Preliminary Numerical Modelling of the Ionization Region to Model Ionic Propulsion
Ionic propulsion, where charged particles, ions, are produced between electrodes andaccelerate towards the negative electrode, has practical applications as a propulsion systemin the space industry; however, its adoption to in-atmosphere ionic propulsion is relativelynew and faces different challenges. A high potential difference is required to achieve acorona discharge between a positive and negative electrode. In this work, we will explorethe feasibility of ionic propulsion using CFD modelling to replicate the effect of the ions,with a future aim of improving efficiency. The ionization region is modelled for a 15 kVpotential difference, which is replicated with a velocity inlet, based on experimental data.The output velocity from the numerical simulation shows the same trend as theoretical predictionsbut significantly underestimates the magnitude of the ionic wind when comparedwith theoretical estimates. Further modelling is highlighted to improve predictions andassess if the theoretical model overestimates the ionic wind.
| Item Type | Article |
|---|---|
| Identification Number | 10.3390/jeta3040042 |
| Additional information | © 2025 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
| Keywords | ionic wind; corona discharge; sustainable aviation; electro-aerodynamic devices; thrust, engineering(all) |
| Date Deposited | 27 Feb 2026 09:42 |
| Last Modified | 28 Feb 2026 02:10 |
