首页> 外文期刊>Heat Transfer Engineering >Experimental Study on Pool Boiling Heat Transfer for R22, R407c, and R410a on a Horizontal Tube Bundle With Enhanced Tubes
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Experimental Study on Pool Boiling Heat Transfer for R22, R407c, and R410a on a Horizontal Tube Bundle With Enhanced Tubes

机译:R22,R407c和R410a在带有增强管的水平管束上的池沸腾传热的实验研究

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摘要

An experimental test rig for study of the pooling-boiling heat transfer performance of pure and mixed refrigerants was designed and established. The test section is a horizontal tube bundle evaporator with nine mechanically fabricated porous surface tubes in a triangular layout. With this test system, the heat transfer coefficients of the nucleate boiling in the evaporator were measured for R22, R407c, and R410a. Extensive experimental measures were made for those pure and mixed refrigerants at different heat fluxes from 10 kW m~(-2) to 43 kW m~(-2) at saturation temperature of 9℃. Comprehensive measured data are presented in this paper. From experimental results, it is found that the pool boiling heat transfer coefficient increases with increasing the heat flux. It is also found that boiling heat transfer coefficients for R410a are 1.25-1.81 times and 6.33-7.02 times higher than that for R22 and R407c, respectively. The experimental correlations for the pool boiling heat transfer coefficients of R22, R407c, and R410a on the present enhanced tubes bundle are developed. The thermal resistance analysis reveals that the thermal resistance of the water side is a controlling factor for the evaporator for R22 and R410a. However, for R407c, the thermal resistance of the refrigerant side is slightly higher than that of the water side. To further improve the overall heat transfer coefficient in the evaporator of R22 and R410a, the enhancement for both the inside and outside is equally important, and the effectively enhanced boiling surface must be developed for the evaporator of R407c.
机译:设计并建立了用于研究纯制冷剂和混合制冷剂池沸腾传热性能的实验试验台。测试部分是卧式管束蒸发器,具有九个机械制造的多孔表面管,呈三角形布局。使用该测试系统,针对R22,R407c和R410a测量了蒸发器中成核沸腾的传热系数。针对饱和热度为9℃,从10 kW m〜(-2)到43 kW m〜(-2)的不同热通量的纯制冷剂和混合制冷剂,进行了广泛的实验措施。本文提供了全面的测量数据。从实验结果发现,池沸腾传热系数随着热通量的增加而增加。还发现,R410a的沸腾传热系数分别比R22和R407c的沸腾传热系数高1.25-1.81倍和6.33-7.02倍。开发了在本增强管束上的R22,R407c和R410a的池沸腾传热系数的实验相关性。热阻分析表明,水侧的热阻是R22和R410a蒸发器的控制因素。但是,对于R407c,制冷剂侧的热阻略高于水侧的热阻。为了进一步提高R22和R410a蒸发器中的总传热系数,内部和外部的增强同等重要,并且必须为R407c的蒸发器开发有效增强的沸腾表面。

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  • 来源
    《Heat Transfer Engineering》 |2011年第12期|p.943-948|共6页
  • 作者单位

    Key State Laboratory of Enhanced Heat Transfer and Energy Conservation South China University of Technology,Guangzhou, China;

    Key State Laboratory of Enhanced Heat Transfer and Energy Conservation South China University of Technology,Guangzhou, China;

    Key State Laboratory of Enhanced Heat Transfer and Energy Conservation South China University of Technology,Guangzhou, China;

  • 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
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:18:58

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