1. COMSOL AB, Laminar Outflow, COMSOL Documentation (online), available from < https://doc.comsol.com/5.3/doc/com.comsol.help.cfd/cfd_ug_fluidflow_single.06.068.html >, (accessed on 15 November, 2023).
2. Go, D. B., Garimella, S. V., and Fisher, T. S., Numerical simulation of microscale ionic wind for local cooling enhancement, Thermal and Thermomechanical Phenomena in Electronics Systems, 2006. ITHERM’06. The Tenth Intersociety Conference on, IEEE (2006), DOI:10.1109/ITHERM.2006.1645321.
3. Horrak, U., Salm, J., and Tammet, H., Statistical characterization of air ion mobility spectra at Tahkuse observatory: Classification of air ions, Journal of Geophysical Research: Atmospheres, Vol. 105, No. D7 (2000), DOI:10.1029/1999JD901197.
4. Jewell-Larsen, N. E., Karpov, S. V., Krichtafovitch, I. A., Jayanty, V., Hsu, C.-P., and Mamishev, A. V., Modeling of corona-induced electrohydrodynamic flow with COMSOL multiphysics, Proceedings ESA Annual Meeting on Electrostatics, Minneapolis, Minnesota (2008), pp. 17–19.
5. Kuryachii, A. and Rusyanov, D., Turbulent skin friction reduction owing to electrohydrodynamic interaction in unipolar charged fluid, 27th International Congress of the Aeronautical Sciences (2010), ICAS2010-P2.1.