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Visualization of convective fluid flow in a porous medium

Publication ,  Journal Article
Howle, L; Behringer, RP; Georgiadis, J
Published in: Nature
January 1, 1993

WHEN a horizontal layer of fluid is heated from below, it may undergo Rayleigh-Benard convection (RBC), leading to the spontaneous appearance of regular patterns of fluid flow1. The shadow-graph technique 2, which allows visualization of the convection patterns, has assisted in developing an understanding of RBC. Related to RBC is convection in a fluid permeating a porous medium (called Horton-Rodgers-Lapwood convection or HRLC) when it is heated from below3-7. HRLC is relevant to geothermal applications and to flow in soils. Pattern formation in HRLC is less easily visualized by shadowgraph techniques because of the difficulties of transmitting light through the porous medium. Here we show how these difficulties can be overcome by constructing porous media in which the interfaces between solid and liquid are either parallel or perpendicular to the confining boundaries of the experimental system. Convection in such a medium can be visualized using conventional shadowgraph methods, and we compare the stationary flow patterns observed against measurements of heat transport. © 1993 Nature Publishing Group.

Duke Scholars

Published In

Nature

DOI

ISSN

0028-0836

Publication Date

January 1, 1993

Volume

362

Issue

6417

Start / End Page

230 / 232

Related Subject Headings

  • General Science & Technology
 

Citation

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Howle, L., Behringer, R. P., & Georgiadis, J. (1993). Visualization of convective fluid flow in a porous medium. Nature, 362(6417), 230–232. https://doi.org/10.1038/362230a0
Howle, L., R. P. Behringer, and J. Georgiadis. “Visualization of convective fluid flow in a porous medium.” Nature 362, no. 6417 (January 1, 1993): 230–32. https://doi.org/10.1038/362230a0.
Howle L, Behringer RP, Georgiadis J. Visualization of convective fluid flow in a porous medium. Nature. 1993 Jan 1;362(6417):230–2.
Howle, L., et al. “Visualization of convective fluid flow in a porous medium.” Nature, vol. 362, no. 6417, Jan. 1993, pp. 230–32. Scopus, doi:10.1038/362230a0.
Howle L, Behringer RP, Georgiadis J. Visualization of convective fluid flow in a porous medium. Nature. 1993 Jan 1;362(6417):230–232.
Journal cover image

Published In

Nature

DOI

ISSN

0028-0836

Publication Date

January 1, 1993

Volume

362

Issue

6417

Start / End Page

230 / 232

Related Subject Headings

  • General Science & Technology