SPE Journal · 2006 · 133 citations · 23 references
Flushing InstabilityPore StructureEngineeringFluid MechanicsFlow PhysicDisperse FlowRheologyTransport PhenomenaMultiphase FlowParticle SizeParticle CloggingParticle-laden FlowFlow Localization
Summary Fluid-flow-driven particle migration through porous networks reflects the interplay between various particle-level forces, the relative size between migrating particles and pore constrictions, and the spatial variability of the velocity field. Experimental evidence shows that particle migration in radial fluid flow results in self-stabilizing annular clogging patterns when the particle size approaches the constriction size. Conversely, flow localization and flushing instability are observed when the particle size is significantly smaller than the pore-throat size.
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Particle transport through porous media
L.M. McDowell-Boyer, James Hunt, Nicholas Sitar · Water Resources Research · 1986 · 881 citations
Internal stability of granular filters
T. Cameron Kenney, Dennis H. Lau · Canadian Geotechnical Journal · 1985 · 702 citations