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Simulation Study on Performance of Z-path Moving-fluidized Bed for Gaseous Reduction of Iron Ore Fines

机译:Z路径移动流化床气化还原铁矿粉性能的模拟研究

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Performance of the Z-path moving-fluidized bed reactor for gaseous reduction of iron ore fines was numerically investigated. The proposed mathematical model was developed by analyzing the gas-solid transport phenomena and chemical reactions in the reactor. The model was solved by a new solving approach - integration of FLUENT package (V6.3) and PHOENICS (V3.3). Numerical simulation results of cold state were compared with the experimental data and the simulation results including pressure drop per perforated plate, gas flow pattern and solid flow pattern agreed well with the experimental ones. The developed CFD model then conducted some hot state predictions of gaseous reduction of iron ore fines using reformed COG gas and purified COREX export gas in this reactor. Results indicate that under hot state, the performance of the reactor depends on the reducing gas supplied. Pressure drop per perforated plate decreases one by one from the bottom plate to the top plate and some improvements are needed for the perforated plate arrangement in the reactor. For ore fines gaseous reduction, the reactor displays a high utilization efficiency of gas sensible heat and gas reduction potential. The Z-path moving fluidized bed has the advantage that it realizes a gradient utilization of heat and reduction potential of the gas in iron ore fines reduction with a comparatively simple structure. In the cases simulated, the top two plates play a role of preheating the ore fines and the bottom three plates reducing the ore fines. For operation control, the reactor with three inclined perforated plates is reasonable and preheating ore fine may be carried out by other means.
机译:数值研究了Z路径移动流化床反应器气态还原铁矿粉的性能。通过分析反应器中的气固传输现象和化学反应,开发了所提出的数学模型。该模型通过一种新的求解方法进行了求解-将FLUENT软件包(V6.3)和PHOENICS(V3.3)集成在一起。将冷态的数值模拟结果与实验数据进行了比较,包括穿孔板的压降,气体流型和固体流型在内的模拟结果与实验值吻合良好。然后,已开发的CFD模型对在此反应堆中使用重整COG气体和纯化的COREX出口气体进行铁矿石气态还原的一些热态预测。结果表明,在热状态下,反应器的性能取决于所供应的还原气体。多孔板的压力降从底板到顶板一一减小,并且反应器中的多孔板布置需要一些改进。对于矿粉的气态还原,反应器显示出显着的瓦斯感热利用效率和瓦斯还原潜力。 Z路径移动流化床的优点在于,它以相对简单的结构实现了铁矿石细粉还原中热量的梯度利用和气体的还原潜力。在模拟的情况下,顶部的两个板起到预热矿石细粉的作用,底部的三个板则降低矿石细粉的作用。为了进行操作控制,具有三个倾斜的多孔板的反应堆是合理的,并且可以通过其他方式对矿石进行预热。

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