Experimental and discrete element simulation studies of bell-less charging of blast furnace
| Data(s) |
31/01/2013
31/01/2013
15/03/2013
|
|---|---|
| Resumo |
This thesis presents an experimental study and numerical study, based on the discrete element method (DEM), of bell-less charging in the blast furnace. The numerical models are based on the microscopic interaction between the particles in the blast furnace charging process. The emphasis is put on model validation, investigating several phenomena in the charging process, and on finding factors that influence the results. The study considers and simulates size segregation in the hopper discharging process, particle flow and behavior on the chute, which is the key equipment in the charging system, using mono-size spherical particles, multi-size spheres and nonspherical particles. The behavior of the particles at the burden surface and pellet percolation into a coke layer is also studied. Small-scale experiments are used to validate the DEM models. |
| Identificador |
http://www.doria.fi/handle/10024/87878 URN:NBN:fi-fe201311087297 |
| Idioma(s) |
en |
| Publicador |
Åbo Akademi University |
| Relação |
ISBN 978-952-12-2841-4 |
| Direitos |
This publication is copyrighted. You may download, display and print it for Your own personal use. Commercial use is prohibited. |
| Tipo |
Doctoral dissertation (composite part), Doktorsavhandling (sammanläggnings-delen), Väitöskirja (yhteenveto-osa) |