Chinese Space Science and Technology ›› 2017, Vol. 37 ›› Issue (5): 81-.doi: 10.16708/j.cnki.1000-758X.2017.0081
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XIONG Zi-Chang, GENG Jin-Yue, CHEN Xuan, WANG Hai-Xing
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Abstract: Amodelingstudywasperformedtoinvestigatetheworkingprocessofacoaxialmicrocathodearcthrusterwithparticleincell(PIC)method,andtheselfsimilarmethodwasappliedtosimplifythesimulationmodel.Thedistributionofelectronnumberdensity,ionnumberdensity,electricpotentialandaxialaverageionvelocityinthethrusterplumeregionwasobtained.Theinfluencesofmagneticfieldonplasmamotioncharacteristicsandthrusterperformancewerestudiedbychangingmagneticfluxdensityandmagneticfieldtopology.Theresultsshowthatelectronsareconstrainedbytheappliedmagneticfield,cyclingaroundmagneticfieldlines,andthationsareacceleratedbytheambipolardiffusionelectricfieldproducedbyslowerionsandfasterelectrons.Withthesamemassflowrate,theionrefluxisseverewhenthemagneticfluxdensityis002T,whiletheionvelocityislessaffectedbythemagneticfluxdensitywhenthemagneticfluxdensityis005~030T.Magneticfieldtopologyhasgreatinfluenceontheionmotionandthrusterperformance.Theionvelocitydecreasesobviouslywhentheanglebetweentheaxisandmagneticfieldlinesissmall,whiletheionrefluxisseverewhentheangleislarge.
Key words: coaxialmicrocathodearcthruster, particleincell, selfsimilarity, magneticfluxdensity, magneticfieldtopology
XIONG Zi-Chang, GENG Jin-Yue, CHEN Xuan, WANG Hai-Xing. Particleincellsimulationofacoaxialmicrocathodearcthruster[J]. Chinese Space Science and Technology, 2017, 37(5): 81-.
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URL: https://journal26.magtechjournal.com/kjkxjs/EN/10.16708/j.cnki.1000-758X.2017.0081
https://journal26.magtechjournal.com/kjkxjs/EN/Y2017/V37/I5/81