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  • 标题:HEAT TRANSFER ENHANCEMENT AND FRICTION IN DOUBLEPIPE HEAT EXCHANGER WITH VARIOUS NUMBER OFLONGITUDINAL GROOVES
  • 本地全文:下载
  • 作者:Putu Wijaya Sunu ; Daud Simon Anakottapary ; I Made Suarta
  • 期刊名称:Acta Polytechnica
  • 印刷版ISSN:1210-2709
  • 电子版ISSN:1805-2363
  • 出版年度:2020
  • 卷号:60
  • 期号:6
  • 页码:518-527
  • DOI:10.14311/AP.2020.60.0518
  • 语种:English
  • 出版社:Czech Technical University in Prague
  • 摘要:It has been found out that heat exchangers with longitudinal grooves produce betterheat transfer than those without longitudinal grooves. However, up to now, there have been fewinvestigations and applications of longitudinal grooves in relation to heat transfer associated withfriction from the annulus of a heat exchanger. The present investigation examined the effects oflongitudinal grooves in a double pipe heat exchanger on the characteristics of heat transfer and friction.Longitudinal rectangular grooves were carved into the outer side of a tube at a specified depth (t) andwidth (l). The effect of the number of longitudinal grooves, Reynolds number (Re), on the thermaland hydraulic performance was evaluated based on the heat exchanger experimental data. A total offour pipes were used: one pipe with 2 grooves, one pipe with 4 grooves, one pipe with 6 grooves andone pipe with 8 grooves. Water, hot and cold, was used as the working fluid. The test was performedwith the cold water as the working fluid, with the Reynolds number from about 33 000 to 46 000 in acounter-flow scheme. The result showed that the number of grooves improved the heat transfer andcaused a pressure drop. The increase in heat transfer ranged from 1.05 to 1.15, and the pressure loss ofthe system reached almost 30 % as compared with the smooth annulus, the annulus with no groove.The installation of longitudinal grooves in a heat exchanger system enhanced the process of the heatflow through the boundary but provided a compensation for the pressure loss, which was correlatedwith the friction and pumping power.
  • 关键词:Heat transfer;heat exchanger;longitudinal grooves;friction
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