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这是Peter Richard AUSTIN.Hiroshi NOGAManId Jun-ichiro YAGl等人在97作过的高炉仿真的论文.
A two dimensional mathematical model is developed describing four phase chemical reactions, motion,
and heat transfer in the blast furnace. The four phases are gas, Iump solid, Iiquid and powder. The model
simultaneously calculates the steady state composition, velocity, temperature, and volume fraction of all
four phases. The predicted gas, solid and liquid phase compositions are plausible, but the fines dynamic
holdup distribution is sensitive to the fines consumption processes in the raceway. The model has also been
做这方面的朋友可以看看.
extended to include silicon transfer reactions. Comparedto the base calculations, the predicted cohesive
zone position is higher and the bosh is cooler whensilicon transfer is included, The model predicts SiO
generation from both coke ash silica and molten silica, the latter being the main contributor to hot metal
silicon content in the case considered. |
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