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Related papers: Leading Edge Vortex Dynamics of Airfoils, Pitching…

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The present study is a prelude to applying different flow control devices on pitching and plunging airfoils with the intention of controlling the growth of the leading edge vortex (LEV); hence, the lift under unsteady stall conditions. As a…

The strength and trajectory of a leading edge vortex (LEV) formed by a pitching-heaving hydrofoil (chord $c$) is studied. The LEV is identified using the $Q$-criterion method, which is calculated from the 2D velocity field obtained from PIV…

The leading edge vortex (LEV) is one of the most important lift augmentation mechanisms in flapping wing aerodynamics. We propose a methodology that aims to provide a quantitative description of the LEV. The first step of the method…

Fluid Dynamics · Physics 2025-09-08 Alejandro Gonzalo , Manuel Garcia-Villalba , Oscar Flores

The flow condition at the leading edge governs the dynamics of the leading-edge vortex, which is crucial for understanding the separated flow over an airfoil at high angle of attack. Furthermore, with extensive applications in biomimetic…

Fluid Dynamics · Physics 2026-04-28 Ching Chang , You-Peng Shih , Tang-An Li

This study investigates the flow evolution around a sinusoidal pitching NACA 0012 airfoil, defined by the National Advisory Committee for Aeronautics (NACA), undergoing deep dynamic stall using a wall-resolved large eddy simulation (LES)…

Fluid Dynamics · Physics 2026-02-09 Giacomo Baldan , Alberto Guardone

The present paper numerically investigates flow control over NACA0021 (National Advisory Committee for Aeronautics) airfoil by applying a leading-edge tubercle as a passive flow control device at transitional Reynolds number (Re) regime.…

Fluid Dynamics · Physics 2022-08-25 Alok Mishra , Ashoke De

Symmetric NACA airfoils tend to undergo abrupt stall characteristics at higher angle of attacks. The abrupt stall has deteriorating effect on lift as well as the efficiency of the airfoils. Abruptness in stall restricts the airfoil to…

Computational Engineering, Finance, and Science · Computer Science 2024-10-30 Chaitanya Kumar Konda , Vidyashankar. S , Ulavish. V. S , Sachin. A. M , Mahesh. K. Varpe

Flapping wing propulsion offers unrivalled manoeuvrability and efficiency at low flight speeds and in hover. These advantages are attributed to the leading edge vortex developing on an unsteady wing, which induces additional lift. We…

Fluid Dynamics · Physics 2021-02-10 Johannes Kissing , Bastian Stumpf , Jochen Kriegseis , Jeanette Hussong , Cameron Tropea

High-fidelity wall-resolved large-eddy simulations (LES) are utilized to investigate the flow-physics of small-amplitude pitch oscillations of an airfoil at Re = 100,000. The investigation of the unsteady phenomenon is done in the context…

Detailed flow dissection using Dynamic Mode Decomposition (DMD) and Proper Orthogonal Decomposition (POD) is carried out to investigate the dynamics of the flow-field around a NACA-0012 aerofoil at a Reynolds number of $5\times 10^4$, Mach…

Fluid Dynamics · Physics 2018-07-25 Eltayeb ElJack , Julio Soria

Several previous experimental and theoretical studies have shown that a leading edge vortex (LEV) on an airfoil or wing can provide lift enhancement. In this paper, unsteady 2D potential flow theory is employed to model the flow field of a…

Fluid Dynamics · Physics 2018-03-21 Xi Xia , Kamran Mohseni

The effects of sweep angle and reduced frequency on the leading-edge vortex (LEV) structure over flapping swept wings in the Reynolds number ($Re$) range of $\mathbf{O}(10^4)$ are yet to be completely understood. With increasing interest in…

Fluid Dynamics · Physics 2024-07-09 Alex Cavanagh , Chandan Bose , Kiran Ramesh

The expanding application in Micro-Air Vehicles has encouraged many researchers to understand the unsteady flow around a flapping foil at a low Reynolds number. We numerically investigate an incompressible unsteady flow around a…

Fluid Dynamics · Physics 2021-02-03 Mitesh Thakor , Gaurav Kumar , Debopam Das , Ashoke De

The flow around a symmetric aerofoil (NACA 0012) with an array of flexible flaplets attached to the trailing edge has been investigated at Reynolds numbers of 100,000 - 150,000 by using High-Speed Time-Resolved Particle Image Velocimetry…

Fluid Dynamics · Physics 2018-08-29 Edward Talboys , Christoph Bruecker

The paper presents a numerical investigation of the leading-edge vortices generated by rotating triangular wings at Reynolds number $Re=250$. A series of three-dimensional numerical simulations have been carried out using a Fourier…

Fluid Dynamics · Physics 2015-04-20 Dmitry Kolomenskiy , Yossef Elimelech , Kai Schneider

Combined pitching-and-surging of an airfoil at the identical frequency (i.e., synchronously), at four different phase-differences, was investigated theoretically and experimentally. The most general unsteady theoretical formulation was…

Fluid Dynamics · Physics 2025-04-23 C. Strangfeld , H. F. Müller-Vahl , C. N. Nayeri , C. O. Paschereit , D. Greenblatt

Extreme gust encounters by finite wings with disturbance velocity exceeding their cruise speed remain largely unexplored, while particularly relevant to miniature-scale aircraft. This study considers extreme aerodynamic flows around a…

Fluid Dynamics · Physics 2025-11-25 Hiroto Odaka , Luke Smith , Kunihiko Taira

We investigate the spatial distributions and production mechanisms of vorticity and turbulent kinetic energy around a finite NACA 0018 wing with square wingtip profile at $Re_c=10^4$ and $10^{\circ}$ angle of attack with the aid of Direct…

Fluid Dynamics · Physics 2022-05-18 Juan Carlos Bilbao-Ludena , George Papadakis

A large eddy simulation is performed to study secondary tones generated by a NACA0012 airfoil at angle of attack of $\alpha = 3^{\circ}$ with freestream Mach number of $M_{\infty} = 0.3$ and Reynolds number of $Re = 5 \times 10^4$. Laminar…

Fluid Dynamics · Physics 2022-03-14 Tulio R. Ricciardi , William R. Wolf , Kunihiko Taira

We propose here a method to experimentally quantify unsteady leading-edge flow separation on aerofoils with finite thickness. The methodology relies on the computation of a leading-edge suction parameter based on measured values of the…

Fluid Dynamics · Physics 2022-05-16 Julien Deparday , Xiaowei He , Jeff D. Eldredge , Karen Mulleners , David R. Williams
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