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Optimal Design of Water Utilization Network with Energy Integration in Process Industries 被引量:6

Optimal Design of Water Utilization Network with Energy Integration in Process Industries
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摘要 Effective utilization of water and energy is the key factor of sustainable development in process industries, and also an important science and technology problem to be solved in systems engineering. In this paper,two new methods of optimal design of water utilization network with energy integration in process industries are presented, that is, stepwise and simultaneous optimization methods. They are suitable for both single contaminant and multi-contaminant systems, and the integration of energy can be carried out in the whole process system, not only limited in water network, so that energy can be utilized effectively. The two methods are illustrated by case study. Effective utilization of water and energy is the key factor of sustainable development in process indus-tries, and also an important science and technology problem to be solved in systems engineering. In this paper, two new methods of optimal design of water utilization network with energy integration in process industries are presented, that is, stepwise and simultaneous optimization methods. They are suitable for both single contaminant and multi-contaminant systems, and the integration of energy can be carried out in the whole process system, not only limited in water network, so that energy can be utilized effectively. The two methods are illustrated by case study.
出处 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2004年第2期247-255,共9页 中国化学工程学报(英文版)
关键词 utilization of water and energy MINIMIZATION stepwise optimization method simultaneous optimization method 工业过程 最佳化设计工艺 能源 利用 炼油厂
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  • 1袁一,尹洪超,王晓云,施光燕.换热器网络同步最优综合方法──改进的MINLP转运模型法[J].化工学报,1996,47(1):77-84. 被引量:11
  • 2玄光男 程润伟.遗传算法与工程设计[M].北京:科学出版社,2000.. 被引量:131
  • 3[1]LINNHOFF B, POLLEY G T, SAHDEV V. General process improvements through pinch technology [J]. Chem Eng Prog, 1988, 84(6):51-58. 被引量:1
  • 4[2]EL-HALWAGI M M, MANOUSIOTHAKIS V. Synthesis of mass exchanger network [J]. AIChE J, 1989, 8: 1233-1244. 被引量:1
  • 5[3]LINNHOFF B, HINDMARSH E. The pinch design method of heat exchanger network [J]. Chem Eng Sci, 1983,38(5):745-763. 被引量:1
  • 6[4]WANG Y P, SMITH R. Wastewater minimisation [J]. Chem Eng Sci, 1994,49(7):981-1006. 被引量:1
  • 7[5]SAVULESCU L E, SMITH R. Simultaneous energy and water minimisation [A]. AIChE Meeting [C]. Miami: [s n], 1998. 被引量:1
  • 8[6]SMITH R, PETELE E. Water, water everywhere [J]. The Chem Eng, 1994,565:21-24. 被引量:1
  • 9[7]WANG Y P, SMITH R. Wastewater minimisation with flowrate constraints [J]. Trans IchemE, 1995,73A:889-904. 被引量:1
  • 10Li X X,Proceedings of International Conference of Environment Engineering and Chemical Engineering,1997年,391页 被引量:1

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