造粒
余热
余热回收装置
传热
热回收通风
废物管理
磨细高炉矿渣
熔渣(焊接)
环境科学
高炉
材料科学
能源消耗
粒子(生态学)
水冷
工艺工程
热交换器
机械工程
冶金
工程类
机械
复合材料
水泥
海洋学
物理
电气工程
地质学
作者
Xinyi Zhang,Shuzhong Wang,Daihui Jiang,Zhiqiang Wu
标识
DOI:10.1016/j.applthermaleng.2023.121923
摘要
Efficient recovery of heat and utilize blast furnace slag resources are crucial for achieving energy savings and reducing consumption in the steel industry. This study focuses on applying dry centrifugal pelletizing technology for recovering waste heat from slag. A comprehensive two-dimensional model was developed to investigate heat transfer dynamics within particle clusters, considering the variable physical parameters of the slag, latent heat of the phase change, and slag particle characteristics. Through an extensive analysis of the heat exchange within the granulation bin, we examined the temperature variations of slag particles and the distribution of absorbed heat by the water-cooled and air. Findings underscore the significant influence of flight trajectory, residence time, air-inlet flow rate, and temperature on heat exchange efficiency. Additionally, we explored the impact of auxiliary cooling measures and investigated how slag particle characteristics affect the bin wall, highlighting their importance for safe operations. Our results provide valuable insights for enhancing waste heat recovery efficiency from blast furnace slag and optimizing the implementation of dry centrifugal granulation technology. It serves as a vital reference for promoting energy-saving initiatives and reducing consumption in the steel industry.
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