首页> 外文会议>TMS annual meeting exhibition;International symposium on high-temperature metallurgical processing >EXPERT SYSTEM FOR GRATE-KILN PELLET PRODUCTION BASED ON MATHEMATICAL MODELS OF TEMPERATURE FIELD
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EXPERT SYSTEM FOR GRATE-KILN PELLET PRODUCTION BASED ON MATHEMATICAL MODELS OF TEMPERATURE FIELD

机译:基于温度场数学模型的炉排造粒专家系统

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The current control method of grate-kiln iron ore oxide pellet production is lack of accuracy and normalization due to the limited detection conditions. Therefore, mathematical models of grate-kiln temperature field are presented. With calculation of gas-particle heat transfer as well as enthalpy changes of moisture evaporation and magnetite oxidation, the thermal history of pellets throughout grate-kiln process can be acquired and used for production status estimation. Taking the calculated results as well as detected data in production as inputs, process parameters such as running speed, fan opening and coal injection rate as adjusting objects, expert system for grate-kiln pellet production is outlined. And the preheating section dominated control strategy is explained. Results of production application show that the stability rate of gas temperature in gas hood of preheating section is increased from 91.0% to 94.2%, compressive strength and first grade rate of pellet are increased by 3.62% and 2.36%, respectively, while FeO content is 18.18% lower. Control guidance of this expert system can solve production anomalies effectively, stabilize grate-kiln iron ore oxide pellet production and improve pellet quality.
机译:由于检测条件的限制,目前炉排窑氧化铁颗粒生产的控制方法缺乏准确性和标准化。因此,提出了炉排温度场的数学模型。通过计算气体颗粒的传热以及水分蒸发和磁铁矿氧化的焓变,可以获取整个炉窑过程中颗粒的热历史,并将其用于生产状态估计。以计算结果和生产中检测到的数据为输入,以运行速度,风机开度,喷煤量等工艺参数为调整对象,概述了g窑颗粒生产的专家系统。并说明了预热段主导的控制策略。生产应用结果表明,预热段烟罩内气体温度的稳定度从91.0%提高到94.2%,颗粒的抗压强度和一级品位分别提高了3.62%和2.36%,而FeO含量为低18.18%。该专家系统的控制指导可以有效地解决生产异常问题,稳定g窑氧化铁矿颗粒的生产,提高颗粒质量。

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