Numerical Study on Heat Transfer Enhancement for Use of Corrugated, Nodal and Horizontal Grain Tubes

With isopentane as working fluid, the heat transfer performances for corrugated, nodal and horizontal grain tubes are simulated. The structural parameters of the three kinds of tubes are compared with those of the plain tube. The numerical results using computational fluid dynamics are validated wit...

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Veröffentlicht in:Transactions of Tianjin University 2014-10, Vol.20 (5), p.385-392
1. Verfasser: 朱家玲 王钰沛 张伟 刘雪玲
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Sprache:eng
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Zusammenfassung:With isopentane as working fluid, the heat transfer performances for corrugated, nodal and horizontal grain tubes are simulated. The structural parameters of the three kinds of tubes are compared with those of the plain tube. The numerical results using computational fluid dynamics are validated with theoretical values. For the corrugated, nodal and horizontal grain tubes, the heat transfer enhancements (HTEs) are 2.31-2.53, 1.18-1.86 and 1.02-1.31 times of those of the plain tube, respectively. However, the improved HTEs are at the expense of pressure losses. The drag coefficients are 6.10-7.09, 2.06-11.03 and 0.53-1.83 higher, respectively. From the viewpoint of comprehensive heat transfer factor, the corrugated tube is recommended for engineering applications, followed by the horizontal grain tube.
ISSN:1006-4982
1995-8196
DOI:10.1007/s12209-014-2215-9