COMPACT TOROID FORMATION, COMPRESSION, AND ACCELERATION

被引:57
作者
DEGNAN, JH
PETERKIN, RE
BACA, GP
BEASON, JD
BELL, DE
DEARBORN, ME
DIETZ, D
DOUGLAS, MR
ENGLERT, SE
ENGLERT, TJ
HACKETT, KE
HOLMES, JH
HUSSEY, TW
KIUTTU, GF
LEHR, FM
MARKLIN, GJ
MULLINS, BW
PRICE, DW
RODERICK, NF
RUDEN, EL
SOVINEC, CR
TURCHI, PJ
BIRD, G
COFFEY, SK
SEILER, SW
CHEN, YG
GALE, D
GRAHAM, JD
SCOTT, M
SOMMARS, W
机构
[1] PHYS SCI INC,ALEXANDRIA,VA 22314
[2] MAXWELL LABS INC,ALBUQUERQUE,NM 87106
[3] UNIV NEW MEXICO,ALBUQUERQUE,NM 87102
[4] OHIO STATE UNIV,COLUMBUS,OH 43210
来源
PHYSICS OF FLUIDS B-PLASMA PHYSICS | 1993年 / 5卷 / 08期
关键词
D O I
10.1063/1.860681
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
Research on forming, compressing, and accelerating milligram-range compact toroids using a meter diameter, two-stage, puffed gas, magnetic field embedded coaxial plasma gun is described. The compact toroids that are studied are similar to spheromaks, but they are threaded by an inner conductor. This research effort, named MARAUDER (Magnetically Accelerated Ring to Achieve Ultra-high Directed Energy and Radiation), is not a magnetic confinement fusion program like most spheromak efforts. Rather, the ultimate goal of the present program is to compress toroids to high mass density and magnetic field intensity, and to accelerate the toroids to high speed. There are a variety of applications for compressed, accelerated toroids including fast opening switches, x-radiation production, radio frequency (rf) compression, as well as charge-neutral ion beam and inertial confinement fusion studies. Experiments performed to date to form and accelerate toroids have been diagnosed with magnetic probe arrays, laser interferometry, time and space resolved optical spectroscopy, and fast photography. Parts of the experiment have been designed by, and experimental results are interpreted with, the help of two-dimensional (2-D), time-dependent magnetohydrodynamic (MHD) numerical simulations. When not driven by a second discharge, the toroids relax to a Woltjer-Taylor equilibrium state that compares favorably to the results of 2-D equilibrium calculations and to 2-D time-dependent MHD simulations. Current, voltage, and magnetic probe data from toroids that are driven by an acceleration discharge are compared to 2-D MHD and to circuit solver/slug model predictions. Results suggest that compact toroids are formed in 7-15 musec, and can be accelerated intact with material species the same as injected gas species and entrained mass greater-than-or-equal-to 1/2 the injected mass.
引用
收藏
页码:2938 / 2958
页数:21
相关论文
共 60 条
[41]  
Post D. E., 1977, Atomic Data and Nuclear Data Tables, V20, P397, DOI 10.1016/0092-640X(77)90026-2
[42]  
Press W. H., 1992, NUMERICAL RECIPES EX
[43]  
Reinovsky R. E., 1983, 4TH IEEE INT PULS PO, P196
[44]   MHD STABILITY OF SPHEROMAK [J].
ROSENBLUTH, MN ;
BUSSAC, MN .
NUCLEAR FUSION, 1979, 19 (04) :489-503
[45]   TIME-RESOLVED MASS-FLOW MEASUREMENTS FOR A FAST GAS DELIVERY SYSTEM [J].
RUDEN, EL ;
DEGNAN, JH ;
HUSSEY, TW ;
SCOTT, MC ;
GRAHAM, JD ;
COFFEY, SK .
REVIEW OF SCIENTIFIC INSTRUMENTS, 1993, 64 (07) :1740-1743
[46]   INTERFEROMETRY ON THE COMPACT TOROID FORMATION EXPERIMENTS AT PHILLIPS-LABORATORY [J].
RUDEN, EL ;
MULLINS, BW ;
DEARBORN, ME ;
COFFEY, SK .
PHYSICS OF FLUIDS B-PLASMA PHYSICS, 1992, 4 (07) :1800-1805
[47]  
RUDEN EL, 1992, 1992 IEEE INT C PLAS
[48]   MAGNETOHYDRODYNAMIC EQUILIBRIUM AND STABILITY OF FIELD-REVERSED CONFIGURATIONS [J].
SCHWARZMEIER, JL ;
BARNES, DC ;
HEWETT, DW ;
SEYLER, CE ;
SHESTAKOV, AI ;
SPENCER, RL .
PHYSICS OF FLUIDS, 1983, 26 (05) :1295-1298
[49]  
Striganov A. R., 1966, TABLITSY SPEKTRALNYK
[50]   MAGNETOHYDRODYNAMIC STABILITY OF SPHEROMAK PLASMA IN TOROIDAL FLUX CONSERVER WITH RECTANGULAR CROSS-SECTION [J].
TAGUCHI, M ;
MIYAZAKI, T ;
KANEKO, S .
JOURNAL OF THE PHYSICAL SOCIETY OF JAPAN, 1985, 54 (06) :2163-2167