ENERGY, ENTROPY AND EXERGY ANALYSES OF HYBRID NANOFLUID FLOW IN A TRAPEZOIDAL CHANNEL
Öz
This study presents energy, entropy, and exergy analyses of Al2O3-Cu/water hybrid nanofluid flow in a trapezoidal cross-sectioned channel under a turbulent regime (104<Re<105) for the first time. Understanding the main source of the entropy generation along the channel, also obtaining the total entropy variation of hybrid nanofluid comparing to single nanofluids (Al2O3/water and Cu/water) and base fluid is pursued objective. In other to perform these aforementioned analyses, a realistic model, in which all formulas are derived, is developed and thermodynamic concepts such as exergy efficiency and exergy destruction for hybrid nanofluid flow in a non-circular cross-sectioned channel are discussed for the first time. Results obtaining from the analyses of both hybrid and single nanofluids have been compared and discussed for volumetric concentrations of 1.0% and 2.0%. As a result, it is obtained that 2.0% volume concentration hybrid nanofluid offers the best convective heat transfer performance with 34% enhancement and best exergetic performance. Furthermore, hybrid nanofluid has the lowest entropy generation value.
Anahtar Kelimeler
Kaynakça
- Takabi, B. and Shokouhmand, H., “Effects of Al2O3-Cu/water hybrid nanofluid on heat transfer and flow characteristics in turbulent regime,” Int. J. Mod. Phys. C, vol. 26, no. 4, p. 1550047, 2015.
- Selvakumar, P. and Suresh, S., “Use of Al2O3-Cu/water Hybrid Nanofluid in an Electronic Heat Sink,” IEEE Trans. Components, Packag. Manuf. Tech., vol. 2, no. 10, pp. 1600–1607, 2012.
- Suresh, S., Venkitaraj, K. P., Selvakumar, P., and Chandrasekar, M., "Effect of Al2O3-Cu/water hybrid nanofluid in heat transfer", Experimental Thermal And Fluid Science, 38: 54–60 (2012).
- Suresh, S., Venkitaraj, K. P., Selvakumar, P., and Chandrasekar, M., "Synthesis of Al2O3-Cu/water hybrid nanofluids using two step method and its thermo physical properties", Colloids And Surfaces A: Physicochemical And Engineering Aspects, 388 (1–3): 41–48 (2011).
- Moghadassi, A., Ghomi, E., and Parvizian, F., "A numerical study of water based Al2O3 and Al2O3-Cu hybrid nanofluid effect on forced convective heat transfer", International Journal Of Thermal Sciences, 92: 50–57 (2015).
- Ahammed, N., Asirvatham, L. G., and Wongwises, S., "Entropy generation analysis of graphene–alumina hybrid nanofluid in multiport minichannel heat exchanger coupled with thermoelectric cooler", International Journal Of Heat And Mass Transfer, 103: 1084–1097 (2016).
- Moghaddami, M., Mohammadzade, A., and Esfehani, S. A. V., "Second law analysis of nanofluid flow", Energy Conversion And Management, 52 (2): 1397–1405 (2011).
- Singh, P. K., Ahmed, N. Z., Das, S. K. and Shatilla, Y., “Exergy Analysis of Nanofluids In Microchannel”, 9th International Conference on Nanochannels, Microchannels, and Minichannels (ICNMM2011), Alberta, Canada, pp. 1–9, June 19-22, 2011.
Ayrıntılar
Birincil Dil
İngilizce
Konular
Mühendislik
Bölüm
Araştırma Makalesi
Yazarlar
Mutlu Tekir
*
0000-0003-2289-7034
Türkiye
Mutlucan Bayat
Bu kişi benim
0000-0002-3604-1707
Türkiye
Kamil Arslan
0000-0002-1216-6812
Türkiye
Yayımlanma Tarihi
29 Haziran 2021
Gönderilme Tarihi
24 Mart 2021
Kabul Tarihi
10 Mayıs 2021
Yayımlandığı Sayı
Yıl 2021 Cilt: 7 Sayı: 1
Cited By
Investigation of the Effects of Nanofluid Usage and Variation of Helical Fin Number on Heat Transfer in a Pipe With Helical Fins
Mühendislik Bilimleri ve Araştırmaları Dergisi
https://doi.org/10.46387/bjesr.1134936The first and second law analyses of thermodynamics for CoFe2O4/H2O flow in a sudden expansion tube inserted elliptical dimpled fins
International Journal of Mechanical Sciences
https://doi.org/10.1016/j.ijmecsci.2023.108144Heat transfer and entropy analysis of Fe3O4/H2O ferrofluid in teardrop-dimpled circular tubes
Journal of Thermal Analysis and Calorimetry
https://doi.org/10.1007/s10973-025-14972-5MATLAB Simulation of Blood-flow Behavior with Hybrid Magnetic Nanoparticles
International Journal of Thermodynamics
https://doi.org/10.5541/ijot.1759311