental Engineering, 3-133 Markin/CNRL Natural Resource Engineering Facility, University of Alberta, Edmonton, Alberta T6G 2W2, Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    oil sands mining; production scheduling optimization; mixed integer linear goal programming; waste disposal planning; dyke construction;

    机译:油砂开采;生产调度优化;混合整数线性目标规划;废物处置计划;堤防建设;

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