プラズマ・核融合学会誌
Print ISSN : 0918-7928
Rapid Communications
Spatial Distribution of Lorentz Forces in an Applied-Field Magneto-Plasma-Dynamic Arcjet Plasma
Hiroyuki TOBARIMasaaki INUTAKEAkira ANDOKunihiko HATTORI
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2004 年 80 巻 8 号 p. 651-652

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In order to clarify the electromagnetic acceleration mechanisms of an applied-field magneto-plasma-dynamic arcjet (MPDA), magnetic fields are measured in detail near the MPDA outlet. Plasma current density is calculated using the Maxwell equation (rotB0j), and then spatial distributions of Lorentz forces (j×B forces) are evaluated. A uniform external magnetic field is deformed by a strong diamagnetic effect near the MPDA outlet, and as a consequence, a converging magnetic nozzle configuration is formed. It is found that an axial Lorentz force Fz (=jrBθ-jθBr) is almost eliminated by the deceleration force (the jθBr force), which results from the diamagnetic effect. The deceleration force can be converted to the acceleration one in an externally-applied diverging magnetic field.
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© 2004 by The Japan Society of Plasma Science and Nuclear Fusion Research
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