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Genetic algorithm optimization for finned channel performance
引用本文:S.S.Mousavi,K.Hooman,S.J.Mousavi. Genetic algorithm optimization for finned channel performance[J]. 应用数学和力学(英文版), 2007, 28(12): 1597-1604. DOI: 10.1007/s10483-007-1206-z
作者姓名:S.S.Mousavi  K.Hooman  S.J.Mousavi
作者单位:Production Department SAIPA Company,Tehran,Iran,School of Engineering,the University of Queensland,Brisbane,Australia,Knowledge Engineering Research Center,Aerospace Industrial Organization,Tehran,Iran
摘    要:Compared to a smooth channel,a finned channel provides a higher heat transfer coefficient;increasing the fin height enhances the heat transfer.However,this heat transfer enhancement is associated with an increase in the pressure drop.This leads to an increased pumping power requirement so that one may seek an optimum design for such systems.The main goal of this paper is to define the exact location and size of fins in such a way that a minimal pressure drop coincides with an optimal heat transfer based on the genetic algorithm.Each fin arrangement is considered a solution to the problem (an individual for genetic algorithm).An initial population is generated randomly at the first step.Then the algorithm has been searched among these solutions and made new solutions iteratively by its functions to find an optimum design as reported in this article.

关 键 词:Nusselt数字  压力  遗传算法  优化设计  挡板
收稿时间:2006-09-15

Genetic algorithm optimization for finned channel performance
S. S. Mousavi,K. Hooman,S. J. Mousavi. Genetic algorithm optimization for finned channel performance[J]. Applied Mathematics and Mechanics(English Edition), 2007, 28(12): 1597-1604. DOI: 10.1007/s10483-007-1206-z
Authors:S. S. Mousavi  K. Hooman  S. J. Mousavi
Affiliation:1. Production Department, SAIPA Company, Tehran, Iran
2. School of Engineering, the University of Queensland, Brisbane, Australia
3. Knowledge Engineering Research Center, Aerospace Industrial Organization, Tehran, Iran
Abstract:Compared to a smooth channel,a finned channel provides a higher heat transfer coefficient;increasing the fin height enhances the heat transfer.However,this heat transfer enhancement is associated with an increase in the pressure drop.This leads to an increased pumping power requirement so that one may seek an optimum design for such systems.The main goal of this paper is to define the exact location and size of fins in such a way that a minimal pressure drop coincides with an optimal heat transfer based on the genetic algorithm.Each fin arrangement is considered a solution to the problem (an individual for genetic algorithm).An initial population is generated randomly at the first step.Then the algorithm has been searched among these solutions and made new solutions iteratively by its functions to find an optimum design as reported in this article.
Keywords:Nusselt number  pressure drop  genetic algorithm  optimum design  baffle
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