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Influence of Cohesive Zone Shape on Solid Flow in COREX Melter Gasifier by Discrete Element Method 被引量:3

Influence of Cohesive Zone Shape on Solid Flow in COREX Melter Gasifier by Discrete Element Method
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摘要 Based on the principle of discrete element method (DEM), a 2D slot model of a COREX melter gasifier was established to analyze the influence of cohesive zone shape on solid flow, including mass distribution, velocity distribution, normal force distribution and porosity distribution at a microscopic level. The results show that the co- hesive zone shape almost does not affect the particle movement in the upper shaft and deadman shape. The particles in the lower central bottom experience large normal force to support the particles above them, while particles around the raceway and in the fast flow zone exhibit weak force network. The porosity distribution was also examined under three kinds of cohesive zones. Like the velocity distribution, the whole packed bed can be divided into four main re- gions. With the increase of cohesive zone position, the low porosity region located in the root of cohesive zone increa- ses. And the porosity distribution becomes asymmetric in the case of biased cohesive zone. Based on the principle of discrete element method (DEM), a 2D slot model of a COREX melter gasifier was established to analyze the influence of cohesive zone shape on solid flow, including mass distribution, velocity distribution, normal force distribution and porosity distribution at a microscopic level. The results show that the co- hesive zone shape almost does not affect the particle movement in the upper shaft and deadman shape. The particles in the lower central bottom experience large normal force to support the particles above them, while particles around the raceway and in the fast flow zone exhibit weak force network. The porosity distribution was also examined under three kinds of cohesive zones. Like the velocity distribution, the whole packed bed can be divided into four main re- gions. With the increase of cohesive zone position, the low porosity region located in the root of cohesive zone increa- ses. And the porosity distribution becomes asymmetric in the case of biased cohesive zone.
出处 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2015年第4期304-310,共7页 钢铁研究学报(英文版)
基金 Item Sponsored by the Fundamental Research Funds for the Central Universities of China(N090402021)
关键词 COREX melter gasifier discrete element method porosity distribution cohesive zone shape solid flow COREX melter gasifier discrete element method porosity distribution cohesive zone shape solid flow
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