Response of a flat plate laminar separation bubble to Reynolds number, free-stream turbulence and adverse pressure gradient variation
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[1] D. Lengani,et al. An accurate data base on laminar-to-turbulent transition in variable pressure gradient flows , 2019, International Journal of Heat and Fluid Flow.
[2] A. Alessandri,et al. Dynamic mode decomposition for the inspection of three-regime separated transitional boundary layers using a least squares method , 2019, Physics of Fluids.
[3] R. Guida,et al. Correlations for the Prediction of Intermittency and Turbulent Spot Production Rate in Separated Flows , 2018, Journal of Turbomachinery.
[4] M. Kotsonis,et al. Spanwise flow development within a laminar separation bubble under natural and forced transition , 2018, Experimental Thermal and Fluid Science.
[5] H. Fasel,et al. Role of Klebanoff modes in active flow control of separation: direct numerical simulations , 2018, Journal of Fluid Mechanics.
[6] S. Yarusevych,et al. Effects of free-stream turbulence intensity on transition in a laminar separation bubble formed over an airfoil , 2018, Experiments in Fluids.
[7] J. Kurelek,et al. Turbulence Intensity Effects on Laminar Separation Bubbles Formed over an Airfoil , 2017 .
[8] D. Lengani,et al. Inspection of the dynamic properties of laminar separation bubbles: free-stream turbulence intensity effects for different Reynolds numbers , 2017 .
[9] Marios Kotsonis,et al. Effect of Local DBD Plasma Actuation on Transition in a Laminar Separation Bubble , 2017 .
[10] R. Guida,et al. A wavelet-based intermittency detection technique from PIV investigations in transitional boundary layers , 2016 .
[11] D. Simoni,et al. A Simplified Model Predicting the Kelvin–Helmholtz Instability Frequency for Laminar Separated Flows , 2016 .
[12] A. Samson,et al. Effects of Free-Stream Turbulence on Transition of a Separated Boundary Layer Over the Leading-Edge of a Constant Thickness Airfoil , 2016 .
[13] D. Lengani,et al. Recognition of coherent structures in the boundary layer of a low-pressure-turbine blade for different free-stream turbulence intensity levels , 2015 .
[14] Bernhard Wieneke,et al. Collaborative framework for PIV uncertainty quantification: comparative assessment of methods , 2015 .
[15] B. Wieneke. PIV uncertainty quantification from correlation statistics , 2015 .
[16] D. Lengani,et al. POD analysis of the unsteady behavior of a laminar separation bubble , 2014 .
[17] Tamer A. Zaki,et al. From Streaks to Spots and on to Turbulence: Exploring the Dynamics of Boundary Layer Transition , 2013, Flow, Turbulence and Combustion.
[18] O. Marxen,et al. Vortex formation and vortex breakup in a laminar separation bubble , 2013, Journal of Fluid Mechanics.
[19] M. Visbal,et al. On the challenges in experimental characterization of flow separation over airfoils at low Reynolds number , 2013 .
[20] D. Lengani,et al. An Experimental Investigation of the Separated-Flow Transition Under High-Lift Turbine Blade Pressure Gradients , 2012 .
[21] Tamer A. Zaki,et al. Large Eddy Simulation of Transitional Separated Flow over a Flat Plate and a Compressor Blade , 2012 .
[22] Serhiy Yarusevych,et al. Parametric study of separation and transition characteristics over an airfoil at low Reynolds numbers , 2012 .
[23] N. Sandham,et al. Stability and receptivity characteristics of a laminar separation bubble on an aerofoil , 2010, Journal of Fluid Mechanics.
[24] S. Yarusevych,et al. On vortex shedding from an airfoil in low-Reynolds-number flows , 2009, Journal of Fluid Mechanics.
[25] Rolf Radespiel,et al. Dynamics of laminar separation bubbles at low-Reynolds-number aerofoils , 2009, Journal of Fluid Mechanics.
[26] O. N. Ramesh,et al. On the origin of the inflectional instability of a laminar separation bubble , 2009, Journal of Fluid Mechanics.
