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基于燒結過程各帶遷移規律的燒結終點預報方法

Prediction method of the sinter burn-through point based on the migration law of each sintering zone

  • 摘要: 提出利用最小二乘法擬合燒結廢氣溫度曲線,求曲線方程的二階導數計算出燒結廢氣溫度的四個拐點.結合燒結過程各帶的遷移情況,計算得出拐點所對應的各帶前沿到達料層底部的溫度.根據拐點出現的時間,求出燒結過程中各帶前沿平均速度.利用多元線性回歸法和F檢驗進一步考察燒結工藝參數對各帶前沿平均速度的影響規律,并給出了它們之間的關系式.利用該關系式,可以在節能和提高燒結礦平均粒度的原則下,定量地調整工藝參數以穩定燒結終點.

     

    Abstract: The temperature curve of flue gas was fitted by the least square methods during the sintering process,and then 4 flexions of the temperature curve were calculated by solving a two-order derivative of the temperature curve.According to the migration law of each sintering zone,the temperature at the flexions can be obtained,which represents that the forefront of each sintering zone arrive at the sintering grate.As the arrival time of a flexion is known,the average speed at the forefront can be calculated.Multiplelinear regression and F-test were used to reveal the influence of sintering process parameters on the average speed at each forefront, and their relationships were proposed. Using these formulae, the BTP is stabilized by quantitatively adjusting the process parameters under the principle of energy saving and improving the average size of the sinter.

     

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