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Effects of Vapor Velocity and Pressure on Marangoni Condensation of Steam-Ethanol Mixtures on a Horizontal Tube

机译:蒸汽速度和压力对水平管中蒸汽-乙醇混合物的马兰戈尼冷凝的影响

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摘要

Careful heat-transfer measurements have been conducted for condensation of steam-ethanol mixtures flowing vertically downward over a horizontal, water-cooled tube at pressures ranging from around atmospheric down to 14 kPa. Care was taken to avoid error due to the presence of air in the vapor. The surface temperature was accurately measured by embedded thermocouples. The maximum vapor velocity obtainable was limited by the maximum electrical power input to the boiler. At atmospheric pressure this was 7.5 m/s while at the lowest pressure a velocity of 15.0 m/s could be achieved. Concentrations of ethanol by mass in the boiler when cold prior to start up were 0.025%, 0.05%, 0.1%, 0.5%, and 1.0%. Tests were conducted for a range of coolant flow rates. Enhancement of the heat-transfer coefficient over pure steam values was found by a factor up to around 5, showing that the decrease in thermal resistance of the condensate due to Marangoni condensation outweighed diffusion resistance in the vapor. The best performing compositions (in the liquid when cold) depended on vapor velocity but were in the range 0.025-0.1% ethanol in all cases. For the atmospheric pressure tests the heat-transfer coefficient for optimum composition, and at a vapor-to-surface temperature difference of around 15 K, increased from around 55 kW/m K to around 110kW/m~2 K as the vapor velocity increased from around 0.8 to 7.5 m/s. For a pressure of 14 kPa the heat-transfer coefficient for optimum composition, and at a vapor-to-surface temperature difference of around 9 K, increased from around 70 kW/m~2 K to around 90 kW/m~2 K as the vapor velocity increased from around 5.0 to 15.0 m/s. Photographs showing the appearance of Marangoni condensation on the tube surface under different conditions are included in the paper.
机译:对于在水平的水冷管中垂直向下流动的蒸汽-乙醇混合物的冷凝,在大约大气压力至14 kPa的压力范围内进行了仔细的传热测量。注意避免由于蒸气中存在空气而引起的错误。表面温度通过嵌入式热电偶精确测量。可获得的最大蒸气速度受到输入锅炉的最大电力的限制。在大气压下为7.5 m / s,而在最低压力下可达到15.0 m / s的速度。锅炉在启动前变冷时乙醇的质量浓度为0.025%,0.05%,0.1%,0.5%和1.0%。对冷却液流量范围进行了测试。发现传热系数相对于纯蒸汽值提高了约5倍,这表明由于Marangoni冷凝而引起的冷凝物热阻降低超过了蒸汽中的扩散阻力。最佳性能的组合物(冷时在液体中)取决于蒸汽速度,但在所有情况下的乙醇含量为0.025-0.1%。对于大气压测试,传热系数为最佳组成,并且在蒸气与表面温度差约为15 K时,随着蒸气速度的增加,其传热系数从约55 kW / m K增加到约110kW / m〜2 K从大约0.8到7.5 m / s对于14 kPa的压力,最佳组成的传热系数以及在汽化温度为9 K的情况下,从大约70 kW / m〜2 K增加到大约90 kW / m〜2K。蒸气速度从约5.0升至15.0 m / s。包含在不同条件下在管表面上出现马兰戈尼冷凝现象的照片。

著录项

  • 来源
    《Journal of Heat Transfer》 |2013年第3期|031502.1-031502.10|共10页
  • 作者单位

    School of Engineering and Materials Science,Queen Mary University of London,Mile End Road,London E1 4NS, UK Rachna College of Engineering and Technology,University of Engineering and Technology,Lahore 54000, Pakistan;

    School of Engineering and Materials Science,Queen Mary University of London,Mile End Road,London E1 4NS, UK;

    School of Engineering and Materials Science,Queen Mary University of London,Mile End Road,London E1 4NS, UK;

    School of Engineering and Materials Science,Queen Mary University of London,Mile End Road,London E1 4NS, 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

    marangoni condensation; steam-ethanol mixture; heat transfer; mass transfer; phase change; heat-transfer enhancement;

    机译:马兰戈尼缩合;蒸汽-乙醇混合物;传播热量;传质相变传热增强;
  • 入库时间 2022-08-18 00:23:52

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