...
首页> 外文期刊>International Journal of Heat and Mass Transfer >Influence of different categories of condensates on film condensation of R-134a on in-line arranged 3D finned tubes
【24h】

Influence of different categories of condensates on film condensation of R-134a on in-line arranged 3D finned tubes

机译:不同类别的凝结水对r-134a薄膜冷凝的影响在线布置3D翅片管

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The condensates generated in the process of film condensation, such as condensing, falling, and acting condensates, are identified and defined to obtain precise inundation effect model of 3D finned tube bundle. Furthermore, the influence of three categories of condensates on the film condensation under different heat fluxes and condensing temperatures is experimentally investigated via the homologous method. A test bench with a test section contains two arrays of 8 horizontal tubes is initially constructed. Experimental results show that the inundation effect coefficient decreases from 1.00 to 0.78 as acting condensate Re increases from 75 to 1860. The influence of heat flux on three categories of condensates is more significant than that of condensing temperature. As tube row depth increases from 1 to 6, the proportion of condensing condensate Re to acting condensate Re decreases from 100% to 15.0%, whereas the proportion of falling condensate Re to acting condensate Re increases from 0 to 85.0%. Furthermore, the condensation heat transfer model of single 3D finned tube and inundation effect model are established, and the deviations of results between experiments and models are almost within ±3.0%. The deviations of inundation effect coefficients between experiment and model proposed in this study are 92.5% and 50.0% less than those between experiment and models using routine method and considering single condensate with homologous method, respectively. Moreover, the inundation effect model proposed in this study reveals that different proportions of condensing or falling condensates to acting condensate lead to different inundation effect coefficient at the same acting condensate Re. The research results will lay the foundation for further revealing the mechanism of film condensation on 3D finned tube bundle and guide the thermal design of 3D finned tubes applied in shell-and-tube condensers.
机译:鉴定和定义在薄膜冷凝过程中产生的冷凝物,例如冷凝,下降和作用冷凝物,以获得3D翅片管束的精确淹没效果模型。此外,通过同源方法实验研究了三类在不同热通量和冷凝温度下膜冷凝物对膜冷凝的影响。具有测试部分的试验台包含两个8个水平管阵列最初构造。实验结果表明,由于作用冷凝水从75到1860增加,泛气效应系数从1.00到0.78减少。热量通量对三类冷凝水的影响比冷凝温度更大。由于管排深度从1到6增加,冷凝冷凝物Re的比例从100%降至15.0%,而落下的冷凝物Re的比例从0%增加到85.0%。此外,建立了单个3D翅片管和淹没效果模型的冷凝传热模型,实验与模型之间的偏差几乎在±3.0%范围内。本研究提出的实验与模型之间的淹没效应系数的偏差比使用常规方法的实验和模型与实验和模型之间的水平偏差为92.5%和50.0%。此外,本研究中提出的淹没效果模型揭示了在同一作用冷凝物Re的相同作用凝聚体中产生不同比例的冷凝或落凝聚物导致不同的淹没效应系数。研究结果将奠定进一步揭示3D翅片管束上薄膜冷凝机制的基础,并引导壳管冷凝器中的3D翅片管的热设计。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号