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基于双组分双流体模型的纳米流体流动沸腾传热特性研究

洪志伟 柴敏 郑水华

高技术通讯2026,Vol.36Issue(4):430-440,11.
高技术通讯2026,Vol.36Issue(4):430-440,11.DOI:10.3772/j.issn.1002-0470.2026.04.010

基于双组分双流体模型的纳米流体流动沸腾传热特性研究

Investigation of nanofluid flow boiling heat transfer characteristics based on a two-component two-phase flow model

洪志伟 1柴敏 1郑水华1

作者信息

  • 1. 浙江工业大学机械工程学院化工机械设计研究所 杭州 310023
  • 折叠

摘要

Abstract

A numerical simulation of the flow boiling process in horizontal circular tubes of nanofluids was conducted using a two-component two-phase flow model.The effects of different Reynolds numbers(Re),nanofluid types and volume fractions on flow and heat transfer were investigated through user-defined function(UDF)programming.The results indicated that the addition of nanoparticles led to an overall decrease in temperature and a reduced amount of steam produced during the boiling process,with the effects becoming more pronounced as the particle volume fraction increased.The study found that Al2O3 nanofluids exhibited a higher heat transfer coefficient,which increased at an accelerating rate with the volume fraction of particles,although the pressure drop also rose corre-spondingly.At high Reynolds numbers,the pressure drop in nanofluids was observed to increase by up to approxi-mately 146%.An entropy production analysis revealed that friction entropy production increased with higher Reyn-olds numbers,while thermal entropy production showed the opposite trend,being more significant at high Reynolds numbers,and further decreasing with the addition of nanoparticle volume fraction.Finally,a comprehensive analy-sis of the heat transfer process using the performance evaluation criterion(PEC)found that the inclusion of parti-cles was beneficial to the heat transfer process,with this enhancement effect becoming more apparent as the particle volume fraction increased.Among the nanofluids studied,Al2O3 displayed the strongest overall heat transfer capa-bilities,followed by TiO2,while Cu nanofluids exhibited the weakest.

关键词

纳米流体/流动沸腾/双组分双流体模型/数值模拟

Key words

nanofluids/flow boiling/two-component two-fluid model/numerical simulation

引用本文复制引用

洪志伟,柴敏,郑水华..基于双组分双流体模型的纳米流体流动沸腾传热特性研究[J].高技术通讯,2026,36(4):430-440,11.

基金项目

国家自然科学基金(52306206,51976193)资助项目. (52306206,51976193)

高技术通讯

1002-0470

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