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LF精炼工艺的分析 被引量:1

Exergy Analysis of LF Refining Process
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摘要 采用分析方法,对LF精炼过程进行了分析。LF内部损失和外部损失分别占总损失的29%和71%,外部损失为主要损失。电能无用功所引起的损失占总损失的62.28%,减少电能无用功引起的损失是提高效率和节能的主要方向。 In this article, the refining progress of LF was analysed using exergy analysis method. The internal and external exergy lose is 29% and 71% of total exergy lose respectively, the external exergy lose is the main lose. The exergy lose induced by invalidate work of electricity is 62.28% of total exergy lose, the primary direction of enhancing exergy efficiency and saving energy is to reduce the invalidate work of electricity.
出处 《工业加热》 CAS 2008年第5期49-50,53,共3页 Industrial Heating
关键词 LF [火用] [火用]损失 节能 LF exergy exergy lose energy saving
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  • 1SZARGUT J, MORRIS D R, STEWARD F R. Exergy Analysis of Thermal, Chemical and Metallurgical Processes [M]. New York: Hemisphere, 1988.
  • 2SZARGUT J. Exergetic Balance of Metallurgical Processes [J]. Arch Hutnictwa, 1961, (6): 23-60.
  • 3BRAUER H, JESCHAR R. The Significance of Exergy for the Thermodynamic Study of the Blast-furnace Process [J]. ArchFuerDasEisenhuettenwesen, 1963, 34: 9-16.
  • 4AKIYAMA T, YAGI J. Exergy Analysis of Conventional Ironmaking, Direct Reduction-electric Furnace and Smelting Reduction Systems [J]. Tetsu-to-Hagane, 1988, 74 (12) : 2270-2277.
  • 5BISIO G, RUBATTO G, MARTINI R. Heat Transfer, Energy Saving and Pollution Control in UHP Electro-arc Furnaces [J]. Energy, 2000, 25: 1047-1066.
  • 6OLEG OSTROVSKI, GUANGQING ZHANG. Energy and Exergy Analyses of Direct lronsmelting Processes [J]. Energy, 2005, 30: 2772-2783.
  • 7MA' RCIO MACDDO COSTA, ROBERTO SCHAEFFER, ERNST WORRELL. Exergy Accounting of Energy and Materials Flows in Steel Production systems [J]. Energy, 2001, 26: 363-384.

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