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用于超结构换热器网络热计算和网络综合的显式解
引用本文:陈德珍,杨杉杉,罗行,温卿云,马虎根.用于超结构换热器网络热计算和网络综合的显式解[J].中国化学工程学报,2007,15(2):296-301.
作者姓名:陈德珍  杨杉杉  罗行  温卿云  马虎根
作者单位:[1]Institute of Thermal and Environmental Engineering, Tongji University, Shanghai 200093, China [2]Institute of Thermal Engineering, University of Shanghai for Science and Technology, Shanghai 200093, China
基金项目:上海市领先专业学科基金,Shanghai Pujiang Program,Jiangsu Cuilong Copper Industry Co.
摘    要:For the optimal design of a heat exchanger network, the inlet and outlet stream temperatures of each heat exchanger in the network should be known. An explicit analytical solution of stream temperatures of an arbitrary connected heat exchanger network was introduced, which is suitable for the thermal calculation of heat exchanger networks. For the heat exchanger network synthesis, this solution was further developed and coupled with the stage-wise superstructure heat exchanger networks. The new calculation procedure reduced the computer memory requirement dramatically. On the basis of this solution, a mathematical model for synthesis of heat exchanger networks with genetic algorithm was formulated, which is always feasible and no iteration is needed. Two examples were calculated with the proposed approach and better results were obtained.

关 键 词:超结构热交换器网络  热力计算  合成  显式解
收稿时间:8 May 2006
修稿时间:2006-05-082006-09-15

Optimum mobile phase condition for resolving isoflavones in RP-HPLC
CHENDezhen,YANGShanshan,LUOXing,WENQingyun,MAHugen.Optimum mobile phase condition for resolving isoflavones in RP-HPLC[J].Chinese Journal of Chemical Engineering,2007,15(2):296-301.
Authors:CHENDezhen  YANGShanshan  LUOXing  WENQingyun  MAHugen
Affiliation:Institute of Thermal and Environmental Engineering,Tongji University,Shanghai 200093,China;Institute of Thermal and Environmental Engineering,Tongji University,Shanghai 200093,China
Abstract:For the optimal design of a heat exchanger network,the inlet and outlet stream temperatures of each heat exchanger in the network should be known.An explicit analytical solution of stream temperatures of an arbitrary connected heat exchanger network was introduced,which is suitable for the thermal calculation of heat exchanger networks.For the heat exchanger network synthesis,this solution was further developed and coupled with the stage-wise superstructure heat exchanger networks.The new calculation procedure reduced the computer memory requirement dramatically.On the basis of this solution,a mathematical model for synthesis of heat exchanger networks with genetic algorithm was formulated,which is always feasible and no iteration is needed.Two examples were calculated with the proposed approach and better results were obtained.
Keywords:heat recovery system  stage-wise superstructure  heat exchanger network synthesis  genetic algorithm  optimization
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