This paper describes the development of a heat transfer model with the purpose of studying the heat flows in the hearth of an operating blast furnace. Temperature profiles were calculated for a period of time to study the transition from steady blast furnace operation to an unsteady period, and back to a steady period. This total time period had the highest lining temperatures registered since the beginning of the current campaign. It was concluded that no part of the lining had an inner temperature higher than the critical temperature of 1150 degrees C. Thus, no refractory could have been in direct contact with slag or iron. The corner between the wall and the bottom was identified to be the most sensitive part of the lining. It is suggested that thermocouples are installed in this area, to improve the temperature control.
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Innvel Sci Consulting, C Santiago 2 Bajo, Gijon 33210, Spain
Univ Santiago de Compostela, Dept Appl Math, Campus Vida, Santiago De Compostela 15782, SpainInnvel Sci Consulting, C Santiago 2 Bajo, Gijon 33210, Spain
Vazquez-Fernandez, S.
Garcia-Lengomin Pieiga, A.
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ArcelorMittal, Global R&D Asturias, Primary & By Prod Dept, POB 90, Aviles 33400, SpainInnvel Sci Consulting, C Santiago 2 Bajo, Gijon 33210, Spain
Garcia-Lengomin Pieiga, A.
Lausin-Gonzalez, C.
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ArcelorMittal, Global R&D Asturias, Primary & By Prod Dept, POB 90, Aviles 33400, SpainInnvel Sci Consulting, C Santiago 2 Bajo, Gijon 33210, Spain
Lausin-Gonzalez, C.
Quintela, P.
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Univ Santiago de Compostela, Dept Appl Math, Campus Vida, Santiago De Compostela 15782, Spain
Technol Inst Ind Math ITMATI, Campus Vida, Santiago De Compostela 15782, SpainInnvel Sci Consulting, C Santiago 2 Bajo, Gijon 33210, Spain