Modified split-potential model for modeling the effect of DBD plasma actuators in high altitude flow control

M Abdollahzadeh, JC Pascoa, PJ Oliveira - Current Applied Physics, 2014 - Elsevier
Surface DBD plasma actuators are novel means of actively controlling flow. They have
shown promising ability in reducing drag, postponing transition from laminar to turbulent …

A control mechanism of a typical fluid–structure interaction problem based on dielectric barrier discharge plasma actuation model

N Russo, LM Gonzalez, G Viccione… - European Journal of …, 2020 - Elsevier
This work numerically investigates the effects of using dielectric barrier discharge (DBD)
plasma actuators to control the deformation and the hydrodynamic properties of the well …

The scenario of two-dimensional instabilities of the cylinder wake under electrohydrodynamic forcing: a linear stability analysis

J D'Adamo, LM González, A Gronskis… - Fluid Dynamics …, 2012 - iopscience.iop.org
We propose to study the stability properties of an air flow wake forced by a dielectric barrier
discharge (DBD) actuator, which is a type of electrohydrodynamic (EHD) actuator. These …

Turbulent skin-friction drag reduction control by spanwise motion.

Q Yang - 2016 - wrap.warwick.ac.uk
Three types of actuators, ie, oscillating walls, Lorentz force actuators and DBD plasma
actuators, were used to actively control turbulent boundary layer for the turbulent skin-friction …