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不同煤气种类下蓄热式钢包烘烤器节能潜力分析 被引量:4

Energy Saving Analysis of Regenerative Ladle Baking Equipment Based on Different Gases
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摘要 基于对6种典型煤气燃烧的分析,给出了蓄热式烘烤器相对于传统非蓄热式烘烤器的节能效果,并给出煤气选取建议。研究指出,蓄热式钢包烘烤器节能率随煤气热值的增加而降低,使用高炉煤气时节能率最高为73.07%,使用焦炉煤气时节能率最低为38.19%;建议钢包烘烤初期选用高炉-转炉混合煤气,中后期选用转炉-焦炉混合煤气。 Based on the combustions analysis of 6 typical gases, this paper analyzed the energy saving effect of regenerative ladle baking equipment compared with non-regenerative ones and gave the gas select advice. The results show that energy saving effect is declining with the increase of gas calorific value, the highest energy-saving radio is 73.07% when BF gas is used, and the lowest energy saving radio is 38.19% when CO gas is used. At the early period of baking process, BF-LD mixture gas is recommended to use, and at the middle and later period of baking process, LD-CO mixture gas is recommended to use.
出处 《工业加热》 CAS 2015年第2期8-11,共4页 Industrial Heating
关键词 蓄热式燃烧 烘烤 节能 regenerative combustion baking energy saving
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  • 1秦文,谢国威,于宏,王春凯.浅析蓄热式燃烧技术[J].冶金能源,2006,25(5):45-48. 被引量:17
  • 2OU JIANPING, XIAO ZEQIANG. Investigation and Application of HTAC in China [A]. Yokohama. HTACG5: Fifth International Symposium on High Temperature Air Combustion and Gasification [C], Tokyo: NFK of Japan, 2002: 28-30.
  • 3PIAN C C. Biomass Fueled MEET Gasifier [A]. XIAO ZEQIANG, KUNIO Y. Proceeding of High Temperature Air Combustion [C], Beijing: The Federation of Engineering Societies of China Association for Science and Technology, 1999:69-88.
  • 4GUPTA A K, HASEGAWA T. High Temperature Air Combustion: Flame Characteristics, Challenges and Opportunities[A]. XIAO Ze-qiang, Kunio Y. Proceeding of High Temperature Air Combustion [C], Beijing: The FederationofEngineering Societies of China Association
  • 5YOSHIKAWA A K. Gasification and Power Generation from Solid Fuels Using High Temperature Air [A]. XIAO ZEQIANG, KUNIO Y. Proceeding of High Temperature Air Combustion [C]. Beijing: The FederationofEngineeringSocieties of China Association for Science and
  • 6YOSHIKAWA K. R&D on Small-scale Gasification of Solid Fuel at the Demonstration Plant of MEET system, MEET Ⅱ[A]. Proceedings of the 4th International Symposium on High Temperature Air Combustion and Gasification [C]. Rome:ENEA of Italy, 2001.68-72.
  • 7GUPTA A K, HASEGAWA T. Effect of Air Preheating Temperature and Oxygen Concentration on Flame Structure and Emission [J]. JoumalofEnergy Resource Technology, 1999, 121(3): 209-213.
  • 8TANAKA R, KISHIMOTO K, HASEGAWA T. High Efficiency Heat Transfer Method with Use of High Temperature Preheated Air and Gas Re-circulation [J]. Science and Technology, 1994,1(4): 35-39.
  • 9萧泽强.高风温无焰燃烧(HTAC)技术在日、欧几国的开发应用近况研究报告[R].长沙:中南工业大学应用物理与热能工程系,1999..
  • 10吴道洪 谢善清 杨泽耒.蓄热式高温空气燃烧技术在我国冶金行业的应用[A].萧泽强.高温空气燃烧新技术讲座论文集[C].北京:中国科学技术协会工程学会联合会,1999.159-168.

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