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首页> 外文期刊>International Journal of Heat and Mass Transfer >Experimental analysis on the hysteresis phenomenon during flow boiling heat transfer in a horizontal stainless-steel tube
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Experimental analysis on the hysteresis phenomenon during flow boiling heat transfer in a horizontal stainless-steel tube

机译:水平不锈钢管流动沸腾热传递过程中滞后现象的实验分析

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摘要

This paper presents an experimental analysis on the hysteresis phenomenon occurring during flow boiling heat transfer in a horizontal stainless-steel tube having an internal diameter of 6.0 mm. Pure R134a is the working fluid employed, working at a saturation temperature and a vapor quality fixed to 40°C and 0.30, respectively, whereas two different mass velocities of 400 and 800 kg/m~2s are studied. A dedicated experimental procedure has been carried-out to highlight the variation of the two-phase heat transfer performance due to the hysteresis effect. Specifically, tests performed at the same operating conditions but having a different thermal history (a higher imposed heat flux in the transient phase) were seen to provide lower wall superheat values and therefore higher heat transfer performances. The nucleate boiling contribution is isolated from the overall heat transfer and the parameters affecting the boiling curve behavior are highlighted and discussed, pointing out the differences when increasing and decreasing the imposed heat flux once a peak value is reached. The experimental trends are finally upheld by the boiling theory, considering the hysteresis effect as the activation of the surface cavities undergone a higher given thermal boundary condition.
机译:本文介绍了在内径为6.0mm的水平不锈钢管中流动沸腾热传递期间发生的滞后现象的实验分析。纯R134a是所用的工作流体,在饱和温度下工作,分别在40℃和0.30固定到40℃和0.30的蒸汽质量下,而研究了400和800kg / m〜2的两种不同的质量速度。已经进行了专用的实验程序,以突出由于滞后效应引起的两相传热性能的变化。具体地,观察到在相同的操作条件下进行但具有不同的热历史(在瞬态相中较高的热通量)以提供更低的壁过热值并因此提供更高的传热性能。从整体传热中分离成核沸点贡献,突出显示并讨论影响沸腾曲线行为的参数,并讨论,在达到峰值时,指示在增加和降低施加的热通量时的差异。沸腾理论终于坚持了实验趋势,考虑到滞后效应作为表面腔的激活经历了更高的给定的热边界条件。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2021年第1期|120604.1-120604.13|共13页
  • 作者单位

    Department of Industrial Engineering Universita degli studi di Napoli - Federico Ⅱ P.le Tecchio 80 80125 Naples Italy;

    Department of Industrial Engineering Universita degli studi di Napoli - Federico Ⅱ P.le Tecchio 80 80125 Naples Italy;

    Department of Industrial Engineering Universita degli studi di Napoli - Federico Ⅱ P.le Tecchio 80 80125 Naples Italy;

    Department of Industrial Engineering Universita degli studi di Napoli - Federico Ⅱ P.le Tecchio 80 80125 Naples Italy;

  • 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

    Flow boiling; Hysteresis; Nucleate boiling; Heat transfer coefficient;

    机译:流沸腾;滞后;成核沸腾;传热系数;

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