This work presents an experimental campaign to optimize the performance of electro-aerodynamic (EAD) thrusters through nonuniform emitter arrangements. The study examines the impact of emitter configurations on thrust and thrust-to-power coefficients CT and CT P . Different emitter arrangements, including collinear and staggered arrays, are tested using thrust, electrical, and velocity measurements as diagnostics. The tests are parametrically performed for different sizes (chords) of the collector electrodes. Results reveal that nonuniform emitter configurations outperform standard arrays, in particular, with short chord collectors, widely spaced apart. An optimal configuration for CT is identified among the staggered ones. In addition, droplet collectors demonstrate competitive performance compared to airfoil collectors.

Performance Enhancement of EAD Thrusters With Nonuniform Emitters Array

Usuelli, Davide;Terenzi, Raffaello;Trovato, Stefano;Belan, Marco
2024-01-01

Abstract

This work presents an experimental campaign to optimize the performance of electro-aerodynamic (EAD) thrusters through nonuniform emitter arrangements. The study examines the impact of emitter configurations on thrust and thrust-to-power coefficients CT and CT P . Different emitter arrangements, including collinear and staggered arrays, are tested using thrust, electrical, and velocity measurements as diagnostics. The tests are parametrically performed for different sizes (chords) of the collector electrodes. Results reveal that nonuniform emitter configurations outperform standard arrays, in particular, with short chord collectors, widely spaced apart. An optimal configuration for CT is identified among the staggered ones. In addition, droplet collectors demonstrate competitive performance compared to airfoil collectors.
2024
Atmospheric ion thruster, corona discharge, EAD propulsion, ionic emitters configuration
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/1279151
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