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Turbulent Flow in Integrally Enhanced Tubes, Part 2: Analysis and Performance Comparison

 

作者: T. S. RAVIGURURAJAN,   T. J. RABAS,  

 

期刊: Heat Transfer Engineering  (Taylor Available online 1996)
卷期: Volume 17, issue 2  

页码: 30-40

 

ISSN:0145-7632

 

年代: 1996

 

DOI:10.1080/01457639608939871

 

出版商: Taylor & Francis Group

 

数据来源: Taylor

 

摘要:

This article analyzes heat transfer and friction factor data for single-phase, turbulent flow inside enhanced tubes for different enhanced tube types and from different data sources. Data are given for several enhanced tube types such as extruded tubes (ribs or disruptions with transverse and intermediate helix angles), spirally indented tubes, and tubes with coil inserts. In general, there is good agreement between the heat transfer data for tubes of the same type—manufactured with the same method—from different investigations with essentially the same disruption height, pitch, and helix angle. The variations increase (20–30%) when comparisons are made with similar core geometries but different types such as indented and extruded, or indented and coil inserts. The performance of tubes with coil inserts is very similar to that of tubes with discrete extruded disruptions. There is substantially more deviation of the friction factor data from different sources, even for the same tube type. Also, the analysis shows that more care is required to obtain repeatable and high-quality friction factor data than heat transfer data.

 

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