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翼型结构对印刷电路板换热器流动与换热特性影响

李峰 鹿院卫 王彦泉 马彦成 吴玉庭

储能科学与技术2024,Vol.13Issue(2):416-424,9.
储能科学与技术2024,Vol.13Issue(2):416-424,9.DOI:10.19799/j.cnki.2095-4239.2023.0636

翼型结构对印刷电路板换热器流动与换热特性影响

Effect of airfoil structure on flow and heat transfer characteristics of printed circuit heat exchanger

李峰 1鹿院卫 1王彦泉 1马彦成 1吴玉庭1

作者信息

  • 1. 北京工业大学传热强化与过程节能教育部重点实验室,北京 100124
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摘要

Abstract

The performance of the printed circuit heat exchanger(PCHE),an important component in the supercritical carbon dioxide(S-CO2)Brayton cycle,affects the efficiency of the system.This study aims to improve the performance of airfoil PCHE by investigating the effect of the airfoil-fin structure on its flow and heat transfer performance.Herein,for the high-temperature return heaters in the S-CO2 Brayton cycle system,a numerical simulation method is used,with S-CO2 selected as the heat transfer medium.By comparing the flow and heat transfer performance of the airfoil-fin channels of NACA0020 with three different structures,we study the influence of the positional parameter of the maximum thickness of the airfoil fins on the chord length on the performance of the heat exchanger and analyze the rule of change in terms of the thermo-hydraulic performance,comprehensive indexes,overall fluidity,local performance,etc.Results show that the heat transfer performance increases as the maximum thickness of the airfoil fins approaches the leading edge of the airfoil along the chord length while maintaining a constant relative thickness in the airfoil-fin structure.Compared to the other two airfoil-fin channels,the airfoil-fin channel of NACA0020-20 exhibits a larger j factor and Nu of 2.7%—8.8%and 2.7%—8%,respectively,under the selected operating conditions.This airfoil-fin structure can effectively reduce the influence of the boundary layer and improve the heat transfer performance in the PCHE.Overall,its performance is even better than the other two airfoil fins.These results provide a certain basis for the structural design and performance optimization of the airfoil PCHE.

关键词

超临界二氧化碳/换热器/翼型翅片/最大厚度/流动与换热

Key words

supercritical carbon dioxide/heat exchanger/airfoil fin/maximum thickness/flow and heat transfer

分类

能源科技

引用本文复制引用

李峰,鹿院卫,王彦泉,马彦成,吴玉庭..翼型结构对印刷电路板换热器流动与换热特性影响[J].储能科学与技术,2024,13(2):416-424,9.

基金项目

国家自然科学基金项目(52076006),国家重点研发计划(2022YFB4202402). (52076006)

储能科学与技术

OA北大核心CSTPCD

2095-4239

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