DocumentCode :
2518757
Title :
Research on Boiler Drum Dynamic Model with Bond Graph
Author :
Yang, Xiyun ; Lv, Yuegang ; Xu, Daping
Author_Institution :
Dept. of Autom., North China Electr. Power Univ., Beijing
Volume :
1
fYear :
2006
fDate :
Aug. 30 2006-Sept. 1 2006
Firstpage :
352
Lastpage :
355
Abstract :
Drum level parameter in power natural circulation boiler is required to supervise and maintain for safety and efficiency and creating its accurate model to analyze system dynamic behaviors is critical for improving control performance. A power bond graph model of boiler vaporization system is firstly proposed in the paper. Due to complicated energy and mass transferring in boiler circuit vaporization system, a multi-ports C field of bond graph model is established to present control volume model with accumulating hydraulic and thermal energy. Bond graph sub-models with multi-ports C element are built and connected to obtain an integral model of boiler vaporization. The math descriptions for bond graph model of subsystem are also given. The simulation curves show that this bond graph model can effectively describe process characteristic and testify the "shrink and swell" phenomenon in boiler drum under the variable operation condition. This provides a new approach for modeling thermal process
Keywords :
boilers; graph theory; power station control; boiler circuit vaporization system; boiler drum dynamic model; drum level parameter; hydraulic energy; power bond graph model; power natural circulation boiler; system dynamic behavior; thermal energy; thermal process modeling; variable operation condition; Boilers; Bonding; Circuits; Equations; Graph theory; Performance analysis; Power system modeling; Thermal variables control; Thermodynamics; Weight control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Innovative Computing, Information and Control, 2006. ICICIC '06. First International Conference on
Conference_Location :
Beijing
Print_ISBN :
0-7695-2616-0
Type :
conf
DOI :
10.1109/ICICIC.2006.149
Filename :
1691812
Link To Document :
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