The nanofluid flows in the channel with linearly varying wall temperature

Bibliographic Details
Title: The nanofluid flows in the channel with linearly varying wall temperature
Authors: Kai-Xin Hu, Yan Huang, Xin-Yuan Zhang, Sheng Wang, Qi-Sheng Chen
Source: Case Studies in Thermal Engineering, Vol 28, Iss , Pp 101602- (2021)
Publisher Information: Elsevier, 2021.
Publication Year: 2021
Collection: LCC:Engineering (General). Civil engineering (General)
Subject Terms: Nanofluids, Poiseuille flow, Heat transfer, Nanoparticle concentration, Viscosity stratification, Engineering (General). Civil engineering (General), TA1-2040
More Details: In many applications of heat exchanger, due to the heat convection, the wall temperature of the channel usually varies along the streamwise direction. The present paper reports the analysis of nanofluid flows in the channel with linearly varying wall temperature. The non-uniform equilibrium fluid medium model proposed by Buongiorno is applied, where the Brownian diffusion and thermophoresis of nanoparticles are considered. The numerical solutions of laminar flows are determined by the iteration method in conjunction with the Chebyshev collocation method. The results show that: (1) there is a Gaussian distribution of nanoparticle concentration in the wall-normal direction for convective cooling, while its standard deviation depends on the Peclet number and the ratio of Brownian diffusivity to thermophoretic diffusivity; (2) there are obvious stratifications for the viscosity and thermal conductivity in the flow; (3) the velocity decreases significantly with the increase of nanoparticle concentration for convective heating, while there is only a little decrease for the velocity in the cold region for convective cooling.
Document Type: article
File Description: electronic resource
Language: English
ISSN: 2214-157X
Relation: http://www.sciencedirect.com/science/article/pii/S2214157X21007656; https://doaj.org/toc/2214-157X
DOI: 10.1016/j.csite.2021.101602
Access URL: https://doaj.org/article/31ba5c76e8e242029637f6b0e26445d0
Accession Number: edsdoj.31ba5c76e8e242029637f6b0e26445d0
Database: Directory of Open Access Journals
More Details
ISSN:2214157X
DOI:10.1016/j.csite.2021.101602
Published in:Case Studies in Thermal Engineering
Language:English