Volume 33, Issue 2 No AccessCharacteristics of surface roughness associated with leading-edge ice accretionJaiwon ShinJaiwon Shin NASA Lewis Research Center, Cleveland, Ohio 44135Search for more papers by this authorPublished Online:22 May 2012https://doi.org/10.2514/3.46940SectionsRead Now ToolsAdd to favoritesDownload citationTrack citations ShareShare onFacebookXLinked InRedditEmail About Previous article Next article FiguresReferencesRelatedDetailsSee PDF for referencesCited bySurface microroughness effect on the transient turbulent flow in a centrifugal air pump3 June 2025 | Physics of Fluids, Vol. 37, No. 6Ice accretion studies on low Reynolds number UAV airfoil RG-15 – numerical validation12 May 2025 | International Journal of Micro Air Vehicles, Vol. 17Research on formation mechanism and output effect of wind turbine ice-covered blades13 May 2024 | Wind Engineering, Vol. 48, No. 6Stress Analysis of Ice Layers on Fan Rotor Blades in Aeroengines6 October 2024 | Aerospace, Vol. 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Rothmayer and J. Tsao22 August 2012A mechanism for ice roughness formation on an airfoil leading edge, contributing to glaze ice accretionJ. Tsao and A. Rothmayer22 August 2012Stability of air flow past thin liquid films on airfoils1 Jun 1997 | Computers & Fluids, Vol. 26, No. 5Stability of air flow past thin liquid films on airfoilsJen-Ching Tsao, Alric Rothmayer and Anatoly Ruban22 August 2012 What's Popular Volume 33, Number 2March 1996 Altmetrics Metrics Downloaded 19 times 60 citation in Crossref Crossmark TopicsAerodynamic PerformanceAerodynamicsAerospace SciencesAircraft DesignAircraft Operations and TechnologyAircraft Wing DesignAirfoilAirspeedBoundary LayersFluid DynamicsFluid Flow PropertiesFluid MechanicsVortex Dynamics KeywordsSurface RoughnessLeading EdgesBoundary Layer TransitionAirspeedNACA 0012Stagnation RegionNASA Lewis Research CenterData AcquisitionIcing ConditionsConvective Heat Transfer CoefficientDigital Published online22 May 2012