High specific impulse electrospray propulsion with small capillary emitters

Fuente: arXiv
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Autori principali: Caballero-Pérez, Manel, Galobardes-Esteban, Marc, Gamero-Castaño, Manuel
Natura: Preprint
Pubblicazione: 2025
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author Caballero-Pérez, Manel
Galobardes-Esteban, Marc
Gamero-Castaño, Manuel
author_facet Caballero-Pérez, Manel
Galobardes-Esteban, Marc
Gamero-Castaño, Manuel
contents This study demonstrates the feasibility of using smaller capillary emitters to achieve higher specific impulse ($I_\text{sp}$) in electrospray propulsion. Four ionic liquids were characterized using capillary emitters with tip diameters from 15 to 50 $μ$m. Smaller diameter capillaries produced smaller and more stable Taylor cones. This stabilization enabled steady cone-jet operation at significantly lower flow rates compared to larger emitters. This was unexpected because when the jet diameter is much smaller than far-field geometric features, the minimum flow rate is thought to be solely determined by the physical properties of the propellant. Using the smaller emitters and acceleration voltages of 10 kV, specific impulses up to 3000 s could be achieved with efficiencies above 50%, approximately doubling the $I_\text{sp}$ observed with larger emitters. For one of the liquids and the smallest emitters, the beam consisted solely of ions at the lowest flow rates, similarly to studies using externally wetted and porous emitters. Another important finding was that at sufficiently low flow rates, a significant fraction of the propellant fed to the emitter is not accelerated by the electrostatic field. These propellant losses make the time-of-flight technique unreliable for determining the $I_\text{sp}$.
format Preprint
id arxiv_https___arxiv_org_abs_2504_00474
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle High specific impulse electrospray propulsion with small capillary emitters
Caballero-Pérez, Manel
Galobardes-Esteban, Marc
Gamero-Castaño, Manuel
Fluid Dynamics
This study demonstrates the feasibility of using smaller capillary emitters to achieve higher specific impulse ($I_\text{sp}$) in electrospray propulsion. Four ionic liquids were characterized using capillary emitters with tip diameters from 15 to 50 $μ$m. Smaller diameter capillaries produced smaller and more stable Taylor cones. This stabilization enabled steady cone-jet operation at significantly lower flow rates compared to larger emitters. This was unexpected because when the jet diameter is much smaller than far-field geometric features, the minimum flow rate is thought to be solely determined by the physical properties of the propellant. Using the smaller emitters and acceleration voltages of 10 kV, specific impulses up to 3000 s could be achieved with efficiencies above 50%, approximately doubling the $I_\text{sp}$ observed with larger emitters. For one of the liquids and the smallest emitters, the beam consisted solely of ions at the lowest flow rates, similarly to studies using externally wetted and porous emitters. Another important finding was that at sufficiently low flow rates, a significant fraction of the propellant fed to the emitter is not accelerated by the electrostatic field. These propellant losses make the time-of-flight technique unreliable for determining the $I_\text{sp}$.
title High specific impulse electrospray propulsion with small capillary emitters
topic Fluid Dynamics
url https://arxiv.org/abs/2504.00474