Simulation mathematical model for granular material thermal treatment

I. Koštial, J. Spisak, J. Mikula, Katarina Mikulova Pol'cova, M. Truchlý
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引用次数: 4

Abstract

In the last years new technologies in the area of granular materials thermal treatment have been developed. Basic improvement was achieved in significant increasing of heat exchange area, heat distribution and in the hydrodynamics. Development and operation of this thermal apparatus is based on physical and mathematical modelling, which can significantly contribute to acquire required critical knowledge. For lumpy and granular material thermal treatment the approximate mathematical model based on elementary balance method was developed. Model adequacy and complexity is crucial part of generation of the effective VR system. One of the possibilities to master this difficulty is generation of the hierarchical simulation models. Presented system consists of the following discriminations levels: Production line, technological aggregate, aggregate components, processes. The production line is of granular materials thermal treatment. Regarded technological aggregates are rotary furnace, shaft furnace, microfluid furnace and the furnace in compact thin layer. The modelled processes are gas flow, material flow, combustion, heating, cooling, drying, condensation, calcinations and sintering. Models are part of the developed VR system.
颗粒材料热处理的模拟数学模型
近年来,颗粒材料热处理领域的新技术得到了发展。在换热面积、热分布和流体力学方面取得了基本的改善。这种热仪器的开发和操作是基于物理和数学建模的,这可以显著地有助于获得所需的关键知识。对于块状和粒状材料的热处理,建立了基于初等平衡法的近似数学模型。模型的充分性和复杂性是生成有效虚拟现实系统的关键。克服这一困难的一种可能性是生成分层仿真模型。该系统由以下几个层次组成:生产线、工艺组合、组合部件、工艺。该生产线为颗粒物料热处理生产线。目前主要的工艺集合体有旋转炉、竖炉、微流体炉和致密薄层炉。模拟的过程是气体流动、物料流动、燃烧、加热、冷却、干燥、冷凝、煅烧和烧结。模型是开发的虚拟现实系统的一部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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