The microwave electro-thermal (MET) thruster using water vapor propellant

被引:25
|
作者
Brandenburg, JE [1 ]
Kline, J
Sullivan, D
机构
[1] Univ Cent Florida, Kennedy Space Ctr, Florida Space Inst, Kennedy Space Ctr, FL 32899 USA
[2] Res Support Instruments, Monmouth Jct, NJ 08852 USA
关键词
D O I
10.1109/TPS.2005.845252
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
The research to develop the microwave electrothermal (MET) thruster at Research Support Instruments, Inc. (RSI) using a variety of gases as fuel is described. The MET has undergone dramatic evolution since its first inception, and it is now moving toward flight development. The MET uses an electrodeless, vortex-stabilized microwave discharge to superheat gas for propulsion. In its simplest design, the MET uses a directly driven resonant cavity empty of anything except gaseous propellant and the microwave fields that heat it. It is a robust, simple, inexpensive thruster with high efficiency, and has been scaled successfully to operate at 100 W, 1 kW, and 50 kW using 7.5-,2.45-, and 0.915-GHz microwaves respectively. The 50-KW, 0.915-GHz test was perhaps the highest power demonstration of any steady-state Electric thruster. The MET can use a variety of gases for fuel but the use of water vapor has been shown to give superior performance, with a measured specific impulse (I-sp) of greater than 800 s. When this added to the safety, ease of storage and transfer, and wide availability of water in space, the potential exists for using a water-fueled MET as the core propulsion system for refuelable space platforms.
引用
收藏
页码:776 / 782
页数:7
相关论文
共 50 条
  • [21] Electro-thermal modelling of monolithic and hybrid microwave and millimeter wave IC's
    Batty, W
    Panks, AJ
    Johnson, RG
    Snowden, CM
    VLSI DESIGN, 2000, 10 (04) : 355 - 389
  • [22] Electro-Thermal Modeling of Power LED Using COMSOL Environment
    Cuntala, Jozef
    Kondelova, Anna
    Hock, Ondrej
    Pridala, Michal
    2016 ELEKTRO 11TH INTERNATIONAL CONFERENCE, 2016, : 127 - 130
  • [23] A behavior electro-thermal model of the IGBT using Matlab/Simulink
    Mijlad, Naoual
    Elwarraki, Elmostafa
    Elbacha, Abdelhadi
    PROCEEDINGS OF 2019 IEEE 4TH WORLD CONFERENCE ON COMPLEX SYSTEMS (WCCS' 19), 2019, : 336 - 341
  • [24] DETERMINATION OF MERCURY BY ATOMIC-ABSORPTION SPECTROMETRY WITH COLD VAPOR AND ELECTRO-THERMAL TECHNIQUES
    KUNERT, I
    KOMAREK, J
    SOMMER, L
    ANALYTICA CHIMICA ACTA, 1979, 106 (02) : 285 - 297
  • [25] Predictive microwave device design by coupled electro-thermal simulation based on a fully physical thermal model
    Batty, W
    Christoffersen, CE
    David, S
    Panks, AJ
    Johnson, RG
    Snowden, CM
    Steer, MB
    8TH IEEE INTERNATIONAL SYMPOSIUM ON HIGH PERFORMANCE ELECTRON DEVICES FOR MICROWAVE AND OPTOELECTRONIC APPLICATIONS, 2000, : 111 - 116
  • [26] Application of CFD and vapor bubble dynamics for an efficient electro-thermal simulation of EDM: an integrated approach
    Das, Shirsendu
    Paul, Swarup
    Doloi, Biswanath
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2019, 102 (5-8): : 1787 - 1800
  • [27] Robust design optimization of electro-thermal microactuator using probabilistic methods
    B. Khayatzadeh Safaie
    M. Shamshirsaz
    M. Bahrami
    Microsystem Technologies, 2016, 22 : 557 - 568
  • [28] Robust design optimization of electro-thermal microactuator using probabilistic methods
    Safaie, B. Khayatzadeh
    Shamshirsaz, M.
    Bahrami, M.
    MICROSYSTEM TECHNOLOGIES-MICRO-AND NANOSYSTEMS-INFORMATION STORAGE AND PROCESSING SYSTEMS, 2016, 22 (03): : 557 - 568
  • [29] Fast electro-thermal circuit simulation using reduced order models
    Digele, G
    Lindenkreuz, S
    Kasper, E
    THERMINIC: COLLECTION OF PAPERS PRESENTED AT THE INTERNATIONAL WORKSOP ON THERMAL INVESTIGATIONS OF ICS AND MICROSTRUCTURES, 1998, : 115 - 120
  • [30] Electro-Thermal Modeling of Power LED Using SPICE Circuit Solver
    Negrea, Catalin
    Svasta, Paul
    Rangu, Marius
    2012 35TH INTERNATIONAL SPRING SEMINAR ON ELECTRONICS TECHNOLOGY (ISSE 2012): POWER ELECTRONICS, 2012, : 329 - 334