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首页> 外文期刊>International Journal of Heat and Mass Transfer >Flow boiling heat transfer of R134a in multi microchannels
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Flow boiling heat transfer of R134a in multi microchannels

机译:多微通道中R134a的流沸腾传热

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摘要

Experiments were conducted to investigate flow boiling heat transfer of R134a in a multi microchannel heat sink. The heat sink consisted of 25 rectangular microchannels with nominal dimensions of 300 μm wide, 700 μm deep (D_h = 420 jim) and 200 μm separating wall thickness. The heat sink was made of oxygen free copper by CNC machining and was 20 mm long and 15 mm wide. The experiments were conducted at 6.5 bar system pressure and covered a footprint area-based heat flux range 11.46-403.1 kW/m~2 and mass flux range 50-300 kg/m2 s. A high speed camera was used to capture the flow patterns simultaneously with heat transfer measurements. Three flow patterns were observed namely bubbly, slug and wavy-annular flow when the heat flux increased gradually. The heat transfer coefficient increased with heat flux and there was no mass flux effect. Assessing existing correlations indicated that the correlations of Mahmoud and Karayiannis (2013) and Cooper (1984) predict the data very well with a mean absolute error less than 20% compared to the other correlations.
机译:进行实验以研究多微通道散热器中R134a的沸腾传热。散热器由25个矩形微通道组成,其名义尺寸为宽300μm,深700μm(D_h = 420 jim)和200μm分隔壁厚度。散热器由无氧铜通过CNC加工制成,长20毫米,宽15毫米。实验是在6.5 bar的系统压力下进行的,覆盖了基于占地面积的热通量范围11.46-403.1 kW / m〜2和质量通量范围50-300 kg / m2 s。高速相机用于与传热测量同时捕获流型。当热通量逐渐增加时,观察到了三种流动形式,即气泡状,团状和波浪状环状流动。传热系数随热通量增加而没有质量通量效应。评估现有的相关性表明,Mahmoud和Karayiannis(2013)以及Cooper(1984)的相关性很好地预测了数据,与其他相关性相比,平均绝对误差小于20%。

著录项

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  • 作者单位

    University of Technology, Department of Mechanical Engineering, 10066 Alsina'a Street, Baghdad, Iraq;

    Brunei University London, College of Engineering, Design and Physical Sciences, Kingston Lane, Uxbridge, Middlesex, London UBS 3PH, UK,Faculty of Engineering, Zagazig University, Zagazig 44519, Egypt;

    School of Engineering, The University of Edinburgh, Kings Buildings, Mayfield Road, Edinburgh EH9 3JL, UK;

    Brunei University London, College of Engineering, Design and Physical Sciences, Kingston Lane, Uxbridge, Middlesex, London UBS 3PH, UK;

  • 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

    microchannel; flow boiling; flow patterns; heat transfer rates;

    机译:微通道流沸腾流型;传热率;

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