Modeling of gas flow through isotropic metallic foams

被引:15
|
作者
Crosnier, Sonia
Du Plessis, Jean Prieur
Riva, Roland
Legrand, Jack
机构
[1] CEA, F-38054 Grenoble, France
[2] Univ Stellenbosch, Dept Appl Math, ZA-7602 Matieland, South Africa
[3] Univ Nantes, GEPEA, ENITIAA, CRTT,IUT, F-44602 St Nazaire, France
关键词
D O I
10.1615/JPorMedia.v9.i1.30
中图分类号
O414.1 [热力学];
学科分类号
摘要
Because of their high porosity and especially their very high surface area, metal foams find application in various engineering processes such as gas distributors in fuel cells. Thus, there is a need for the prediction of the pressure drops for given fluid flow rates. In this paper, we present an improvement of the hydraulic model proposed by Du Plessis et al. (1994) adapted to isotropic metallic foam structures in which stagnant zones could exist. Experimental results for airflow through two different metallic foam structures (stainless steel and aluminum foams) are analyzed by application of the theoretical model and the results interpreted. The foams differ because of larger localized solid chunks at the strand interconnections and covered faces of some pores in the stainless steel foams than in aluminum foams. The results show that the submodel, in which there are no stagnant zones, allows good predictions of pressure drop without any fitting parameters for the aluminum foam, knowing the mean strand diameter and the porosity of the foam. In the case of stainless steel foam, results suggest that a combined model of the doubly staggered model and the granular model (Du Plessis and Masliyah, 1991) must be developed.
引用
收藏
页码:35 / 54
页数:20
相关论文
共 50 条
  • [1] Numerical Simulation of the Flow Through Metallic Foams: Multiscale Modeling and Experimental Validation
    Hetu, J. -F.
    Ilinca, F.
    Marcotte, J. -P.
    Baril, E.
    Lefebvre, L. P.
    Innocentini, M.
    POROUS MEDIA AND ITS APPLICATIONS IN SCIENCE, ENGINEERING AND INDUSTRY, 2010, 1254 : 287 - +
  • [2] Gas Permeation through Perforated Metallic Foams
    Rodrigues, V. P.
    Innocentini, M. D. M.
    Lefebvre, L. P.
    Baril, E.
    POROUS METALS AND METALLIC FOAMS: METFOAM 2007, 2008, : 463 - +
  • [3] Isotropic constitutive models for metallic foams
    Deshpande, VS
    Fleck, NA
    JOURNAL OF THE MECHANICS AND PHYSICS OF SOLIDS, 2000, 48 (6-7) : 1253 - 1283
  • [4] The flow of gas-liquid foams through pipe fittings
    Deshpande, NS
    Barigou, M
    INTERNATIONAL JOURNAL OF HEAT AND FLUID FLOW, 2001, 22 (01) : 94 - 101
  • [5] Numerical modeling of turbulent flow through isotropic porous media
    Kundu, P.
    Kumar, V.
    Mishra, I. M.
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2014, 75 : 40 - 57
  • [6] Numerical modeling of turbulent flow through isotropic porous media
    Kumar, V. (vim.singh@gmail.com), 1600, Elsevier Ltd (75):
  • [8] Gas-phase flow resistance of metal foams: Experiments and modeling
    Piatek, Marcin
    Gancarczyk, Anna
    Iwaniszyn, Marzena
    Jodlowski, Przemyslaw J.
    Lojewska, Joanna
    Kolodziej, Andrzej
    AICHE JOURNAL, 2017, 63 (06) : 1799 - 1803
  • [9] In Search of Governing Gas Flow Mechanism through Metal Solid Foams
    Gancarczyk, Anna
    Piatek, Marcin
    Iwaniszyn, Marzena
    Jodlowski, Przemyslaw J.
    Lojewska, Joanna
    Kowalska, Jolanta
    Kolodziej, Andrzej
    CATALYSTS, 2017, 7 (04):
  • [10] Experimental hydrodynamic study of flow through metallic foams: Flow regime transitions and surface roughness influence
    Kouidri, Ahmed
    Madani, Brahim
    MECHANICS OF MATERIALS, 2016, 99 : 79 - 87