Experimental Investigation of Laminar Convective Heat Transfer and Pressure Drop of Al2O3/Water Nanofluid in Circular Tube Fitted with Twisted Tape Insert
Öz
In the present study, convective heat transfer coefficient
and pressure drop of Al2O3/water nanofluid in laminar flow
regime under constant inlet temperature conditions inside a circular finned-tube
with a typical twisted tape was experimentally investigated. For this purpose,
Al2O3 nanoparticles of 20 nm size were synthesized,
characterized and dispersed in distilled water to formulate Al2O3/water
nanofluid containing 3 and 5% volume concentration of nanoparticles. The
thermophysical properties like thermal conductivity and viscosity of Al2O3
nanofluid is determined through experiments at different volume
concentrations and validated. Experiments are conducted in the Reynolds number
range of (678–2033) with tape of twist ratio (H/D = 1.85). The effect of
different volume concentrations on convective heat transfer coefficient and
friction factor was studied. The results emphasize that increasing of particle volume
concentration leads to enhance convective heat transfer coefficient.
Measurements show the average heat transfer coefficient enhanced about 21-51 %
with 5% volume concentration and increased about 19-38 % with 3% volume
concentration compared to distilled water. In addition, the average ratio of (fnf/fbf)
was about 2.3 for 5% volume concentration. Therefore, there is a significant
increase in friction factor for nanofluids. A generalized regression equation
is developed for the estimation of Nusselt number and friction factor valid for
nanofluid.
Anahtar Kelimeler
Kaynakça
- [1] Bergles, A. E. "Handbook of Heat Transfer", McGraw-Hill, New York, NY, USA, 3rd edition, 1998.
- [2] Adrian B. and Allan K. D. "Heat transfer enhancement" In Heat Transfer Handbook, Chapter 14, pg.1033, -1101, Wiley- 2003.
- [3] Khaled A. R., Abdulhafiz N. I., and Boukhary A. Y., "Recent Advances in Heat Transfer Enhancements", Hindawi Publishing Corporation InternationalJournal of Chemical Engineering Volume 2010, Article ID 106461.
- [4] Whitham, J. M., "The Effects of Retarders in Fire Tubes of Steam Boilers", Street Railway.1896, 12(6), 374.
- [5] Khwanchit Wongcharee, Smith Eiamsa-ard, 2011,"Enhancement of Heat Transfer Using CuO/water Nanofluid and Twisted Tape with Alternate Axis", International Communications in Heat and Mass Transfer., 38:742–748.
- [6] E. Esmaeilzadeh, H. Almohammadi, A. Nokhosteen, A. Motezaker and A. N. Omrani, "Study on Heat Transfer and Friction Factor Characteristics of γ-Al2O3/water Through Circular Tube with Twisted Tape Inserts with Different Thicknesses", International Journal of Thermal Sciences, 82 (2014) 72-83.
- [7] Naik M. T., Ranga Janardana G., Syam Sundar L., "Experimental Investigation of Heat Transfer and Friction Factor with Water–Propylene Glycol Based CuO Nanofluid in a Tube with Twisted Tape Inserts", International Communications in Heat and Mass Transfer, 46, (2013), 13–21.
- [8] L. Syam Sundar and K.V. Sharma, "LAMINAR CONVECTIVE HEAT TRANSFER AND FRICTION FACTOR OF AL2O3 NANOFLUID IN CIRCULAR TUBE FITTED WITH TWISTED TAPE INSERTS", International Journal of Automotive and Mechanical Engineering (IJAME), 3, (2011), 265-278.
Ayrıntılar
Birincil Dil
İngilizce
Konular
Makine Mühendisliği
Bölüm
Araştırma Makalesi
Yazarlar
LAITH JAAFER Al-saady
Mechanical Engineering Department University of Technology – Baghdad – IRAQ
0000-0002-2808-4432
Iraq
Fouad A. Saleh
Bu kişi benim
Mechanical Engineering Department, University of Almustansiriya, Baghdad, Iraq
Iraq
Bassim M. Maajel
Bu kişi benim
Iraq
Yayımlanma Tarihi
10 Ağustos 2017
Gönderilme Tarihi
4 Mart 2017
Kabul Tarihi
-
Yayımlandığı Sayı
Yıl 2017 Cilt: 4 Sayı: 2