Mathematical models to predict raceway penetration and variation laws in a blast furnace
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摘要: 綜合考慮力學因素和高爐中燃燒反應對風口回旋區的影響,提出了描述高爐風口回旋區形成和變化規律的靜態和動態模型.模擬結果表明,靜態模型能準確地預測高爐回旋區的深度,動態模型可以描述鼓風速度改變時回旋區深度隨時間的動態變化過程.最后得出了高爐回旋區形成和變化的規律:鼓風推力使料層迅速移動,導致回旋區大小迅速變化,形成回旋區"雛形",燃燒反應修復回旋區的大小和形狀,維持回旋區的穩定.在整個回旋區變化過程中,摩擦力對于維持回旋區的穩定起著重要作用.模型預測結果與高爐風口回旋區的實測值以及其他研究者的實驗結果是符合的.Abstract: Considering the influence of mechanical factors and combustion reaction in a blast furnace on the tuyere raceway,two mathematical models,a static model and a dynamic model,were proposed in order to describe the penetration and variation rules of the raceway.Simulated results show that the static model is able to predict raceway penetration accurately,and the dynamic model can describe the dynamic process of raceway penetration with time when the blast velocity changes.Finally the formation and variation rules of the raceway are concluded as the following:the fast movements of the packed bed driven by blast pressure make the raceway size vary rapidly and then the raceway prototype is formed.In addition,combustion reaction repairs the size and shape of the raceway so as to maintain a stable raceway.In the entire change process of raceway size,frictional forces are proved to play an important role for raceway stability.Predictions of the mathematical models are in reasonable agreement with the measured data of blast furnaces and other researchers' experimental results.
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Key words:
- blast furnaces /
- combustion /
- hysteresis /
- mathematical models
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