黑色冶金中的集约节能方法。使用经验和结果

Q4 Materials Science
S. V. Kartavtsev, E. G. Neshporenko, S. V. Matveev
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引用次数: 0

摘要

摘要集约节能和技术进步对于黑色冶金这样一个领域来说非常重要。在多年研究和系统方法的基础上,本文总结并进一步发展了冶金工厂技术阶段集约节能方法的规定。文中介绍了 1980-2023 年期间在黑色冶金能源和热能技术领域应用集约节能方法论(MIES)的经验。莫斯科能源研究所(现国立莫斯科能源研究所大学)工业热能与动力工程学院积累的经验在 G.I. 诺索夫-马格尼托哥尔斯克国立技术大学得到了进一步发展。莫斯科能源学院工业热能与动力工程系的经验在 G.I. 诺索夫-马格尼托哥尔斯克国立技术大学得到了进一步发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Methodology of Intensive Energy Saving in Ferrous Metallurgy. Experience and Results of Use

Abstract

Intensive energy saving and technological progress are very relevant for such an area as ferrous metallurgy. Based on many years of research and a systematic approach, the paper summarizes and further develops the provisions of the intensive energy saving methodology for technological stages of metallurgical factories. The experience of applying the methodology of intensive energy saving (MIES) in the field of energy and heat technology of ferrous metallurgy for the period 1980–2023 has been presented. The accumulated experience at the Faculty of Industrial Heat and Power Engineering at the Moscow Energy Institute (now National Research University MPEI) was further developed within the walls of G.I. Nosov Magnitogorsk State Technical University. The provisions of the MIES have found practical application at industrial metallurgical factories.

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来源期刊
Steel in Translation
Steel in Translation Materials Science-Materials Science (all)
CiteScore
0.60
自引率
0.00%
发文量
81
期刊介绍: Steel in Translation  is a journal that represents a selection of translated articles from two Russian metallurgical journals: Stal’  and Izvestiya Vysshikh Uchebnykh Zavedenii. Chernaya Metallurgiya . Steel in Translation  covers new developments in blast furnaces, steelmaking, rolled products, tubes, and metal manufacturing as well as unconventional methods of metallurgy and conservation of resources. Papers in materials science and relevant commercial applications make up a considerable portion of the journal’s contents. There is an emphasis on metal quality and cost effectiveness of metal production and treatment.
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