期刊文献+

多周期多种设备公用工程系统优化模型的改进及应用 被引量:1

The Modification and Application of Multi-period and Multi-equipment Utility System Optimization Model
下载PDF
导出
摘要 本文提出了多周期多种设备公用工程系统改进的混合整数双线性优化模型,它含有两种优化变量和系统运行过程的离散动态约束,期望系统总设备投资(含设备折旧)与全周期运行操作费用之和最小。针对改进优化模型求解上的困难,给出将改进优化模型分解成有限多个关于连续变量的线性规划。论述了改进优化模型与分解模型的等价性以及两种模型的主要数学性质,并在此基础上提出了求解策略。最后将改进优化模型应用于某石化企业的蒸汽动力系统最优设计与运行优化集成实例。 An improved mixed integer bilinear optimization model of multi-period and multi-equipment utility system is proposed in this paper, which includes two types of optimization variables and distract dynamic constraints for systems operation and aims to obtain minimum cost consisting of capital investment and total period running cost, To simplify solution procedure of the improved optimization model, the presented model is divided into many continuous variable linear program decomposed models. The equivalence analysis and major mathematical properties between the improved optimization model and decomposed models are described in detail, which are theoretical basis for constructing effective optimization algorithm. Finally, the proposed raethod is used to design a utility system for a chemical industrial plant.
出处 《运筹与管理》 CSSCI CSCD 北大核心 2012年第3期129-136,共8页 Operations Research and Management Science
关键词 公用工程系统 混合整数双线性优化模型 离散动态约束 线性规划 utility system mixed integer bilinear optimization model distract dynamic constraints linear program
  • 相关文献

参考文献18

  • 1Nishio M, Itoh J, Shiroko K, et al. A thermodynamic approach to steam-power system design[ J]. Industrial & Engineering Chemistry, Process Design and Development, 1980, 19 (2) : 306-312.
  • 2Nishio M, Shiroko K, Umeda T. Optimal use of steam and power in chemical plants[J]. 1982, 21 (4) : 640-646.
  • 3Yoo Y H, Yi H S, Yeo Y K. Modeling and simulation of energy distribution systems in a petrochemical plant[J]. Korean J. Chem. Eng, 1996, 13(4) : 384-392.
  • 4Yi H S, Yeong Koo, Kim J K, et al. A rule-based steam distribution sysrem for petrochemical plant operation[J]. Ind. Eng. Chem. Res. 1998, 37: 1051-1062.
  • 5Lee M H, Lee S J, Han C, et al. Hierachical on-line data reconciliation and optimization for an industrial utility plant[J]. Computers and Chemical Engineering, 1998, 22(Suppl) : 247-254.
  • 6Papalexandri K P, Pistikopoulos E N, et al. Modelling and optimization aspects in energy management and plant operation with variable energy demands-application to industrial problems[ J]. Computers & Chemical Engineering, 1998, 22(9) : 1319-1333.
  • 7Mavromatis S P, Kokossis A C, Hardware composites : a new conceptual tool for the analysis and optimization of steam turbine networks in chemical process industries, part I: principles and construction procedure [ J]. Chemical Engineering Science, 1998, 53(7): 1405-1434.
  • 8Mavromatis S P, Kokossis A C. Hardware composites: a new conceptual tool for the analysis and optimization of steam turbine networks in chemical process industries, part If: application to operation and design[ J]. Chemical Engineering Science, 1998, 53(7) : 1435-1461.
  • 9Strouvalis A M, Mavromatis S P, Kokossis A C. Conceptual optimization of utility networks using hardware and comprehensive hardware composites[J]. Computers & Chemical Engineering, 1998, 22(22) : 175-182.
  • 10Yi H S, han C, Yeo Y K. Optimal multi-period planning of utility systems considering discrete/continuous variance in inter- nal energy demand based on decomposition method [ J]. Journal of Chemical Engineering of Japan, 2000, 33 (3) : 456-467.

二级参考文献6

共引文献35

同被引文献5

引证文献1

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部