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Selection of the Bell-Less Top Mode of Operation Based on the Data on the Gas Distribution in the Furnace Top and the Shape of the Melting Zone in the Lower Part of the Blast Furnace

机译:选择基于炉顶部气体分布的数据和高炉下部熔化区的气体分布的数据的响铃顶部操作模式

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The collected data on the influence of the parameters of the melting zone on the operation of a blast furnace (BF) give a new look on the formation of guidelines for the choice of the operating mode a bell-less top (BLT) charging system aimed at improving the efficiency of operation of the blast furnace and its lifetime. The management of the "no-feedback" bell-less top operation mode without application of the criteria of BF operation often results in the inefficient usage of its advantages, which sometimes leads to a decrease in the productivity of the BF. The operating control over the BLT charging system aimed at the improvement of the efficiency of BF should be realized with feedback with regard for the changes in the following operating criteria of the BF: optimization of the radial gas distribution in the BF top; minimization of the circumferential gas distribution in the BF top; optimization of the thermal state of the furnace; optimization of the shape and location of the melting zone in the boshes of the BF; monitoring and control of the temperature of materials and smelting products operating in contact with the furnace lining in the boshes, flare, and the bottom part of the furnace shaft. The strategic control over the BLT operation should be performed with realization of the target function, i.e., with an aim to increase the lifetime of the BF by using the following criteria of its operation: the minimization of the FeO content in the primary slag and the optimization of the temperature of materials and smelting products adjacent to the furnace lining in the boshes, in the flare, and in the bottom part of the furnace shaft.
机译:关于熔融区参数对高炉(BF)操作的影响的收集数据给出了用于选择操作模式的准则的新外观,瞄准响铃顶部(BLT)充电系统提高高炉运行效率及其寿命。 “无反馈”响铃的响铃顶部操作模式的管理通常会导致其优点的低效使用,这有时会导致BF的生产率降低。对于改善BF效率的BLT充电系统的操作控制应通过反馈来实现关于BF的以下操作标准的变化:优化BF顶部的径向气体分布的优化;最小化BF顶部的圆周气体分布;优化炉子的​​热状态;优化BF梭子中熔化区的形状和位置;监测和控制材料温度和熔炼产品与炉子,火炬和炉轴底部的炉子接触。应通过实现目标函数来执行对BLT操作的战略控制,即,目的是通过使用以下操作标准来增加BF的寿命:最小化初级渣中的FEO含量和优化材料温度和炉子中炉内衬里,炉排中的炉子衬里的温度和熔炼产品。

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