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首页> 外文期刊>Letters in heat and mass transfer >Empirical correlations for the determination of R134a's convective heat transfer coefficient in horizontal and vertical evaporators having smooth and corrugated tubes
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Empirical correlations for the determination of R134a's convective heat transfer coefficient in horizontal and vertical evaporators having smooth and corrugated tubes

机译:确定具有光滑波纹管的卧式和立式蒸发器中R134a对流传热系数的经验相关性

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摘要

Boiling heat transfer of R134a flowing in the inner tube and hot water flowing in the annulus were examined inside smooth and corrugated tube-in-tube heat exchangers in authors' previous studies experimentally. The apparatus has 0.85 m long double tube for vertical orientation and 2.5 m long double tube for horizontal orientation as its test sections whose inner ones are smooth and corrugated copper tubing having inner diameters of 0.0087 m for vertical tubes and 0.0081 m for horizontal tubes. The range of mass fluxes are 20,300 and 400 kg m~(-2) s~(-1) for vertical tubes, and 300,400 and 500 kg m~(-2) s~(-1) for horizontal tubes. The average vapor qualities vary from 0.14 to 0.86 for vertical tubes, 0.09-0.81 for horizontal tubes, and saturation pressure interval is between 4.5 and 5.7 for both tube orientations. The average boiling heat transfer coefficient of R134a is calculated by means of the energy balance in the test section. In this existing study, the predictability of almost whole well-known empirical correlations in literature suggested for convective boiling flows in smooth and corrugated tubes is experienced by using the authors'large number of experimental database (302 data points for vertical tubes and 227 data points for horizontal tubes). Characteristics of trend lines plotted for the change of vapor quality, saturation temperature, mass flux and heat flux with experimental boiling heat transfer coefficients are examined as well in relation to various saturation temperatures and mass fluxes. Furthermore, the most successful correlations validated their predictabilities for both vertical and horizontal oriented evaporators having smooth and corrugated tubes.
机译:在作者以前的研究中,通过光滑的波纹管内换热器研究了在内管中流动的R134a的沸腾传热和在环空中流动的热水的沸腾传热。该装置具有0.85m长的垂直取向的双管和2.5m长的水平取向的双管作为其测试部分,其内部是光滑的波纹铜管,垂直管的内径为0.0087m,水平管的内径为0.0081m。垂直管的质量通量范围为20,300和400 kg m〜(-2)s〜(-1),水平管的质量通量范围为300,400和500 kg m〜(-2)s〜(-1)。垂直管的平均蒸气质量在0.14到0.86之间,水平管的平均蒸气质量在0.09-0.81之间,并且两种管的饱和压力间隔在4.5到5.7之间。 R134a的平均沸腾传热系数是通过测试部分的能量平衡来计算的。在这项现有研究中,利用作者大量的实验数据库(垂直管的302个数据点和227个数据点),对光滑和波纹管中对流沸腾流动的文献中几乎所有众所周知的经验相关性的可预测性进行了体验。用于水平管)。还检查了针对蒸气质量,饱和温度,质量通量和热通量随实验沸腾传热系数的变化绘制的趋势线的特性,以及与各种饱和温度和质量通量的关系。此外,最成功的相关性验证了其对具有光滑波纹管的垂直和水平方向蒸发器的可预测性。

著录项

  • 来源
    《Letters in heat and mass transfer 》 |2016年第8期| 85-97| 共13页
  • 作者单位

    Heat and Thermodynamics Division, Department of Mechanical Engineering, Faculty of Mechanical Engineering, Yildiz Technical University, Yildiz, Besiktas, Istanbul 34349, Turkey;

    Heat and Thermodynamics Division, Department of Mechanical Engineering, Faculty of Mechanical Engineering, Yildiz Technical University, Yildiz, Besiktas, Istanbul 34349, Turkey;

    Heat and Thermodynamics Division, Department of Mechanical Engineering, Faculty of Mechanical Engineering, Yildiz Technical University, Yildiz, Besiktas, Istanbul 34349, Turkey;

    Fluid Mechanics, Thermal Engineering and Multiphase Flow Research Lab. (FUTURE), Department of Mechanical Engineering, Faculty of Engineering, King Mongkut's University of Technology Thonburi, Bangmod, Bangkok 10140, Thailand;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Evaporator; Evaporation; Boiling; Corrugated tube; Calculating method; Heat transfer coefficient;

    机译:蒸发器蒸发;沸腾;波纹管;计算方法;传热系数;

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