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The Effect of the Angle of Inclination on the Operation Limiting Heat Flux of Long R-134a Filled Thermosyphons

机译:倾角对长R-134a填充热虹吸管的工作极限热通量的影响

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摘要

When traditional air-to-air cooling is too voluminous, long thermosyphons may offer a way out. For safe operation of heat exchangers equipped with thermosyphons, the limiting heat flux q"_(lim) is an important design parameter. Some literatures are found to deal with the operation limiting heat flux of closed two-phase thermosyphons. However, R-134a filled thermosyphons with large length-to-diameter (188) are hardly investigated up to now. Extrapolation of existing correlations to predict q"_(lim) in this case results in large scatter. The effect of the angle of inclination on q"_(lim) has not been considered until now. Dedicated experiments with a single thermosyphon with a large length-to-diameter ratio (188) and filled with R-134a are presented and analyzed. Effects of saturation temperature, filling ratio, and angle of inclination β on the operational limiting heat flux have been investigated. The thermosyphon functions properly if β <83 deg, and q"_(lim) is found to increase with increasing β. With decreasing saturation temperature, q"_(lim) increases. The filling ratio is found not to be crucial if it exceeds 25%. Correlations are presented to accurately predict the operation limiting heat flux for thermosyphons with a L/d ratio up to 188. Because of the accounting for the above new aspects, these correlations are also relevant for filling refrigerants other than R-134a.
机译:当传统的空对空冷却过于繁琐时,较长的热虹吸管可能会提供出路。为了使装有热虹吸管的热交换器安全运行,限制热通量q“ _(lim)是一个重要的设计参数。发现了一些有关封闭式两相热虹吸管的限制热通量的文献。但是,R-134a到目前为止,几乎没有研究过直径较大的直径较大的热虹吸管(188)。在这种情况下,外推现有相关性以预测q“ _(lim)会导致较大的散射。直到现在还没有考虑过倾斜角对q” _lim的影响。提出并分析了一个长径比大(188)并装有R-134a的单个热虹吸管的专用实验。研究了饱和温度,填充比和倾斜角度β对极限工作热通量的影响。如果β<83度,并且q _(lim)随着β的增加而增加,则热虹吸管可以正常工作。随着饱和温度的降低,q“ _(lim)增大。如果填充率超过25%,填充率就不重要。提出了相关关系,可以准确地预测L / d高达188的热虹吸管的工作极限热通量。由于考虑了上述新方面,因此这些相关性也与填充R-134a以外的制冷剂有关。

著录项

  • 来源
    《Journal of Heat Transfer》 |2010年第5期|p.051501.1-051501.5|共5页
  • 作者单位

    Department of Mechanical Engineering,Technische Universiteit Eindhoven,Postbus 513,5600 MB Eindhoven, Netherlands;

    rnDepartment of Mechanical Engineering,Technische Universiteit Eindhoven,Postbus 513,5600 MB Eindhoven, Netherlands;

  • 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

    heat pipe; thermosyphon; heat exchanger; R-134a; limiting heat flux;

    机译:热管;热虹吸管热交换器;R-134a;极限热通量;

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