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Heat Transfer Correlations for Elongated Bubbly Flow in Flow Boiling Micro/Minichannels

机译:流动沸腾微通道/微通道中气泡流延长的传热相关性

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摘要

An improved conventional-to-micro/minichannel criterion was proposed by using the Bond number and the liquid Reynolds number. In micro/minichannels, bubbles tend to be confined and elongated in the channel and the conventional two-phase flow theory loses its applicability. As significant disagreement in experimental trends and heat transfer mechanisms was reported for flow boiling in micro/minichannels in the literature, it is not possible to explain the discrepancy and predict all data points by a single correlation without considering the different flow patterns. In this study, heat transfer correlations for elongated bubbly flow inflow boiling micro/minichannels were developed based on a collected micro/minichannel heat transfer database. The newly developed correlations not only can present a decent overall accuracy, but also estimate the parametric trends correctly. More than 97% of the data points can be predicted by the proposed correlations within a ±50% error band for elongated bubbly flow. Also, a flow-pattern-based model can be developed by combining the developed elongated bubbly flow correlations with previous annular flow correlations for predicting flow boiling heat transfer in micro/minichannels.
机译:通过使用键数和液体雷诺数,提出了一种改进的从常规到微型/微通道的标准。在微/微型通道中,气泡倾向于在通道中被限制和拉长,并且传统的两相流理论失去了其适用性。由于文献中报道了在微通道/微通道中沸腾的实验趋势和传热机理存在重大分歧,因此,如果不考虑不同的流型,就不可能通过单个相关性来解释差异和预测所有数据点。在这项研究中,基于收集的微/微通道传热数据库,开发了延长的气泡流流入沸腾微/微通道的传热相关性。新开发的相关性不仅可以提供不错的整体准确性,而且可以正确估计参数趋势。对于伸长的气泡流,在±50%误差带内的拟议相关性可以预测超过97%的数据点。同样,可以通过将已开发的细长气泡流相关性与先前的环形流相关性相结合来开发基于流模式的模型,以预测微/微通道中的流沸腾传热。

著录项

  • 来源
    《Heat Transfer Engineering》 |2016年第12期|985-993|共9页
  • 作者

    ZAN WU; BENGT SUNDEN;

  • 作者单位

    Department of Energy Sciences, Lund University, Lund, Sweden;

    Department of Energy Sciences, Lund University, Lund SE-22100, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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