References
[2]. Almohammadi, H., Nasirivatan, S., Esmaeilzadeh, E., Motezakker, A., & Nokhosteen, A. (2012). Experimental investigation of convective heat transfer and pressure drop of Al2O3/Water Nanofluid in laminar flow regime inside a Circular Tube. International Journal of Mechanical and Mechatronics Engineering, 6(8), 1750- 1755.
[5]. Choi, S.U.S., & Eastman, J.A. (1995). Enhancing Thermal Conductivity of Fluids with Nanoparticles, In D. A. Siginer and H. P. Wang (Eds.) Developments and applications of non - Newtonian flow, American Society of Mechanical Engineers, New York, (pp. 99-105).
[6]. Davarnejad, R., Barati, S., & Kooshki, M. (2013). CFD simulation of the effect of particle size on the nanofluids convective heat transfer in the developed region in a circular tube. SpringerPlus, 2(1), 192.
[11]. Eesa, M. (2009). CFD Studies of Complex Fluid Flows in Pipes (Doctoral dissertation) University of Birmingham.
[26]. Mishra, S. K., Chandra, H., & Arora, A. (2019b). Effects on heat transfer and radial temperature profile of non- isoviscous vibrational flow with varying Reynolds number. Journal of Applied Fluid Mechanics, 12(1), 135- 144.
[27]. Mishra, S. K., Chandra, H., & Arora, A. (2019c). Effects on thermal entrance length of non-Newtonain nanofluid under vibrational flow. International Journal of Technical Innovation in Modern Engineering and Science, 5(2), 50-55.
[33]. Shrirao, P. N., Sambhe, R. U., & Bodade, P. R. (2013). Convective heat transfer analysis in a circular tube with different types of internal threads of constant pitch. International Journal of Engineering and Advanced Technology, 2(3), 335-340.
[36]. Tian, S. (2015). CFD Modelling of Oscillatory Perturbed Advection in Viscous Flows. (Doctoral dissertation), University of Birmingham, Birmingham, UK.
[39].
Yu, K., Park, C., Kim, S., Song, H., & Jeong, H. (2017, August). CFD Analysis of nanofluid forced convection heat transport in laminar flow through a compact pipe. In Journal of Physics: Conference Series, 885(1), 1-7. IOP Publishing.