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Optimization of wavy fin-and-elliptical tube heat exchanger using CFD, multi-objective genetic algorithm and radical basis function
C. Yu; X. Xue; K. Shi; R. Wang; L. Zhang and M. Shao
2021
发表期刊Energy Science and Engineering
ISSN20500505
卷号9期号:9页码:1359-1372
摘要This article presents an accurate and efficient optimization method for heat exchanger. The structure of the original heat exchanger was optimized by combining LHS sampling, CFD simulation, radical basis function, and multi-objective optimization. Since the Colburn factor j and the friction factor f are a pair of conflicting goals, so the multi-objective optimization is adopted. The optimization results showed that the Colburn factor j increased by 5.43% and the friction factor f decreased by 23.31%, indicating that the optimized structure had higher heat transfer efficiency and lower resistance performance. The heat transfer mechanism and optimization effect of heat exchanger are explained by using the field synergy principle, which provides a theoretical basis for the structural design optimization of heat exchanger. 2021 The Authors. Energy Science & Engineering published by Society of Chemical Industry and John Wiley & Sons Ltd.
DOI10.1002/ese3.897
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收录类别SCI ; EI
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文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/65506
专题中国科学院长春光学精密机械与物理研究所
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C. Yu,X. Xue,K. Shi,et al. Optimization of wavy fin-and-elliptical tube heat exchanger using CFD, multi-objective genetic algorithm and radical basis function[J]. Energy Science and Engineering,2021,9(9):1359-1372.
APA C. Yu,X. Xue,K. Shi,R. Wang,&L. Zhang and M. Shao.(2021).Optimization of wavy fin-and-elliptical tube heat exchanger using CFD, multi-objective genetic algorithm and radical basis function.Energy Science and Engineering,9(9),1359-1372.
MLA C. Yu,et al."Optimization of wavy fin-and-elliptical tube heat exchanger using CFD, multi-objective genetic algorithm and radical basis function".Energy Science and Engineering 9.9(2021):1359-1372.
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