Volume 30, Issue 9 No AccessEffects of a leading-edge fillet on the flow past an appendage-body junctionWilliam J. Devenport, Roger L. Simpson, Michael B. Dewitz and Naval K. AgarwalWilliam J. Devenport Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061Search for more papers by this author, Roger L. Simpson Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061Search for more papers by this author, Michael B. Dewitz Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061Search for more papers by this author and Naval K. Agarwal Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061Search for more papers by this authorPublished Online:17 May 2012https://doi.org/10.2514/3.11201SectionsRead Now ToolsAdd to favoritesDownload citationTrack citations ShareShare onFacebookXLinked InRedditEmail About Next article FiguresReferencesRelatedDetailsSee PDF for referencesCited byDownstream wake features of a Rood wing predicted by different turbulence models2 July 2024 | Journal of Marine Science and Technology, Vol. 29, No. 3Experimental investigation of the effect of sail geometry on the flow around the SUBOFF submarine model inspired by the dolphin’s dorsal fin10 May 2023 | Ships and Offshore Structures, Vol. 19, No. 6Reduction in endwall flow losses in turbine blade with the use of sweep in leading edge of the blade25 April 2023 | Journal of the Brazilian Society of Mechanical Sciences and Engineering, Vol. 45, No. 5Submarine hydrodynamics for off-design conditions28 September 2022 | Journal of Ocean Engineering and Marine Energy, Vol. 8, No. 4Analysis of the effect of vortex reduction structures on submarine tonal noise via frequency-domain method employing thickness noise source1 Aug 2022 | Ocean Engineering, Vol. 257Numerical Investigation of Turbulent Junction FlowsZachary Robison, John-Paul Mosele, Andreas Gross and Stephen Lynch6 July 2021 | AIAA Journal, Vol. 59, No. 11Experimental and Analytical Investigation of the Distortion of Turbulence Interacting with a Porous AirfoilRiccardo Zamponi, Stephane Moreau, Daniele Ragni and Christophe F. Schram28 July 2021On the role of turbulence distortion on leading-edge noise reduction by means of porosity1 Oct 2020 | Journal of Sound and Vibration, Vol. 485A Review of Numerical and Experimental Studies of the Anti-FairingZeno Belligoli, Richard Dwight, Georg Eitelberg, Sampath Srikumar, David Faleiros, Michiel van Nesselrooij and Olaf van Campenhout8 June 2020Numerical Simulation of Turbulent Junction Flows with Upstream DisturbancesZachary D. Robison, John-Paul Mosele and Andreas Gross14 June 2019Influence of fillet shapes on secondary flow field in a transonic axial flow turbine stage1 Nov 2018 | Aerospace Science and Technology, Vol. 82-83Validation of Numerical Simulation on the Flow Field of Submarine with Various Types of stern appendages1 Oct 2018Numerical Simulations of Turbulent Junction FlowAndreas Gross and Zachary Robison24 June 2018Effects of upstream tetrahedron length on flow characteristics around juncture of circular cylinder and flat plate1 Apr 2018 | Experimental Thermal and Fluid Science, Vol. 92Horseshoe Vortex Suppression with a Strake6 April 2018Numerical analyses and optimizations on the flow in the nacelle region of a wind turbine16 August 2018 | Wind Energy Science, Vol. 3, No. 2Effects of an upstream triangular plate on the wing-body junction flow21 September 2017 | Physics of Fluids, Vol. 29, No. 9Efficient suction control of unsteadiness of turbulent wing-plate junction flows1 April 2017 | Journal of Hydrodynamics, Vol. 29, No. 2The NASA Juncture Flow Experiment: Goals, Progress, and Preliminary Testing (Invited)Christopher