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Mine ventilation network optimization using nonlinear programming techniques.

机译:使用非线性编程技术优化矿井通风网络。

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摘要

Mine ventilation, though costly, has to be maintained for any underground coal mine for the sake of miners' safety and health. Higher productivity and more stringent environmental standards require greater quantities of air at the underground working faces. These conditions have brought a great increase in the costs of mining. To survive in the current state of market competition for the mining industry, more concerns have to be addressed on developing a ventilation system which is functionally effective and reliable, and yet economically efficient. Mine ventilation network optimization is one of the approaches to reach that objective.; This dissertation is intended to introduce nonlinear programming techniques into mine ventilation network optimization. In the research, network optimization was modeled and formulated as a standard nonlinear programming problem. Then, nonlinear programming techniques for solving the network optimization problem were investigated. The research successfully introduced MINOS, one of the available nonlinear programming systems, for mine ventilation network optimization. Network optimization was also solved using the generalized reduced gradient (GRG) method. In general, the GRG method is one of the most effective and efficient methods for solving a large-scale nonlinear programming problem. Throughout the dissertation research, a computer program, MVENTOPT-GRG, based on the GRG method was developed for mine ventilation network optimization. The solution of the network optimization using MINOS and the GRG method are demonstrated with examples. The introduction of the nonlinear programming techniques provides new tools for ventilation engineers or analysts to handle ventilation problems.
机译:为了提高矿工的安全和健康,任何地下煤矿都必须维持矿井通风,尽管成本很高。更高的生产率和更严格的环境标准要求地下工作面有更多的空气。这些条件极大地增加了采矿成本。为了在采矿业的当前市场竞争状态下生存,必须解决更多有关开发通风系统的问题,该通风系统在功能上应是可靠的,但在经济上却是有效的。矿井通风网络优化是达到该目标的方法之一。本文旨在将非线性规划技术引入矿井通风网络优化中。在研究中,对网络优化进行了建模,并将其制定为标准的非线性规划问题。然后,研究了用于解决网络优化问题的非线性编程技术。该研究成功引入了MINOS(一种可用的非线性编程系统),用于矿井通风网络优化。还使用广义降梯度(GRG)方法解决了网络优化问题。通常,GRG方法是解决大规模非线性规划问题的最有效方法之一。在整个论文研究中,开发了基于GRG方法的计算机程序MVENTOPT-GRG,用于矿井通风网络优化。举例说明了使用MINOS和GRG方法进行网络优化的解决方案。非线性编程技术的引入为通风工程师或分析人员提供了解决通风问题的新工具。

著录项

  • 作者

    Huang, Changhong.;

  • 作者单位

    West Virginia University.;

  • 授予单位 West Virginia University.;
  • 学科 Mathematics.; Engineering Civil.; Engineering Mining.
  • 学位 Ph.D.
  • 年度 1993
  • 页码 142 p.
  • 总页数 142
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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