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A Simulation Study of Blast Furnace Hearth Drainage Using a Two-phase Flow Model of the Taphole

机译:利用出铁孔两相流模型模拟高炉炉膛排水

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摘要

The drainage of the hearth plays an important role for the operation of the ironmaking blast furnace. An undisturbed extraction of the produced molten materials from the hearth is a prerequisite of a smooth operation of the high-temperature region, and a good mixing of liquid iron and slag in the taphole and runner helps desulfurize the iron. The flows of molten iron and slag in the blast furnace taphole have not received much attention, even though several investigators have studied the hearth drainage phenomena. In the present paper a two-fluid model of the taphole flow, based on an assumption of full stratification of the two liquids, is developed, and coupled with a simple material balance for the furnace hearth. Furthermore, the pressure loss of the liquids in the dead-man in front of the taphole inlet is considered. Simulations with the model are applied to illustrate how different factors affect the drainage, liquid levels and taphole flow. It is demonstrated that the in-furnace conditions play an important role for the flows and the flow distribution between iron and slag. The effects of key variables, such as coke-bed voidage and coke size, are illustrated and conclusions concerning their impact on the drainage are drawn.
机译:炉膛的排水对于炼铁高炉的运行起着重要作用。从炉膛中无渣地提取生产的熔融材料是高温区域平稳运行的先决条件,并且铁水和渣在出铁孔和流道中的良好混合有助于铁脱硫。尽管一些研究人员已经研究了炉膛排水现象,但高炉出铁口中铁水和炉渣的流动并未引起人们的广泛关注。在本文中,基于两种液体完全分层的假设,开发了出铁孔流的双流体模型,并结合了炉膛的简单材料平衡。此外,考虑了在出铁孔入口前面的自动驾驶室内的液体的压力损失。使用该模型进行仿真以说明不同因素如何影响排水,液位和出铁孔流量。结果表明,炉内条件对铁水和炉渣之间的流动和流动分布起着重要作用。阐述了关键变量的影响,例如焦炭床空隙率和焦炭尺寸,并得出了有关其对排水的影响的结论。

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