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Article Details

  • Article Code : FIRAT-AKADEMI-9007-4335
  • Article Type : Araştırma Makalesi
  • Publication Number : 4A0056
  • Page Number : 7-17
  • Doi : 10.12739/NWSA.2018.13.1.4A0056
  • Abstract Reading : 576
  • Download : 127
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Issue Details

  • Year : 2018
  • Volume : 13
  • Issue : 1
  • Number of Articles Published : 2
  • Published Date : 1.01.2018

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Nature Sciences

Serial Number : 4A
ISSN No. : 1308-7282
Release Interval (in a Year) : 4 Issues

NUMERICAL ANALYSIS OF HEAT TRANSFER ENHANCEMENT IN CONICAL-NOZZLE TURBULATORS INSERTED TUBE

Sibel GÜNEŞ1 , Toygun DAĞDEVİR2 , Orhan KEKLİKÇİOĞLU3 , Veysel ÖZCEYLAN4

This numerical work is associated with the investigation of the effect of turbulator arrangement (diverging and converging) on heat transfer enhancement in conical nozzle turbulators inserted circular tube. Three different pitch ratios (PR=2.5, 5 and 7.5) were considered in the numerical analyses, using air as test fluid. The numerical results of Nusselt number, friction factor and thermal performance factor were introduced for the range of Reynolds numbers of 6000-24000. The obtained results showed that smaller pitch ratios provided more heat transfer rate and pressure drop. As compared to converging nozzles, diverging nozzles generated more effective turbulance/reverse flow, and thus provided higher heat transfer and flow friction. Evidently, obtained results revealed that the usage of nozzle-turbulators as a turbulence/reverse flow generator has an important contribution on heat transfer improvement.

Keywords
Reverse Flow, Nozzle-Turbulator, Heat Transfer, Flow Friction, Nusselt Number,

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Authors

Sibel GÜNEŞ (1) (Corresponding Author)

Erciyes University
sgumus@erciyes.edu.tr | 0000-0002-8962-3735

Toygun DAĞDEVİR (2)

toygun@erciyes.edu.tr | 0000-0001-7388-3391

Orhan KEKLİKÇİOĞLU (3)

Erciyes Üniversitesi
keklikcioglu@erciyes.edu.tr | 0000-0002-6227-3130

Veysel ÖZCEYLAN (4)

ozceyhan@erciyes.edu.tr | 0000-0003-3829-9477

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References
[1] Eiamsa-ard, S., and Promvonge, P., (2010). Thermal Characterization of Turbulent Tube Flows over Diamond-shaped Elements in Tandem, International Journal of Thermal Sciences, Volume 49, Issue 6, pp:1051-1062.