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Numerical Simulation of Cylindrical, Self-field MPD Thrusters with Multiple PropellantsA two-dimensional, two-temperature, single fluid MHD code was used to predict the performance of cylindrical, self-field magnetoplasmadynamic (MPD) thrusters operated with argon, lithium, and hydrogen propellants. A thruster stability equation was determined relating maximum stable J(sup 2)/m values to cylindrical thruster geometry and propellant species. The maximum value of J(sup 2)/m was found to scale as the inverse of the propellant molecular weight to the 0.57 power, in rough agreement with limited experimental data which scales as the inverse square root of the propellant molecular weight. A general equation which relates total thrust to electromagnetic thrust, propellant molecular weight, and J(sup 2)/m was determined using reported thrust values for argon and hydrogen and calculated thrust values for lithium. In addition to argon, lithium, and hydrogen, the equation accurately predicted thrust for ammonia at sufficiently high J(sup 2)/m values. A simple algorithm is suggested to aid in the preliminary design of cylindrical, self-field MPD thrusters. A brief example is presented to illustrate the use of the algorithm in the design of a low power MPD thruster.
Document ID
19940020241
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Lapointe, Michael R.
(Sverdrup Technology, Inc. Brook Park, OH, United States)
Date Acquired
September 6, 2013
Publication Date
March 1, 1994
Subject Category
Spacecraft Propulsion And Power
Report/Patent Number
E-8481
NAS 1.26:194458
NASA-CR-194458
Report Number: E-8481
Report Number: NAS 1.26:194458
Report Number: NASA-CR-194458
Accession Number
94N24714
Funding Number(s)
CONTRACT_GRANT: NAS3-25266
PROJECT: RTOP 506-42-81
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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