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轉底爐直接還原工藝綜合數學模型

Comprehensive mathematical model of direct reduction for rotary hearth furnaces

  • 摘要: 為發展和深入認識轉底爐直接還原工藝技術,建立了轉底爐綜合數學模型,該模型由轉底爐本體熱化學平衡、轉底爐區域熱平衡計算模型、余熱回收模型、生球干燥模型、爐膛溫度校核與尾氣露點校核模型和轉底爐流程模型組成.采用綜合模型計算了該工藝流程的基本工藝參數.計算結果表明:煤氣熱值、廢氣排放溫度和余熱回收利用方案對整體能量消耗有不同程度影響,煤氣發熱值每增加50kJ·m-3,理論燃燒溫度提高22~25℃,煤氣用量減少41~47m3·t-1;空氣預熱溫度平均每增加100℃,理論燃燒溫度提高35~40℃,煤氣用量減少90~103m3·t-1.此外,應用此模型還可以計算任何原料和燃料等條件下的直接還原工藝參數,研究不同余熱回收方案條件下的各個工藝參數的變化規律.

     

    Abstract: A comprehensive mathematical model was established to develop and deeper understand direct reduction technology for rotary hearth furnaces (RHF). The model consists of the overall thermal and chemical balance model, the calculation model of heat balance at different zones, the waste heat recovery process model, the drying model of green pellets, the checking model of furnace box temperature and waste gas dew point, and the RHF process model. The basic process parameters of RHF were calculated by the model. Calculation results show that the overall energy consumption is effected by gas calorific value, waste gas temperature, and the recycling scheme of waste heat recovery. When the gas calorific value increases by 50 kJ·m-3, the theoretical combustion temperature increases by 22 to 25℃, and the gas consumption decreases by 41 to 47 m3·t-1. But when the preheating temperature increases by 100℃, the theoretical combustion temperature increases by 35 to 40℃, and the gas consumption decreases by 90 to 103 m3·t-1. Furthermore, the model can be applied to calculate technical parameters when the raw materials and fuel conditions are different, and the change laws of these technical parameters under different waste heat recovery processes can also be studied by this model.

     

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