A novel method for modeling the phase change of iron ore particles in the cohesive zone of a blast furnace
Author:
Publisher
Elsevier BV
Subject
General Chemical Engineering,General Materials Science
Reference24 articles.
1. Modeling of heat transfer in pneumatic conveyer using a combined DEM-CFD numerical code;Brosh;Drying Technology,2010
2. Spherical solidification by the enthalpy method and the heat balance integral method;Caldwell;Applied Mathematical Modelling,2000
3. Modeling of blast furnace with layered cohesive zone;Dong;Metallurgical and Materials Transactions B,2010
4. Validation of CFD–DEM model for iron ore reduction at particle level and parametric study;E;Particuology,2020
5. Heat recovery process modelling of semi-molten blast furnace slag in a moving bed using XDEM;Feng;Energy,2019
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