Affiliation:
1. Petroleum Engineering Program, Department of Chemical Engineering, University of Southern California, Los Angeles CA 90089-1211
Abstract
We present experimental and theoretical investigations of vapor phase growth in pore-network models of porous media. Visualization experiments of boiling of ethyl alcohol in horizontal etched-glass micromodels were conducted. The vapor phase was observed to grow into a disordered pattern following a sequence of pressurization and pore-filling steps. At sufficiently small cluster sizes, growth occurred “one pore at a time,” leading to invasion percolation patterns. Single-bubble (cluster) growth was next simulated with a pore-network simulator that includes heat transfer (convection and conduction), and capillary and viscous forces, although not gravity. A boundary in the parameter space was delineated that separates patterns of growth dictated solely by capillarity (invasion percolation) from other patterns. The region of validity of invasion percolation was found to decrease as the supersaturation (heat flux), the capillary number, the thermal diffusivity, and the vapor cluster size increase. Implications to continuum models are discussed.
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference33 articles.
1. Afgan
N. H.
, JovicL. A., KovalevS. A., and LenykovV. A., 1985, “Boiling Heat Transfer From Surfaces With Porous Layers,” Int. J. Heat Mass Trans., Vol. 28, pp. 415–422.
2. Bau
H. H.
, and TorranceK. E., 1982, “Boiling in Low-Permeability Porous Materials,” Int. J. Heat Mass Trans., Vol. 25, pp. 45–54.
3. Blunt
M.
, and KingP., 1991, “Relative Permeabilities From Two- and Three-Dimensional Pore-Scale Network Modelling,” Transport in Porous Media, Vol. 6, pp. 407–433.
4. Buckley, J. S., 1990, Interfacial Phenomena in Petroleum Recovery, N. R. Morrow, ed., Marcel Dekker Inc., New York.
5. Dhir
V.
, and CattonI., 1977, “Dryout Heat Fluxes for Inductively Heated Particulate Beds,” ASME JOURNAL OF HEAT TRANSFER, Vol. 99, pp. 250–256.
Cited by
45 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献