A contoured gap coaxial plasma gun with injected plasma armature.
نویسندگان
چکیده
A new coaxial plasma gun is described. The long term objective is to accelerate 100-200 microg of plasma with density above 10(17) cm(-3) to greater than 200 km/s with a Mach number above 10. Such high velocity dense plasma jets have a number of potential fusion applications, including plasma refueling, magnetized target fusion, injection of angular momentum into centrifugally confined mirrors, high energy density plasmas, and others. The approach uses symmetric injection of high density plasma into a coaxial electromagnetic accelerator having an annular gap geometry tailored to prevent formation of the blow-by instability. The injected plasma is generated by numerous (currently 32) radially oriented capillary discharges arranged uniformly around the circumference of the angled annular injection region of the accelerator. Magnetohydrodynamic modeling identified electrode profiles that can achieve the desired plasma jet parameters. The experimental hardware is described along with initial experimental results in which approximately 200 microg has been accelerated to 100 km/s in a half-scale prototype gun. Initial observations of 64 merging injector jets in a planar cylindrical testing array are presented. Density and velocity are presently limited by available peak current and injection sources. Steps to increase both the drive current and the injected plasma mass are described for next generation experiments.
منابع مشابه
Arc Initiation for the Electromagnetic Powder Deposition Gun
The Electromagnetic Powder Deposition (EPD) process converts pulsed electrical energy into kinetic and thermal energy to accelerate and heat powder material to conditions suitable for bonding. A high pressure plasma armature is electromagnetically accelerated using a railgun. A supersonic pressure wave is created when the armature accelerates through and "snowplows" the ambient gas ahead of it....
متن کاملObservation of a relaxed plasma state in a quasi-infinite cylinder.
A helical relaxed plasma state is observed in a long cylindrical volume. The cylinder is long enough so that the predicted minimum energy state is a close approximation to the infinite cylinder solution. The plasma is injected at v ≥ 50 km/s by a coaxial magnetized plasma gun located at one end of the cylindrical volume. The relaxed state is rapidly attained in 1-2 axial Alfvén times after init...
متن کاملExperimental identification of the kink instability as a poloidal flux amplification mechanism for coaxial gun spheromak formation.
The magnetohydrodynamic kink instability is observed and identified experimentally as a poloidal flux amplification mechanism for coaxial gun spheromak formation. Plasmas in this experiment fall into three distinct regimes which depend on the peak gun current to magnetic flux ratio, with (I) low values resulting in a straight plasma column with helical magnetic field, (II) intermediate values l...
متن کاملA Laboratory Plasma Experiment for Studying Magnetic Dynamics of Accretion Discs and Jets
e.g. i.e. (v)†[email protected]∇×IgunVgunψ̄gunψgunTiTeVfneλgunαgunERVθBθBZBRJRAlfvén A Laboratory Plasma Experiment for Studying Magnetic Dynamics of Accretion Discs and Jets [S. C. Hsu and P. M. Bellan] S. C. Hsu and P. M. Bellan firstpage–lastpage 2002 document firstpage abstract This work describes a laboratory plasma experiment and initial results which should give insight ...
متن کاملCoaxial Plasma Gun in the High Density Regime and Injection into a Helical Field
A modified coaxial plasma gun in the high density regime of 20–70 mT of He was investigated experimentally and theoretically. The injection of the plasma torus into a drift space was studied by diamagnetical diagnostics both with and without helical bias, where the inner electrode was continued into the drift space by an insulated central conductor. Quasi-tokamak geometry is obtained (q ≈ 3; Ii...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
برای دانلود متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید
ثبت ناماگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید
ورودعنوان ژورنال:
- The Review of scientific instruments
دوره 80 8 شماره
صفحات -
تاریخ انتشار 2009