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A Three-dimensional Numerical Study Of The Combustion Of Coal Blends In Blast Furnace

机译:高炉煤掺混物燃烧的三维数值研究

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The practice of blending coals for pulverized coal combustion is widely used in ironmaking blast furnace. It is desirable to characterize the combustion behaviour of coal blends and their component coals. A three-dimensional numerical model is described to simulate the flow and combustion of binary coal blends under simplified blast furnace conditions. The model is validated against the experimental results from a pilot-scale combustion test rig for a range of conditions, which features an inclined co-axial lance. The overall performance of coal blend and the individual behaviours of their component coals are analysed, with special reference to the influences of particle size and coal type. The synergistic effect of coal blending on overall burnout is examined. The results show that the interactions between component coals, in terms of particle temperature and volatile content, are responsible for the synergistic effect. Such synergistic effect can be optimized by adjusting the blending fraction. The model provides an effective tool for the design of coal blends.
机译:在炼铁高炉中广泛使用掺混煤进行粉煤燃烧的实践。期望表征煤掺合物及其组成煤的燃烧行为。描述了三维数值模型,以模拟简化的高炉条件下二元煤混合物的流动和燃烧。该模型已针对一系列条件下的中试燃烧试验台的实验结果进行了验证,该条件具有倾斜的同轴喷枪。分析了混煤的整体性能及其组成煤的个别行为,并特别考虑了粒度和煤类型的影响。研究了掺煤对整体燃尽的协同作用。结果表明,组分煤之间的相互作用,就颗粒温度和挥发物含量而言,起协同作用。可以通过调节混合比例来优化这种协同效果。该模型为混合煤的设计提供了有效的工具。

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