A unique concept of utilizing localized surface compliance is proposed to suppress deep cavity aeroacoustics at a low Mach number. The core idea is to provide local absorption of …
Computations of coupled phenomena between the fluid and acoustic interactions in the cavity flow and heat conduction in the flat plates (stack) installed in the cavity were …
Computing sound, taking into account the dynamical phenomena leading to its generation and transmission through fluid, is a challenging issue, with several applications into different …
This study examines an elastic panel flush-mounted on the bottom wall of a deep cavity, under the subsonic flow condition of Mach number 0.09, as a passive approach to the tonal …
This paper reports a numerical study of a novel methodology for passive suppression of deep cavity noise by means of strategically designed and arrangements of multiple elastic …
This study investigates a novel passive control technique for suppressing tonal noise in deep cavities, focusing on the strategic use of surface compliance. An experimental setup …
In this study, simulations based on the three-dimensional compressible Navier–Stokes equations were conducted to clarify a control method with a plasma actuator to reduce the …
Featured Application Micro air vehicles. Abstract During insect flight, a feathering motion of the wing's controls vortex shedding for lift enhancement. In this study, in order to control the …