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A RQPSO Algorithm for Multiphase Equilibrium Calculation in the KIVCET Process

机译:kivet过程中多相平衡计算的RQPSO算法

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摘要

The prediction of phase configurations and the optimization of operating parameters in the metallurgical process are normally achieved by the multiphase equilibrium calculation (MEC), which is formulated as a constrained optimization problem based on the principle of Gibbs free energy minimization. A revised quantum-behaved particle swarm optimization (RQPSO) algorithm has been proposed to solve the optimization problem using three-part improved strategies. Based on the KIVCET smelting characteristics, a MEC model for the KIVCET process is established and solved using the RQPSO algorithm. The calculated and industrial data of the lead grade are 96.20% and 96.33%, respectively, those of the matte grade are 19.39% and 19.68%, and the mass fractions of Pb in the predicted and industrial matte are 3.96% and 3.34%, respectively. The calculated results of the phase configuration are consistent with the actual production data, which indicates that the MEC model and RQPSO algorithm are accurate and reliable.
机译:通过基于GIBBS自由能量最小化原理,通常通过多相平衡计算(MEC)来实现冶金工艺中的相位配置和冶金过程中的操作参数的优化预测。已经提出了一个修改的量子表现粒子群优化(RQPSO)算法,以解决三部分改进策略来解决优化问题。基于Kivcet冶炼特性,使用RQPSO算法建立和解决了kivcet过程的MEC模型。磁盘等级的计算和工业数据分别为96.20%和96.33%,磨砂等级为19.39%和19.68%,预测和工业哑光中的PB质量分别分别为3.96%和3.34% 。相位配置的计算结果与实际生产数据一致,表示MEC模型和RQPSO算法准确可靠。

著录项

  • 来源
    《JOM》 |2018年第12期|共7页
  • 作者单位

    School of Energy Science and Engineering Central South University;

    School of Energy Science and Engineering Central South University;

    School of Energy Science and Engineering Central South University;

    School of Energy Science and Engineering Central South University;

    School of Energy Science and Engineering Central South University;

    Institute of Environmental Science and Engineering School of Metallurgy and Environment Central South University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有色金属冶炼;金属学与金属工艺;
  • 关键词

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