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dc.creatorNguyen, P. K.en
dc.creatorBontozoglou, V.en
dc.date.accessioned2015-11-23T10:40:56Z
dc.date.available2015-11-23T10:40:56Z
dc.date.issued2011
dc.identifier10.1063/1.3591154
dc.identifier.issn1070-6631
dc.identifier.urihttp://hdl.handle.net/11615/31350
dc.description.abstractSteady flow of a liquid film along sinusoidal, steeply corrugated walls is investigated by finite-element simulation of the 2D Navier-Stokes equations. Resonance between the wall and capillary-gravity waves travelling against the flow defines a critical Re and separates the flow into a subcritical and a supercritical regime. Steep corrugations trigger extensive flow separation in both regimes. However, the separation characteristics-most notably the limiting behavior for very thin and very thick films-vary because of the different significance of capillary forces in the two regimes. For very steep corrugations, two intersecting solution branches co-exist. The present computational predictions are compared favorably with independent experimental observations. (C) 2011 American Institute of Physics. [doi: 10.1063/1.3591154]en
dc.sourcePhysics of Fluidsen
dc.source.uri<Go to ISI>://WOS:000291106100012
dc.subjectINCLINED WAVY PLANESen
dc.subjectLIQUID-FILMen
dc.subjectVISCOUS-LIQUIDen
dc.subjectPERIODIC WALLen
dc.subjectREYNOLDS-NUMBERSen
dc.subjectSURFACEen
dc.subjectTOPOGRAPHYen
dc.subjectRESONANCEen
dc.subjectCORRUGATIONSen
dc.subjectCOLUMNen
dc.subjectMechanicsen
dc.subjectPhysics, Fluids & Plasmasen
dc.titleSteady solutions of inertial film flow along strongly undulated substratesen
dc.typejournalArticleen


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