DocumentCode :
128191
Title :
Thermosolutal convection in a horizontal nanofluid layer: Introduction of oscillatory motions
Author :
Gupta, Utkarsh ; Sharma, Jaibir ; Wanchoo, R.K.
Author_Institution :
Dr. S.S.B.U.I.C.E.T, Panjab Univ., Chandigarh, India
fYear :
2014
fDate :
6-8 March 2014
Firstpage :
1
Lastpage :
6
Abstract :
An analytical and numerical analysis is made to investigate the thermosolutal convection in a horizontal nanofluid layer which is heated and soluted from below. The thermal Rayleigh number for bottom heavy configuration of nanoparticles is increased by a substantial amount as compared to that of regular binary fluid layer establishing the fact of heat transfer enhancement in binary nanofluids. The analysis reveals that oscillatory motions come into existence for this case. Also, density variations caused by heat at the bottom competes with the density gradient caused by nanoparticles and solute concentration at the bottom of the layer leads to oscillatory convection followed by stationary convection. The effect of concentration Rayleigh number, solute Rayleigh number, modified diffusivity ratio and nanofluid Lewis number on the stability of layer using alumina-water nanofluid has been studied and presented graphically.
Keywords :
alumina; convection; diffusion; flow instability; fluid oscillations; nanofluidics; nanoparticles; numerical analysis; thermal diffusion; two-phase flow; water; Al2O3-H2O; alumina-water nanofluid; binary nanofluids; bottom heavy configuration; concentration Rayleigh number; density gradient; density variations; heat transfer; horizontal nanofluid layer; modified diffusivity ratio; nanofluid Lewis number; nanoparticles; oscillatory convection; oscillatory motions; regular binary fluid layer; solute Rayleigh number; solute concentration; stationary convection; thermal Rayleigh number; thermosolutal convection; Computed tomography; Heating; Brownian motion; Thermophoresis; Thermosolutal convection; nanofluid;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Engineering and Computational Sciences (RAECS), 2014 Recent Advances in
Conference_Location :
Chandigarh
Print_ISBN :
978-1-4799-2290-1
Type :
conf
DOI :
10.1109/RAECS.2014.6799566
Filename :
6799566
Link To Document :
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