The influence of structural parameters on the permeability of ceramic foams

Ceramic foams are a new structural material, characterized by a high porosity and a large surface area and made of megapores interconnected by filaments. This results in a structure with low resistance to fluid flow, making them appropriate for use as a filter. This work studies the influence of sev...

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Main Authors: E. A. Moreira, J. R. Coury
Format: Article
Language:English
Published: Brazilian Society of Chemical Engineering 2004-01-01
Series:Brazilian Journal of Chemical Engineering
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0104-66322004000100004
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spelling doaj-a1e3cc434d3348eb80ddd1cb13fbf58f2020-11-24T23:36:47ZengBrazilian Society of Chemical EngineeringBrazilian Journal of Chemical Engineering0104-66321678-43832004-01-01211233310.1590/S0104-66322004000100004The influence of structural parameters on the permeability of ceramic foamsE. A. MoreiraJ. R. CouryCeramic foams are a new structural material, characterized by a high porosity and a large surface area and made of megapores interconnected by filaments. This results in a structure with low resistance to fluid flow, making them appropriate for use as a filter. This work studies the influence of several structural parameters, such as porosity, tortuosity, surface area and pore diameter, in predicting the permeability of ceramic foams. Foams with different pore densities were used as porous media. Permeability was measured utilizing water as the flowing fluid. The results show that the predicted permeability scatters widely with the parameters under study. Pore diameter was the structural parameter that best represented the media. An Ergun-type correlation was fitted to the data and represented very well the permeability of the media in all foams under the experimental conditions studied.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0104-66322004000100004Ceramic foamspermeabilityflow through porous media
collection DOAJ
language English
format Article
sources DOAJ
author E. A. Moreira
J. R. Coury
spellingShingle E. A. Moreira
J. R. Coury
The influence of structural parameters on the permeability of ceramic foams
Brazilian Journal of Chemical Engineering
Ceramic foams
permeability
flow through porous media
author_facet E. A. Moreira
J. R. Coury
author_sort E. A. Moreira
title The influence of structural parameters on the permeability of ceramic foams
title_short The influence of structural parameters on the permeability of ceramic foams
title_full The influence of structural parameters on the permeability of ceramic foams
title_fullStr The influence of structural parameters on the permeability of ceramic foams
title_full_unstemmed The influence of structural parameters on the permeability of ceramic foams
title_sort influence of structural parameters on the permeability of ceramic foams
publisher Brazilian Society of Chemical Engineering
series Brazilian Journal of Chemical Engineering
issn 0104-6632
1678-4383
publishDate 2004-01-01
description Ceramic foams are a new structural material, characterized by a high porosity and a large surface area and made of megapores interconnected by filaments. This results in a structure with low resistance to fluid flow, making them appropriate for use as a filter. This work studies the influence of several structural parameters, such as porosity, tortuosity, surface area and pore diameter, in predicting the permeability of ceramic foams. Foams with different pore densities were used as porous media. Permeability was measured utilizing water as the flowing fluid. The results show that the predicted permeability scatters widely with the parameters under study. Pore diameter was the structural parameter that best represented the media. An Ergun-type correlation was fitted to the data and represented very well the permeability of the media in all foams under the experimental conditions studied.
topic Ceramic foams
permeability
flow through porous media
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0104-66322004000100004
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