首页> 外文会议>International Scientific Conference on Metallurgy: Technologies, Innovation, Quality >Mathematical model and software for control of commissioning blast furnace
【24h】

Mathematical model and software for control of commissioning blast furnace

机译:用于控制高炉控制的数学模型和软件

获取原文

摘要

Blowing-in is a starting period of blast furnace operation after construction or major repair. The current approximation methods of blowing-in burden analysis are based on blowing-in practice of previously commissioned blast furnaces. This area is theoretically underexplored; there are no common scientifically based methods for selection of the burden composition and blast parameters. The purpose of this paper is development and scientific substantiation of the methods for selection of the burden composition and blast parameters in the blast furnace during the blowing-in period. Research methods are based on physical regularities of main processes running in the blast furnace, system analysis, and application of modern principles for development and construction of mathematical models, algorithms and software designed for automated control of complex production processes in metallurgy. As consequence of the research made by the authors the following results have been achieved: 1. A set of mathematical models for analysis of burden arrangement throughout the height of the blast furnace and for selection of optimal blast and gas dynamic parameters has been developed. 2. General principles for selection of the blowing-in burden composition and blast and gas dynamic parameters have been set up. 3. The software for the engineering and process staff of the blast furnace has been developed and introduced in the industry.
机译:吹入是建造或重大修复后高炉运行的起始时期。当前吹入负荷分析的近似方法基于先前委托的高炉的吹入实践。这个区域理论上是望远镜的;选择负荷组成和爆炸参数没有共同的科学方式。本文的目的是在吹入期间,在高炉中选择负荷组成和喷射参数的方法的开发和科学证实。研究方法基于高炉,系统分析和现代原则中运行的主要流程的物理规律,用于开发和构建数学模型,设计用于冶金中复杂生产过程的自动控制的算法和软件。由于作者所做的研究结果,已经实现了以下结果:1。已经开发了一组用于分析在高炉高度和选择最佳爆破和气体动态参数的整个负荷布置的数学模型。 2.已经建立了选择吹入吹入负荷组成和爆破和气体动态参数的一般原则。 3.在业内开发和引入了高炉工程和工艺员工的软件。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号