The aerodynamic performance of a transonic airfoil with spanwise forcing

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Berizzi, Niccolò, Gatti, Davide, Soldati, Giulio, Pirozzoli, Sergio, Quadrio, Maurizio
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866912223256903680
author Berizzi, Niccolò
Gatti, Davide
Soldati, Giulio
Pirozzoli, Sergio
Quadrio, Maurizio
author_facet Berizzi, Niccolò
Gatti, Davide
Soldati, Giulio
Pirozzoli, Sergio
Quadrio, Maurizio
contents Spanwise wall forcing in the form of streamwise-travelling waves is applied to the suction side of a transonic airfoil with a shock wave to reduce aerodynamic drag. The study, conducted using direct numerical simulations, extends earlier findings by Quadrio et al. (J. Fluid Mech. vol. 942, 2022, R2) and confirms that the wall manipulation shifts the shock wave on the suction side towards the trailing edge of the profile, thereby enhancing its aerodynamic efficiency. A parametric study over the parameters of wall forcing is carried out for the Mach number set at 0.7 and the Reynolds number at 300,000. Similarities and differences with the incompressible plane case are discussed; for the first time, we describe how the interaction between the shock wave and the boundary layer is influenced by flow control via spanwise forcing. With suitable combinations of control parameters, the shock is delayed, and results in a separated region whose length correlates well with friction reduction. The analysis of the transient process following the sudden application of control is used to link flow separation with the intensification of the shock wave.
format Preprint
id arxiv_https___arxiv_org_abs_2502_04516
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The aerodynamic performance of a transonic airfoil with spanwise forcing
Berizzi, Niccolò
Gatti, Davide
Soldati, Giulio
Pirozzoli, Sergio
Quadrio, Maurizio
Fluid Dynamics
Spanwise wall forcing in the form of streamwise-travelling waves is applied to the suction side of a transonic airfoil with a shock wave to reduce aerodynamic drag. The study, conducted using direct numerical simulations, extends earlier findings by Quadrio et al. (J. Fluid Mech. vol. 942, 2022, R2) and confirms that the wall manipulation shifts the shock wave on the suction side towards the trailing edge of the profile, thereby enhancing its aerodynamic efficiency. A parametric study over the parameters of wall forcing is carried out for the Mach number set at 0.7 and the Reynolds number at 300,000. Similarities and differences with the incompressible plane case are discussed; for the first time, we describe how the interaction between the shock wave and the boundary layer is influenced by flow control via spanwise forcing. With suitable combinations of control parameters, the shock is delayed, and results in a separated region whose length correlates well with friction reduction. The analysis of the transient process following the sudden application of control is used to link flow separation with the intensification of the shock wave.
title The aerodynamic performance of a transonic airfoil with spanwise forcing
topic Fluid Dynamics
url https://arxiv.org/abs/2502.04516