Effect of an Inserted Porous Layer Located at a Wall of a Parallel Plate Channel on Forced Convection Heat Transfer
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Date
2013
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
Springer Verlag
Open Access Color
Green Open Access
Yes
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Publicly Funded
No
Abstract
A theoretical study is performed on heat and fluid flow in partially porous medium filled parallel plate channel. A uniform symmetrical heat flux is imposed onto the boundaries of the channel partially filled with porous medium. The dimensional forms of the governing equations are solved numerically for different permeability and effective thermal conductivity ratios. Then, the governing equations are made dimensionless and solved analytically. The results of two approaches are compared and an excellent agreement is observed, indicating correctness of the both solutions. An overall Nusselt number is defined based on overall thermal conductivity and difference between the average temperature of walls and mean temperature to compare heat transfer in different channels with different porous layer thickness, Darcy number, and thermal conductivity ratio. Moreover, individual Nusselt numbers for upper and lower walls are also defined and obtained. The obtained results show that the maximum overall Nusselt number is achieved for thermal conductivity ratio of 1. At specific values of Darcy number and thermal conductivity ratio, individual Nusselt numbers approach to infinity since the value of wall temperatures approaches to mean temperature.
Description
Keywords
Channel flow, Fully developed, Partially filled porous media, Porous medium, Fully developed, Porous medium, Partially filled porous media, Channel flow
Fields of Science
0211 other engineering and technologies, 0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology
Citation
Uçar, E., Mobedi, M., and Pop, I. (2013). Effect of an inserted porous layer located at a wall of a parallel plate channel on forced convection heat transfer. Transport in Porous Media, 98(1), 35-57. doi:10.1007/s11242-013-0131-4
WoS Q
Q3
Scopus Q
Q3

OpenCitations Citation Count
24
Source
Transport in Porous Media
Volume
98
Issue
1
Start Page
35
End Page
57
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CrossRef : 10
Scopus : 34
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Mendeley Readers : 25
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34
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29
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805
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586
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