Title :
Thermodynamical nonequilibrium nitrogen plasmas in a direct-current arcjet engine nozzle
Author :
Tahara, Hirokazu ; Komiko, Kazuhito ; Yonezawa, Takashi ; Andoh, Yasutaka ; Yoshikawa, Takao
Author_Institution :
Dept. of Mech. Eng., Osaka Univ., Japan
fDate :
2/1/1996 12:00:00 AM
Abstract :
Spectroscopic measurements were carried out to understand the arc structure and the flowfield in a 10-kW-class water-cooled direct-current nitrogen arcjet engine with a supersonic expansion nozzle for material processing. In the expansion nozzle, the pressure and electron density drastically decreased downstream, and therefore the plasma was in thermodynamical nonequilibrium, although the plasma in the constrictor was expected to be nearly in a temperature-equilibrium condition. The radial profiles of the physical properties for N2 and N2 showed that there existed a core flow with high vibrational and rotational temperatures and large electron number densities on the center axis, even at the nozzle exit. Both of these temperatures on the arcjet axis at the nozzle exit and the electron temperature in the constrictor increased linearly with the input power, regardless of mass flow rate. The vibrational temperature ranged from 6000 to 10000 K in input power levels of 5-11 kW and the rotational temperature from 500 to 2000 K
Keywords :
arcs (electric); materials preparation; nitrogen; nozzles; plasma applications; plasma density; plasma diagnostics; plasma flow; plasma pressure; plasma thermodynamics; arc structure; arcjet axis; core flow; electron density; electron number densities; electron temperature; flowfield; mass flow rate; material processing; nozzle exit; pressure; radial profiles; rotational temperature; spectroscopic measurements; supersonic exhaust plasma; supersonic expansion nozzle; temperature-equilibrium condition; thermodynamic nonequilibrium N plasmas; vibrational temperature; water-cooled direct-current N arcjet engine; Electrons; Engines; Nitrogen; Plasma density; Plasma materials processing; Plasma measurements; Plasma properties; Plasma temperature; Spectroscopy; Temperature distribution;
Journal_Title :
Plasma Science, IEEE Transactions on