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首页> 外文期刊>International Journal of Heat and Mass Transfer >Pool boiling critical heat flux (CHF) - Part 1: Review of mechanisms, models, and correlations
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Pool boiling critical heat flux (CHF) - Part 1: Review of mechanisms, models, and correlations

机译:池沸腾临界热通量(CHF)-第1部分:机理,模型和相关性的回顾

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摘要

Critical heat flux (CHF) is arguably the most important design and safety parameter for any heat-flux controlled boiling application. The present two-part study is focused on CHF for pool boiling from flat surfaces. The first part will review different CHF models and associated mechanisms and parametric trends, while the second part will be dedicated to assessment of CHF models and correlations. Aside from Kutateladze's 1948 pioneering CHF formulation, which is based on dimensional analysis, five different CHF mechanisms are prevalent in the literature: bubble interference, hydrodynamic instability, macro-layer dryout, hot/dry spot, and interfacial lift-off. Additionally, many modifications to these mechanisms have been proposed to improve predictive accuracy in tackling the parametric influences of pressure, surface size and roughness, surface orientation, and contact angle. Among the five mechanisms, Zuber's hydrodynamic instability theory has received the most attention because of both its mechanistic formulation and theoretical appeal. More recently, the interfacial lift-off mechanism, which is also theoretically based, has received significant experimental validation, and offers the advantage of tackling different surface orientations. Overall, it is shown that, despite the large body of published pool boiling CHF literature, there are major data gaps in the coverage of relevant parameters. This points to a need for more strategically planned future experiments that would also include microphotographic analysis of near-wall interfacial features, in order to validate or dispute proposed CHF mechanisms.
机译:对于任何热通量控制的沸腾应用,临界热通量(CHF)可以说是最重要的设计和安全参数。本研究分为两部分,主要关注CHF从平坦表面沸腾的情况。第一部分将回顾不同的CHF模型以及相关的机制和参数趋势,而第二部分将致力于评估CHF模型和相关性。除了基于尺寸分析的Kutateladze 1948年开创性的CHF公式外,文献中还广泛使用了五种不同的CHF机理:气泡干扰,流体动力学不稳定性,宏观层变干,热点/干点和界面剥离。另外,已经提出了对这些机构的许多修改以提高预测精度,以解决压力,表面尺寸和粗糙度,表面取向和接触角的参数影响。在这五种机理中,祖伯的水动力不稳定性理论因其机理性的表述和理论上的吸引力而受到了最多的关注。最近,从理论上讲也是基于界面的剥离机理,已经得到了重要的实验验证,并具有应对不同表面取向的优点。总体而言,已表明,尽管已发表了大量关于池沸腾CHF的文献,但相关参数的覆盖范围仍存在重大数据缺口。这表明需要对战略性规划的未来实验进行研究,其中还包括对近壁界面特征的显微照相分析,以验证或质疑提议的CHF机制。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2018年第2期|1352-1367|共16页
  • 作者

    Gangtao Liang; Issam Mudawar;

  • 作者单位

    Key Laboratory of Ocean Energy Utilization and Energy Conservation of Ministry of Education, School of Energy and Power Engineering, Dalian University of Technology, Dalian 116024, China,Purdue University Boiling and Two-Phase Flow Laboratory (PU-BTPFL), School of Mechanical Engineering, 585 Purdue Mall, West Lafayette, IN 47907, USA;

    Purdue University Boiling and Two-Phase Flow Laboratory (PU-BTPFL), School of Mechanical Engineering, 585 Purdue Mall, West Lafayette, IN 47907, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pool boiling; Critical heat flux (CHF); Surface orientation; Contact angle;

    机译:池沸腾;临界热通量(CHF);表面取向;接触角;

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