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ANALYSIS OF THE THERMAL-KINETIC-FLUID-DYNAMIC PROFILE OF A SLAB REHEATING FURNACE USING CFD-DYNAMIC MESH

 |    : /

JANUARY 2025   -  Volume: 100 -  Pages: 23-29

DOI:

https://doi.org/10.52152/D11185

Authors:

MARIO ULISES CALDERÓN ROJAS
-
CONSTANTIN ALBERTO HERNANDEZ BOCANEGRA
-
JOSE ANGEL RAMOS BANDERAS
-
NANCY MARGARITA LÓPEZ GRANADOS
-
GILDARDO SOLORIO DIAZ
- LUIS ALBERTO MENDOZA DE LA ROSA

Disciplines:

  • Industrial technology (INGENIERIA DE PROCESOS )

Downloads:   23

How to cite this paper:  
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Received Date :   1 February 2024

Reviewing Date :   21 February 2024

Accepted Date :   3 July 2024


Key words:
Horno de Recalentamiento, CFD, Planchón, Malla Dinámica, Reheating Furnace, Slab, Dynamic Mesh, fluid dynamics, heat transfer
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
RESEARCH ARTICLES

In this work, the actual operating conditions of a walking beam and direct flame reheating furnace for conventional steel slabs in continuous motion were numerically simulated. The fluid dynamics, heat transfer, chemical species and combustion were solved in a coupled way using a continuous readaptation of the computational domain by means of a dynamic mesh. The results were validated by means of temperature measurements averaged over 24 hours of plant operation with 16 thermocouples, resulting in an average error of 2.56%. With the reduction in flow rates in the range of 70-85% and a decrease in load of ?66.5% there was an overheating in the furnace of up to 33% in excess. The use of dynamic meshes allowed the oxide growth rate to be studied showing that, the higher the temperatures and residence times in the furnace, the higher the oxidation rate of the slab.


Keywords: Reheating Furnace, CFD, Slab, Dynamic Mesh.

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