PHYSICS BASIS FOR COMPACT IGNITION EXPERIMENTS

被引:45
作者
COPPI, B
NASSI, M
SUGIYAMA, LE
机构
[1] Massachusetts Institute of Technology, Cambridge, MA
来源
PHYSICA SCRIPTA | 1992年 / 45卷 / 02期
关键词
D O I
10.1088/0031-8949/45/2/010
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Compact ignition experiments can be designed to attain peak densities n0 congruent-to 10(21) m-3 reliably and to achieve "low temperature" D-T ignition under conditions where the heating power of the alpha-particles does not exceed twice the ohmic heating power. An average current density near 1 kA/cm2 with a maximum plasma current I(p) congruent-to 12 MA are the reference design parameters of the representative Ignitor Ult machine. The peak density value is consistent with that of B/R0, as R0 congruent-to 1.3 m and B(T) congruent-to 13 T, when compared to the Alcator, FT, and TFTR machines. The vacuum toroidal field B(T) is reinforced by the contribution of a large paramagnetic poloidal current (I(theta) < 10 MA). The high values of the poloidal field B(p) (congruent-to 3.9 T) produce a strong rate of ohmic heating, while the corresponding high values of I(p) ensure that most of the fusion alpha-particles can be confined to deposit their energy in the central part of the plasma column. The confinement parameter n(o) tau(E) is expected to exceed congruent-to 4 x 10(20) sec/m3 by a considerable margin on the basis of the confinement properties of plasmas with prevalent ohmic heating. The necessary degree of plasma purity (Z(eff) less-than-or-similar-to 1.6) is expected to be ensured by the high particle densities, the high magnetic fields and the relatively low values of the thermal loading on the first wall. Since ignition is achieved through transient conditions rather than, as is frequently assumed, a sequence of steady state conditions, numerical simulations have shown that the ohmic power can remain considerable up to ignition, when programming the rise of the plasma current and the particle density while gradually increasing the cross section of the plasma. The volume where the magnetic parameter q less-than-or-equal-to 1 and macroscopic m(o) = 1 plasma modes may be excited, has been shown to maintain quite low values until ignition is attained. The stability margin against these modes is made uniquely favorable by the low values of beta-poloidal that are characteristic of Ignitor. An injected heating source of 16 MW of ICRF power is included to broaden the scenarios under which ignition is achieved.
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页码:112 / 132
页数:21
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