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Model-based estimation of liquid flows in the blast furnace hearth and taphole

机译:基于模型的高炉炉膛和出铁口中液体流动的估计

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摘要

This thesis presents a set of methods and models for estimation of iron and slag flows in the blast furnace hearth and taphole. The main focus was put on predicting taphole flow patterns and estimating the effects of various taphole conditions on the drainage behavior of the blast furnace hearth. All models were based on a general understanding of the typical tap cycle of an industrial blast furnace. Some of the models were evaluated on short-term process data from the reference furnace. A computational fluid dynamics (CFD) model was built and applied to simulate the complicated hearth flows and thus to predict the regions of the hearth exerted to erosion under various operating conditions.Key boundary variables of the CFD model were provided by a simplified drainage model based on the first principles. By examining the evolutions of liquid outflow rates measured from the furnace studied, the drainage model was improved to include the effects of taphole diameter and length. The estimated slag delays showed good agreement with the observed ones. The liquid flows in the taphole were further studied using two different models and the results of both models indicated that it is more likely that separated flow of iron and slag occurs in the taphole when the liquid outflow rates are comparable during tapping. The drainage process was simulated with an integrated model based on an overall balance analysis: The high in-furnace overpressure can compensate for the resistances induced by the liquid flows in the hearth and through the taphole.Finally, a recently developed multiphase CFD model including interfacial forces between immiscible liquids was developed and both the actual iron-slag system and a water-oil system in laboratory scale were simulated. The model was demonstrated to be a useful tool for simulating hearth flows for gaining understanding of the complex phenomena in the drainage of the blast furnace.
机译:本文提出了一套估算高炉炉膛和出铁口中铁和渣流的方法和模型。主要重点是预测出铁孔的流动方式,并估计各种出铁孔条件对高炉炉膛排水性能的影响。所有模型均基于对工业高炉典型抽头周期的一般理解。根据参考炉的短期工艺数据评估了一些模型。建立了计算流体动力学(CFD)模型并将其用于模拟复杂的炉膛流量,从而预测了在各种工况下侵蚀的炉膛区域.CFD模型的关键边界变量由简化的排水模型提供在第一原则上。通过检查从所研究的熔炉测得的液体流出速率的变化,对排水模型进行了改进,以包括出铁孔直径和长度的影响。估计的炉渣延迟与观察到的一致。使用两种不同的模型进一步研究了出铁孔中的液体流动,并且两种模型的结果都表明,当出铁期间的液体流出速率相当时,铁和矿渣的分离流动更有可能在出铁孔中发生。通过基于整体平衡分析的集成模型对排水过程进行了模拟:高炉内超压可以补偿由炉膛和流经孔的液流引起的阻力。最后,最近开发的包括界面的多相CFD模型开发了不混溶液体之间的力,并模拟了实验室规模的实际铁渣系统和水油系统。该模型被证明是模拟炉膛流量的有用工具,可用来了解高炉排水中的复杂现象。

著录项

  • 作者

    Shao Lei;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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