期刊文献+

循环流化床锅炉一次风机的高压变频改造 被引量:2

High-voltage Frequency Conversion Transformation of the Primary Air Fan of Circulating Fluidized Bed Boiler
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摘要 主要介绍了SH-HVF系列Ⅲ型高压变频调速系统在山西潞安容海发电有限责任公司480 t/h循环硫化床机组一次风机高压变频改造中的应用。对采用自动、手动工频旁路的系统控制方式、改造取得的成效以及系统运行可靠性进行了详细阐述。 Mainly introduced the application of high-voltage frequency control system of SH-HVF Series type III in high-voltage frequency conversion transformation of the primary air fan of 480 t/h circulating fluidized bed units in Lu'an Ronghai Power Generation Co.,Ltd.of Shanxi.The article elaborated the system control mode of automatic,manual frequency bypass,the results achieved of transformation and the system reliability.
作者 申超
出处 《能源与节能》 2013年第5期100-102,共3页 Energy and Energy Conservation
关键词 高压变频 循环流化床锅炉 一次风机 可靠性 节能 high voltage frequency conversion circulating fluidized bed boiler primary air fan reliability energy conservation
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参考文献2

  • 1朱皑强;芮新红.循环流化床锅炉设备及系统[M]北京:中国电力出版社,2004.
  • 2周志刚.SH-HVF系列高压变频调速系统培训教材[M]湖北:湖北三环发展有限公司,2012.

同被引文献14

  • 1P Mirek, W Nowak. The influence of air distributor's geometry on combustion conditions in large-scale CFB boilers, Archives of Ther- modynamics,29(3 ) (2008) ,pp. 37 -44.
  • 2A Baszczuk, M Komorowski, W Nowak. Distribution of solids con- centration and temperature in the combustion chamber of the SC- OTU C FB boiler,Journal of Power Technologies, 92 (1) (2012), pp. 27 - 33.
  • 3N Matsui, E Kurokawa. Improvement of transient response of ther- mal power plant using VVVF inverter, Proceedings of the Interna- tional Conference on Power Electronics and Drive Systems 2007, (PEDS 2007) (2007) ,pp. 1209 - 1214.
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  • 6Heo,J. S. Lee, K. Y. A multiagent-System-Based Intelligent Ref- erence Governor for Muhiobjective Optimal Power Plant Operation [ J ]. 1EEE Transactions on Energy Conversion, 2008,23 ( 4 ) : 1082 - 1092.
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  • 8Hlmer, Z. D6v6nyi, G. and Kov6cs, J. et. al. Fuzzy control of com- bustion with genetic learning automata, Proceedings of the 16th IFAC World Congress ( IFAC 2005 ), (2005) ,pp. 121 - 126.
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  • 10牛培峰,孙键,柴天佑.循环流化床锅炉热工自动控制系统与展望[J].动力工程,1998,18(6):39-46. 被引量:32

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