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Dynamic simulation of pellet induration process in straight-grate system

机译:直筛系统中颗粒硬化过程的动态模拟

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摘要

A mathematical model of pellet induration process in the straight-grate system is presented. The important physical and chemical phenomena known to affect the heat and mass transfer in the process have been taken into account in the formulation of the model. These include heat transfer between gas and pellet, gas flow, evaporation and condensation of moisture, oxidation of magnetite, combustion of coke breeze, calcination of lime and dolomite, and shrinkage of pellet and pellet bed slump. The model is validated by comparing its predictions against actual measurements in an industrial scale plant as well as a pilot pot grate. The effect of several process parameters on the induration regime are evaluated using the model. It is demonstrated through a case study that the model can be employed as a valuable tool for such purposes as process optimization and design of the induration machine.
机译:提出了直炉排系统中颗粒硬化过程的数学模型。模型的制定考虑了已知的影响过程中热量和质量传递的重要物理和化学现象。这些因素包括气体与颗粒之间的传热,气流,水分的蒸发和冷凝,磁铁矿的氧化,微风的燃烧,石灰和白云石的煅烧以及颗粒和颗粒床坍落度的收缩。通过将其预测值与工业规模工厂以及中试炉排的实际测量值进行比较来验证该模型。使用该模型评估了几种工艺参数对硬结状态的影响。通过案例研究证明,该模型可以用作有价值的工具,用于诸如过程优化和硬结机器设计之类的目的。

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