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ANINTELLIGENT DECISION SUPPORTSYSTEM(IDSS) ONTHEPROCESSOFNICKELMATTESMELTER 被引量:1
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作者 mei chi Peng Xiaoqi Zhou Jiemin(Department of Applied Physics and Heat Engineering, Central South University of Technology, Changsha, 410083, china) 《Journal of Central South University》 SCIE EI CAS 1994年第1期14-18,共5页
This paper describes the structure and function of the intelligent decision support system (IDSS) on the process of nickel matte smelter. The knowledge and model base system based on fuzzy-decision rules ale specially... This paper describes the structure and function of the intelligent decision support system (IDSS) on the process of nickel matte smelter. The knowledge and model base system based on fuzzy-decision rules ale specially suggested. The IDSS possesses the self-learning and adaptive properties, andhas been used for managing and analyzing the production information, optimizing the composition of the charge mixture, and deciding the optimal operational conditions. Electric energy consumption has been reduced remarkably and the yield of nickel has been increased. 展开更多
关键词 fuzzy-decision SMELTING equipments: NICKEL MATTE SMELTER intelligent DECISION support system
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NUMERICAL SIMULATION AND ANALYSIS ON THE VELOCITY FIELD IN BATH OF A ROUND ELECTRIC CLEANING FURNACE
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作者 Zhou Ping mei chi +1 位作者 Zhou Shuiliang Wang Qianpu(Department of Applied Physics and Heat Engineering, Central SouthUniversity of Technology, Changsha 410083, china) 《Journal of Central South University》 SCIE EI CAS 1997年第1期54-57,共4页
The flowing behavior of liquid slag has an important effect on the heat efficiency, recovery ratio ofvaluable metals and life span of the electric cleaning furnace. The velocity procedure using "κ-ε" model... The flowing behavior of liquid slag has an important effect on the heat efficiency, recovery ratio ofvaluable metals and life span of the electric cleaning furnace. The velocity procedure using "κ-ε" model wasdeveloped under the cylindrical coordinate system. The procedure is used to calculate the velocity field ofmolten slag. The forces acting on molten slag were analyzed. The calculating method of electromagnetic forcewas described. The discrete equations, which were solved by using SIMPLE algorithm, were generated bymeans of interlace grids and control volume. The boundary layers near the solid wall were treated as wallfunction. The velocity distribution is obtained. The results show that the velocity of molten slag varies withdifferent horizontal sections. There are six eddies in the surface layer of molten slag. A large circle is formedin the sections below the electrodes, while the longitudinal section includes two large circles around the electrode. The influences of the features of the velocity field on the operation in the electric cleaning furnace arediscussed in detail. 展开更多
关键词 NUMERICAL simulation velocity field ELECTRIC FURNACE
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