1) electron-escaping effect
电子逃逸
1.
Impact of electron-escaping effect on the γ-ray sensitivity of PIN detector;
电子逃逸效应对PIN探测器γ灵敏度的影响
2) Runaway electron
逃逸电子
1.
Runaway electrons on HT-7 Tokamak with low hybrid current drive;
低杂波电流驱动下HT-7超导托卡马克逃逸电子行为
2.
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。
3.
A zero dimensional model of the current quench including the generation of runaway electrons has been applied to simulate the experimental current evolutions during major disruptions [Plasma Phys.
利用逃逸电子的输运来诊断TEXTOR托卡马克上等离子体大破裂下的磁涨落水平。
3) transport of runaway electron
逃逸电子输运
1.
The transport of runaway electrons in hot plasma can be comparatively easily measured by steady state or perturbation experiments, which provide runaway electron diffusivity D-r.
热等离子体中内部磁扰动水平可以由逃逸电子输运来确定,逃逸电子输运采用扰动实验和稳态实验等四种不同方法较容易获得某些局域的逃逸扩散系数,首先利用等离子体快速移动实验,测量孔栏上硬X射线通量的变化,获得边缘扩散系数;第二,由微波辐射强度和硬X射线通量(HXR)信号的锯齿振荡的峰值延迟时间得到径向位置某处到孔栏之间平均扩散系数;第三,软X射线(SXR)强度和HXR通量的信号的锯齿振荡的峰值延迟时间给出等离子体芯区外的径向平均扩散系数;第四,由来自孔栏上HXR韧致辐射谱求得逃逸电子平均能量,继而得到逃逸约束时间,获得径向平均扩散系数。
4) Runaway electron avalanche
雪崩型逃逸电子
5) Runaway energy
逃逸电子能量
6) escape operator
逃逸算子
1.
A new fuzzy c-means clustering based on the hybrid particle swarm optimization(PSO) algorithm is introduced,which combines the ad-vantages of crossover operator and mutation operator and the chaos optimization algorithm,and a escape operator is used.
新算法在基本粒子群优化的模糊C-均值聚类算法的基础上结合了遗传算法的交叉、变异算子及混沌优化算法,并引入逃逸算子。
补充资料:逃逸
1.亦作"逃佚"。 2.逃跑。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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