Cathode-less RF plasma thruster design and optimisation for an atmosphere-breathing electric propulsion (ABEP) system

被引:0
作者
Andrews, Shaun [1 ]
Andriulli, Raoul [1 ]
Souhair, Nabil [2 ]
Magarotto, Mirko [3 ]
Ponti, Fabrizio [1 ]
机构
[1] Univ Bologna, Dept Ind Engn, Alma Prop Lab, Via Fontanelle 40, I-47121 Forli, Italy
[2] Int Univ Rabat, Sch Aerosp & Automot Engn, LERMA Lab, Rabat 11100, Morocco
[3] Univ Padua, Dept Informat Engn DEI, Via Gradenigo 6-B, I-35131 Padua, Italy
关键词
Atmosphere-breathing electric propulsion; (ABEP); Cathode-less RF plasma thruster; Very low earth orbit (VLEO); Global plasma model; Robust optimisation; AERODYNAMICS; SATELLITES;
D O I
10.1016/j.actaastro.2024.09.041
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
Atmosphere-breathing electric propulsion (ABEP) is a concept that ingests residual atmospheric gases as a source of propellant for an electric thruster, removing the need for onboard propellant storage. This would enable continuous low-thrust drag compensation, extending the lifetime of spacecraft in Very-Low Earth Orbit (VLEO); <250 km. VLEO is an appealing region for spacecraft operations, enabling new remote sensing missions with improved radiometric performance and spatial resolution, whilst reducing size, mass and power requirements, as well as mission cost. A preliminary design review and optimisation is therefore conducted for an ABEP system that uses the cathode-less radio frequency (RF) plasma thruster from Technology for Innovation & Propulsion (T4i) S.p.A. This removes the issue of thruster erosion by means of magnetic confinement and offers reduced susceptibility to varying atmospheric composition. A semi-empirical oxygen-nitrogen global source model (GSM) has been developed which considers the volume-averaged flux, momentum, and energy balance of the RF discharge. This includes a detailed chemistry model for the complex electron-molecular reactions and energy-loss channels of air plasma in the ionisation chamber. The GSM is coupled to an analytical model of flux balance for an air intake, verified by Direct Simulation Monte-Carlo (DSMC) simulation, to consider its design for maximum collection efficiency. This is then utilised in a robust multi-objective optimisation of the ABEP system, accounting also for spacecraft aerodynamics and power requirements.
引用
收藏
页码:833 / 844
页数:12
相关论文
共 46 条
  • [1] The AETHER project: development of air-breathing electric propulsion for VLEO missions
    Andreussi, T.
    Ferrato, E.
    Paissoni, C. A.
    Kitaeva, A.
    Giannetti, V
    Piragino, A.
    Schaeff, S.
    Katsonis, K.
    Berenguer, Ch
    Kovacova, Z.
    Neubauer, E.
    Tisaev, M.
    Karadag, B.
    Fabris, A. Lucca
    Smirnova, M.
    Mingo, A.
    Le Quang, D.
    Alsalihi, Z.
    Bariselli, F.
    Parodi, P.
    Jorge, P.
    Magin, T. E.
    [J]. CEAS SPACE JOURNAL, 2022, 14 (04) : 717 - 740
  • [2] Andrews S., 2019, 70 INT ASTR C WASH D
  • [3] Coupled global and PIC modelling of the REGULUS cathode-less plasma thrusters operating on xenon, iodine and krypton
    Andrews, Shaun
    Andriulli, Raoul
    Souhair, Nabil
    Di Fede, Simone
    Pavarin, Daniele
    Ponti, Fabrizio
    Magarotto, Mirko
    [J]. ACTA ASTRONAUTICA, 2023, 207 : 227 - 239
  • [4] Fully kinetic model of plasma expansion in a magnetic nozzle
    Andrews, Shaun
    Di Fede, Simone
    Magarotto, Mirko
    [J]. PLASMA SOURCES SCIENCE & TECHNOLOGY, 2022, 31 (03)
  • [5] Characterising satellite aerodynamics in Very Low Earth Orbit inclusive of ion thruster plume-thermosphere/ionosphere interactions
    Andrews, Shaun
    Berthoud, Lucy
    [J]. ACTA ASTRONAUTICA, 2020, 170 : 386 - 396
  • [6] Banks B., 2004, 2 INT EN CONV ENG C
  • [7] Bellomo N., 2019, 70 INT ASTR C WASH D
  • [8] Design and In-orbit Demonstration of REGULUS, an Iodine electric propulsion system
    Bellomo, Nicolas
    Magarotto, Mirko
    Manente, Marco
    Trezzolani, Fabio
    Mantellato, Riccardo
    Cappellini, Lorenzo
    Paulon, Devis
    Selmo, Antonio
    Scalzi, Davide
    Minute, Marco
    Duzzi, Matteo
    Barbato, Alessandro
    Schiavon, Alessandro
    Di Fede, Simone
    Souhair, Nabil
    De Carlo, Paola
    Barato, Francesco
    Milza, Fabiana
    Toson, Elena
    Pavarin, Daniele
    [J]. CEAS SPACE JOURNAL, 2022, 14 (01) : 79 - 90
  • [9] Are Very Low Earth Orbit (VLEO) satellites a solution for tomorrow's telecommunication needs?
    Berthoud, Lucy
    Hills, Russell
    Bacon, Andrew
    Havouzaris-Waller, Michael
    Hayward, Kieran
    Gayrard, Jean-Didier
    Arnal, Fabrice
    Combelles, Laurent
    [J]. CEAS SPACE JOURNAL, 2022, 14 (04) : 609 - 623
  • [10] The benefits of very low earth orbit for earth observation missions
    Crisp, N. H.
    Roberts, P. C. E.
    Livadiotti, S.
    Oiko, V. T. A.
    Edmondson, S.
    Haigh, S. J.
    Huyton, C.
    Sinpetru, L. A.
    Smith, K. L.
    Worrall, S. D.
    Becedas, J.
    Dominguez, R. M.
    Gonzalez, D.
    Hanessian, V
    Molgaard, A.
    Nielsen, J.
    Bisgaard, M.
    Chan, Y-A
    Fasoulas, S.
    Herdrich, G. H.
    Romano, F.
    Traub, C.
    Garcia-Alminana, D.
    Rodriguez-Donaire, S.
    Sureda, M.
    Kataria, D.
    Outlaw, R.
    Belkouchi, B.
    Conte, A.
    Perez, J. S.
    Villain, R.
    Heisserer, B.
    Schwalber, A.
    [J]. PROGRESS IN AEROSPACE SCIENCES, 2020, 117