Application of Partial Unsteady Simulator and LOM for Blast Furnace Operation Support

In the field of pig ironmaking process, operation malfunction is caused by both enlarging a blast furnace and increasing use of low quality ore. Thus, operation support systems predicting a blast furnace performance are demanded. This paper reports application of a partial unsteady simulator and a "large-scale database-based online modeling (LOM)" for blast furnace operation support. First, the partial unsteady simulator constructed by using steady model as fundamental model is described. Second, a generalized LOM rebuilt by the existing LOM system is introduced. Third, a Java-based operation support system is described. The system is realized by combining the simulator of the physical modeling method and the LOM of the local modeling method. The system predicts dynamic molten pig-iron temperature in blast furnace. To predict the dynamic molten pig-iron temperature, a basic tank model of metal and slag is incorporated into the simulator. Functions representing effect of pulverized coal injection are incorporated into the unsteady model

[1]  Harutoshi Ogai,et al.  Java-based integrating simulator for blast furnace , 2005 .

[2]  H. Ogai,et al.  Development of Generalized Large-scale database-based Online Modeling and its speed-enhancement technology , 2006, 2006 SICE-ICASE International Joint Conference.

[3]  Harutoshi Ogai,et al.  Large scale database-based online modeling on blast furnace operation , 2004 .

[4]  S. Matsuzaki,et al.  Development of the visual information technique of blast furnace process data , 2004, Proceedings of the 2004 IEEE International Conference on Control Applications, 2004..

[5]  H. Ogai,et al.  Large scale database online modeling for blast furnace , 2004, Proceedings of the 2004 IEEE International Conference on Control Applications, 2004..

[6]  H. Ogai,et al.  Development of the blast furnace integrated Java-based simulator , 2004, Proceedings of the 2004 IEEE International Conference on Control Applications, 2004..