Multi-Objective Optimization of Serrated Fin in Plate-Fin Heat Exchanger by Fluid Structure Interaction[J]. 2018, 52(2): 130-135.
DOI:
Multi-Objective Optimization of Serrated Fin in Plate-Fin Heat Exchanger by Fluid Structure Interaction[J]. 2018, 52(2): 130-135.DOI: 10.7652/xjtuxb201802020.
Multi-Objective Optimization of Serrated Fin in Plate-Fin Heat Exchanger by Fluid Structure Interaction
heat transfer and loading capacity of serrated fin in plate-fin heat exchangers are numerically simulated with CFD method and the structure is optimized. Analyzing full 2nd-order polynomial response surface generated by calculating many combinations of input parameters
the effects of the fin height
fin space
fin thickness and fin interrupted length on flow resistance
heat transfer and stress distribution are investigated. Combining response surface with multi-objective genetic algorithm(MOGA)
the fin structure is optimized comprehensively by setting the j factor
f factor and maximum stress as the objective functions. Three groups of optimal fin structure are put forward.
To demonstrate the effectiveness of optimized structures
the comparison between the original design and optimized structure 3 is performed. The results show that the maximum stress is located on the joint region connecting the right angle of fin structure of first row and clipboard; the effect of fin interrupted length on heat exchange
the effect of fin thickness on flow resistance and the effect of fin interrupted length and fin thickness on stress get the greatest. The F
TEF
factor of the optimized structure 3 increases by 10.62%
and the maximum stress decreases by 7.9%.
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references
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童欣 1
Related Institution
School of Energy and Power Engineering, Xi’an Jiaotong University
School of Chemical Engineering and Technology, Xi’an Jiaotong University
State Key Laboratory of Multiphase Flow in Power Engineering, Xi'an Jiaotong University