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首页> 外文期刊>Archives of Metallurgy and Materials >THE NODAL WEAR MODEL (NWM) AS AN ALTERNATIVE TO UNDERSTAND THE MECHANISMS OF FLOW AND WEAR IN THE BLAST FURNACE CRUCD3LE
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THE NODAL WEAR MODEL (NWM) AS AN ALTERNATIVE TO UNDERSTAND THE MECHANISMS OF FLOW AND WEAR IN THE BLAST FURNACE CRUCD3LE

机译:节点磨损模型(NWM)作为了解高炉CRUCD3LE中的流量和磨损机制的替代方案

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摘要

The presence of thermocouples in the lining of crucibles has become a general practice in the new construction of blast furnaces. The Nodal Wear Model (NWM) has also emerged as an instrument that, while using experimental data, obtains nodal variables whose experimental measurement is not possible: global coefficient of pig-iron/refractory heat transfer h_(g-i)~(pig-iron/lining) sad nodal temperature T_i. Starting from these nodal properties, the wear of the lining or the growth of scabs may be controlled, independently of the mechanisms responsible for them. In the same way, the properties and influence zone of the dead man in the hearth of the blast furnace may be calculated, along with those regions where the fluid is allowed to move without any other restrictions than the ones of the corresponding viscous flow (raceway hearth region).
机译:坩埚衬里中热电偶的存在已成为高炉新建建设的一般做法。 节点磨损模型(NWM)也被出现为仪器,同时使用实验数据,获得不可能的实验测量的节点变量:猪铁/耐火热传递H_(GI)〜(猪铁/ 衬里)悲伤的节点温度T_I。 从这些节点性质开始,可以独立于负责它们的机制来控制衬里的磨损或结痂的生长。 以相同的方式,可以计算炉膛的壁炉中死人的性质和影响区,以及允许流体移动而没有比相应的粘性流动(滚道)(滚道)移动而没有任何其他限制的区域 壁炉区)。

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