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首页> 外文期刊>鉄と鋼/Journal of the Iron and Steel Institute of Japan. >Improvement of mathematical model of blast furnace and its application in practical operation
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Improvement of mathematical model of blast furnace and its application in practical operation

机译:高炉数学模型的改进及其在实际生产中的应用

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摘要

Mathematical model of blast furnace operation has been being developed for about four decades. One of the major model frameworks consists of balance of mass, momentum, thermal energy and materials, transport phenomena theory, and chemical kinetics. The models on this basis have been extended from one-dimensional to multi-dimensional, and from steady to transient. This progress has improved the model accuracy and applicability. Although this model extension raised the computational load, recent progress of computer science and technology allows us to get the computed results in practical time period, and shows the capability to apply numerical simulation in the practical operation of blast furnace. This paper gives an outline of the recent mathematical model of the blast furnace operation, and some applications to the novel operation such as scrap charging and top gas recycling. Next, the expected phases of the model application in the practical operations are shown. Finally some phenomena to be clarified and formulated that are indispensable for the further development of the blast furnace models, and a new direction of model development, such as stochastic process and discontinuity, are shown.
机译:高炉操作的数学模型已经开发了大约四十年。主要的模型框架之一是质量,动量,热能和材料,传输现象理论和化学动力学的平衡。在此基础上,模型已从一维扩展到多维,从稳定扩展到瞬态。这一进步提高了模型的准确性和适用性。尽管该模型扩展增加了计算量,但是计算机科学和技术的最新进展使我们能够在实际时间段内获得计算结果,并显示了将数值模拟应用于高炉实际操作中的能力。本文概述了高炉操作的最新数学模型,以及在新颖操作中的一些应用,例如废料装料和炉顶煤气回收。接下来,显示了实际操作中模型应用程序的预期阶段。最后,提出了一些需要澄清和阐述的现象,这些现象对于高炉模型的进一步发展是必不可少的,并给出了模型发展的新方向,例如随机过程和不连续性。

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