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Multi-dimensional transient mathematical simulator of blast furnace process based on multi-fluid and kinetic theories

机译:基于多流体和动力学理论的高炉过程多维瞬态数学模拟器

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The ironmaking blast furnace is regarded as one of the biggest and most complex industrial reactors,because it includes various materials like gas,lump granular materials,liquids and powders and more than 30 major reactions and phase changes in a single reaction vessel.The mathematical simulator of this process developed in this study used the multi-fluid treatment as its framework,since the motions of these materials were governed by different flow mechanisms.The rates of the interactions among the phases and the chemical reactions were evaluated based on kinetic theories.The model successfully reproduced the fields of velocity,temperature and reaction in the furnace and its validity was confirmed.The simulator was also applied to a novel operation,namely the top gas recycling combined with the carbon-composite iron-ore charging and the waste plastics injection,and the advantages in furnace efficiency and environmental load were quantitatively indicated.
机译:炼铁高炉被认为是最大,最复杂的工业反应器之一,因为它在一个反应​​容器中包含多种材料,例如气体,块状颗粒材料,液体和粉末以及30多种主要反应和相变。本研究开发的过程的流程以多流体处理为框架,因为这些材料的运动受不同的流动机理控制。根据动力学理论评估了各相之间的相互作用速率和化学反应。该模型成功地再现了炉内的速度,温度和反应场,并验证了其有效性。该模拟器还被应用于一种新颖的操作,即结合碳复合铁矿石装料和废塑料注入的顶部气体再循环定量指出了在炉效率和环境负荷方面的优势。

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