Experimental analysis of runaway electron in non-circular cross section Tokamak 非圆截面环流器中逃逸电子实验分析
The intensity of the hard X-rays emitted from the wall due to the runaway electron bombardment is weakened strongly. 由逃逸电子轰击器壁而发射的硬X射线强度大大减弱。
Transition between trapped electrons and runaway electrons induced by electron cyclotron wave in magnetic mirror plasma 电子回旋波使磁镜中捕获电子与逃逸电子相互转化
The features of discharge at initial and final stages, and soft x-ray energy spectra of discharges with rather intense runaway electron flow are discussed. 讨论了放电初始段、终了段及逃逸电子流较强的放电的软X射线能谱的特点。
The quasilinear differential equations are solved by finite difference method with non-equidistant scheme. The evolution of the runaway electron distribution function and wave energy density are obtained in interval of electron parallel velocity. 本文用非等距有限差分法,求解了准线性微分方程组,获得了在电子平行速度区间,逃逸电子分布函数和波能密度的二维演化图象。
It was obtained that when the device discharged under low runaway condition, the received signal emission at second harmonic mixing showed that it was the thermal emission associated with electron temperature; 实验结果表明:当装置低逃逸放电时,二次谐波混频接收到的信号是与电子温度有关的热辐射信号。
The calculation for the runaway electron distribution function and wave energy density in Tokamak 托卡马克中逃逸电子分布函数和波能密度计算