Thermophysical processes in dry granulation of metallurgical slags

IF 0.6 Q4 METALLURGY & METALLURGICAL ENGINEERING
S. Panchenko, M. Dli, M. Chernovalova, N. Kulyasov
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引用次数: 0

Abstract

Mathematical model for theoretical analysis of thermophysical processes of melt drops solidification is examined during their motion inside cooling gas, applying to granulation task. The heat exchange equations during granulation, taking into account convection, heat conductivity in solid phase and Stefan conditions on the boundary of phase transition, are presented. The relationships characterizing correlation of the power exchange parameters in dispersed medium are obtained in the conditions of phase transition in melt drops inside gas phase flow. Analytical relationships allow to consider correlation of the parameters which characterize granulation process, to provide directions of efficient conduction of the processes for achieving the preset aims and to reveal the conditions for optimal technological parameters of the process. Speed of the power exchange processes determines the size of an installation and allows to make preliminary assessment during designing. Different motion modes for particles and gas are investigated. The variants for calculation of gas dynamic parameters of straight flying trajectory for a slag melt particle are suggested; they are based on solving the problem of particle motion in the gas medium, taking into account particle size, medium resistance, initial particle speed. Used relationships allow to assess the particle flying time, which is corresponded to the required time of particle cooling during its flying, and to choose programming conditions for motion of dispersed jet of slag melt. These conditions guarantee forming of solid crust on the cooled particle and possibility of size determination for a granulation system. Possible scheme of slag heat realization, allowing to utilize maximally the exergy of secondary power resources, is considered. The obtained results can be used for improvement of the existing installa-tions fir dry granulation and for designing of the new ones, as well as for optimization of operating modes of granula-tors, for their efficiency rise and increase of power saving possibilities for a granulation system.
冶金渣干法制粒的热物理过程
研究了熔滴在冷却气体中运动时凝固热物理过程的理论分析数学模型,并将其应用于造粒任务。给出了考虑对流、固相导热率和相变边界Stefan条件的造粒过程中的换热方程。在气相流中熔体液滴相变的条件下,得到了分散介质中功率交换参数的相关关系式。分析关系允许考虑表征造粒过程的参数的相关性,为实现预设目标提供过程的有效进行方向,并揭示过程的最佳技术参数的条件。电力交换过程的速度决定了装置的大小,并允许在设计过程中进行初步评估。研究了颗粒和气体的不同运动模式。提出了炉渣熔体颗粒直线飞行轨迹气体动力学参数的计算方法;它们基于解决颗粒在气体介质中的运动问题,考虑了颗粒尺寸、介质阻力和初始颗粒速度。所使用的关系允许评估颗粒飞行时间,该时间对应于颗粒飞行期间冷却所需的时间,并选择炉渣熔体分散射流运动的编程条件。这些条件保证了在冷却的颗粒上形成固体外壳,并保证了造粒系统尺寸确定的可能性。考虑了渣热实现的可能方案,最大限度地利用二次电源的火用。所得结果可用于现有干式造粒装置的改进和新装置的设计,也可用于优化造粒机的运行模式,提高其效率,增加造粒系统的节能可能性。
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来源期刊
CIS Iron and Steel Review
CIS Iron and Steel Review METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
2.50
自引率
12.50%
发文量
21
期刊介绍: “CIS Iron and Steel Review” is the only Russian metallurgical scientific-technical journal in English, publishing materials about whole spectrum of the problems, innovations and news of foreign iron and steel industry. The mission of this edition is to make foreign specialists aware about scientific and technical researches and development in iron and steel industry in the former USSR countries.
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