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高爐休風時供氧管網壓力對氧氣調度的影響

Effects of oxygen pipe-network pressure on the oxygen scheduling during blast furnace blow-down

  • 摘要: 以國內某大型鋼鐵企業空分廠為研究對象,基于混合整數線性規劃方法建立以氧氣放散量最小為目標的生產調度模型,并在此基礎上以高爐休風期間的氧氣生產調度為案例,分析了高爐開始休風期間管網初始壓力對氧氣放散率的影響.高壓管網初始壓力大于臨界值時,系統出現氧氣放散,放散率隨初始壓力上升呈近線性增大關系,高壓管網緩沖容量越大,該線性關系斜率越大.有氧氣放散的情況下,對于同一高壓管網初始壓力,高壓管網緩沖容量越大,系統放散率越小.該趨勢隨著高壓管網初始壓力增大變得越來越不明顯,當初始壓力等于最高壓力時,高壓管網緩沖容量的大小對放散率沒有影響.

     

    Abstract: To study the scheduling problem in the captive oxygen plant of a large-scale integrated steel mill, a mixed integer linear program (MILP) model was developed to minimize the oxygen emission. On the basic of the model, the oxygen production scheduling during blast furnace (BF) blow-down was studied as a case, and the effect of initial pipe network pressure (at the beginning of the BF blow down) on the oxygen emission ratio was analyzed. The system presents the oxygen emission when the initial pipe network pressure is larger than a critical value. The oxygen emission ratio increases with the increase of initial pressure in an approximately linear relationship, and the larger the buffer capacity of the high-pressure pipe network, the bigger the slope of this linear relationship. When there is the oxygen emission and for the same initial pressure of high-pressure pipe network, the bigger the buffer capacity of high-pressure pipe network, the smaller the oxygen emission ratio. This relationship tends to become inconspicuous as the initial pressure increasing, when the initial pressure is equal to the maximum allowed pressure, the oxygen emission ratio is unaffected by the buffer capacity of the high-pressure pipe network.

     

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