[27] Pierre E. Sullivan,et al. Separated-Shear-Layer Development on an Airfoil at Low Reynolds Numbers , 2008 .
[28] W. Schröder,et al. Investigation of the vortex induced unsteadiness of a separation bubble via time-resolved and scanning PIV measurements , 2008 .
[29] Neil D. Sandham,et al. Transitional separation bubbles and unsteady aspects of aerofoil stall , 2008, The Aeronautical Journal (1968).
[30] Jerry Westerweel,et al. On velocity gradients in PIV interrogation , 2008 .
[31] N. Sandham,et al. Direct numerical simulations of forced and unforced separation bubbles on an airfoil at incidence , 2008, Journal of Fluid Mechanics.
[32] B. McAuliffe,et al. Transition Mechanisms in Separation Bubbles Under Low and Elevated Freestream Turbulence , 2007 .
[33] Wolfgang Schröder,et al. Scanning PIV measurements of a laminar separation bubble , 2006 .
[34] O. Marxen,et al. Steady three-dimensional Streaks and their Optimal Growth in a Laminar Separation Bubble , 2006 .
[35] M. Yaras,et al. Large-Eddy Simulation of Transition in a Separation Bubble , 2006 .
[36] Michael Ol,et al. Comparison of Laminar Separation Bubble Measurements on a Low Reynolds Number Airfoil in Three Facilities , 2005 .
[37] Jens H. M. Fransson,et al. Transition induced by free-stream turbulence , 2005, Journal of Fluid Mechanics.
[38] Siegfried Wagner,et al. A Combined Experimental/Numerical Study of Unsteady Phenomena in a Laminar Separation Bubble , 2003 .
[39] M. Yaras,et al. Effects of Periodic Unsteadiness, Free-Stream Turbulence, and Flow Reynolds Number on Separation-Bubble Transition , 2003 .
[40] Ralph J. Volino,et al. Separated Flow Transition Under Simulated Low-Pressure Turbine Airfoil Conditions—Part 1: Mean Flow and Turbulence Statistics , 2002 .
[41] Ralph J. Volino,et al. Separated Flow Transition Under Simulated Low-Pressure Turbine Airfoil Conditions: Part 2 — Turbulence Spectra , 2002 .
[42] Ralph J. Volino,et al. Separated Flow Transition Under Simulated Low-Pressure Turbine Airfoil Conditions: Part 1 — Mean Flow and Turbulence Statistics , 2002 .
[43] Peter R. Voke,et al. Large-eddy simulation of boundary-layer separation and transition at a change of surface curvature , 2001, Journal of Fluid Mechanics.
[44] R. G. Jacobs,et al. Simulations of bypass transition , 2001, Journal of Fluid Mechanics.
[45] L. Hultgren,et al. Predictions of Separated and Transitional Boundary Layers Under Low-Pressure Turbine Airfoil Conditions Using an Intermittency Transport Equation , 2001 .
[46] Ralph J. Volino,et al. Measurements in Separated and Transitional Boundary Layers Under Low-Pressure Turbine Airfoil Conditions , 2000 .
[47] J. Hourmouziadis,et al. Separation Bubbles Under Steady and Periodic-Unsteady Main Flow Conditions , 2000 .
[48] Neil D. Sandham,et al. Direct numerical simulation of ‘short’ laminar separation bubbles with turbulent reattachment , 2000, Journal of Fluid Mechanics.
[49] Jonathan H. Watmuff,et al. Evolution of a wave packet into vortex loops in a laminar separation bubble , 1999, Journal of Fluid Mechanics.
[50] Richard D. Keane,et al. Theory of cross-correlation analysis of PIV images , 1992 .
[51] R. E. Mayle,et al. The Role of Laminar-Turbulent Transition in Gas Turbine Engines , 1991 .
[52] M. Gaster,et al. The Structure and Behavior of Laminar Separation Bubbles , 1969 .
[53] I. Tani. Low-speed flows involving bubble separations , 1964 .