L. Rumsey, Dan Neuhart and Michael A. Kegerise2 January 2016Parametric Exploration of Wing–Body Junction Flow Using Computational Fluid DynamicsBryan C. Hinson and Klaus A. Hoffmann3 July 2015 | Journal of Aircraft, Vol. 52, No. 5Effects of an upstream tetrahedron on the circular cylinder–flat plate juncture flow2 July 2015 | Experiments in Fluids, Vol. 56, No. 7Effects of vortex generator on junction flow1 Jan 2015A Global Approach to Turbomachinery Flow Control: Passage Vortex Control26 September 2013 | Journal of Turbomachinery, Vol. 136, No. 4Effect of upstream control-cylinder on junction flow1 Jan 2014Experimental and Numerical Investigation of a Wing-Body Junction Flow Fabien Gand , Vincent Brunet and Sébastien Deck 29 November 2012 | AIAA Journal, Vol. 50, No. 12Leading-Edge Endwall Suction and Midspan Blowing to Reduce Turbomachinery Losses Matthew J. Bloxham and Jeffrey P. Bons 23 May 2012 | Journal of Propulsion and Power, Vol. 26, No. 6Flow dynamics past a simplified wing body junction18 November 2010 | Physics of Fluids, Vol. 22, No. 11A Combined Experimental, RANS and LES Investigation of a Wing Body Junction FlowFabien Gand, Vincent Brunet and Sébastien Deck13 November 2012Improvement of the flow around airfoil/flat-plate junctures by optimization of the leading-edge fence1 Sep 2009 | Journal of the Korean Society for Aeronautical Space Science, Vol. 37, No. 9Effects of an upstream inclined rod on the circular cylinder–flat plate junction flow6 February 2009 | Experiments in Fluids, Vol. 46, No. 6Modification of junction flows by altering the section shapes of the cylinders1 Jun 2008 | Journal of Visualization, Vol. 11, No. 2Influence of Passive Flow-Control Devices on the Pressure Fluctuations at Wing-Body Junction Flows23 February 2007 | Journal of Fluids Engineering, Vol. 129, No. 8Attachment-Line Approach for Design of a Wing-Body Leading-Edge Fairing Bas W. van Oudheusden , Casper B. Steenaert and Loek M. M. Boermans 22 May 2012 | Journal of Aircraft, Vol. 41, No. 2Effects of an Upstream Ribbed Surface on the Flow Past a Cylinder-Flat Plate JunctionRocky Nelson, George Elizarraras and Hamid Rahai11 November 2012Aerodynamic losses in a strut and duct flow with liftJens Lindqvist, Steven Collicott and John Sullivan22 August 2012J UNCTION F LOWS1 Jan 2001 | Annual Review of Fluid Mechanics, Vol. 33, No. 1A Survey of Time-Averaged Characteristics of Laminar and Turbulent Horseshoe Vortices1 June 1998 | Journal of Fluids Engineering, Vol. 120, No. 2An experimental investigation of two-point correlations in two- and three-dimensional turbulent boundary layersM. Olcmen, Roger Simpson and Michael Goody22 August 2012High Reynolds number experiments on bypass duct and strut flowsStephen Krautheim, Kenneth Miller, Bryan Campbell, Steven Collicott, John Sullivan, Stephen Krautheim, Kenneth Miller, Bryan Campbell, Steven Collicott and John Sullivan22 August 2012Aspects of turbulent boundary-layer separation1 Oct 1996 | Progress in Aerospace Sciences, Vol. 32, No. 5A five-velocity-component laser-Doppler velocimeter for measurements of a three-dimensional turbulent boundary layer1 January 1999 | Measurement Science and Technology, Vol. 6, No. 6 What's Popular Volume 30, Number 9September 1992 Metrics Crossmark TopicsAerodynamic PerformanceAerodynamicsAerospace SciencesBoundary LayersFlow RegimesFluid DynamicsFluid Flow PropertiesFluid MechanicsTurbulenceVortex DynamicsWind Tunnels KeywordsLeading EdgesBoundary Layer TransitionAngle of AttackHorseshoe VortexAdverse Pressure GradientNormal StressFreestream VelocityHistogramsNACA 0012Static PressureDigital Published online17 May 2012