## Abstract The fluid flows and heat transfer characteristics of a tube with internal longitudinal fins were investigated experimentally and numerically. The realizable turbulence model was adopted to simulate the problem, whose results indicate a good agreement with the measured data. Compared wit
Convective heat transfer and pressure drop of annular tubes with three different internal longitudinal fins
β Scribed by Lin Tian; Qiuwang Wang; Gongnan Xie; Cunlu Zhao; Laiqin Luo
- Publisher
- John Wiley and Sons
- Year
- 2007
- Tongue
- English
- Weight
- 416 KB
- Volume
- 37
- Category
- Article
- ISSN
- 1099-2871
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β¦ Synopsis
Abstract
Pressure drop and heat transfer characteristics of air in three annular tubes with different internal longitudinal fins were investigated experimentally at uniform wall heat flux. The tested tubes have a doubleβpipe structure with the inner blocked tube as an insertion. Three different kinds of fins, plain rectangle fin, plain rectangle fin with periodical ridges and waveβlike fin, were located peripherally in the annulus. The friction factor and Nusselt number can be corrected by a powerβlaw correction in the Reynolds number range tested. It was found that the tube with periodical ridges on the plain fin or with waveβlike fin could augment heat transfer; however, the pressure drop was increased simultaneously. In order to evaluate the comprehensive heat transfer characteristics of the tested tubes, two criteria for evaluating the comprehensive thermal performance of tested tubes were adopted. They are: 1) evaluating the comprehensive heat transfer performance under three conditions: identical mass flow, identical pumping power, and identical pressure drop; 2) the second law of thermodynamics, i.e., the entropy generation. According to the two different evaluating methods, it was found that the tube with waveβlike fins provided the most excellent comprehensive heat transfer performance among the three tubes, especially when it was used under higher Reynolds number conditions. Β© 2007 Wiley Periodicals, Inc. Heat Trans Asian Res, 37(1): 29β40, 2008; Published online in Wiley InterScience (www.interscience.wiley.com). DOI 10.1002/htj.20186
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