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Partic1e confinement and transport in JT-60U

机译:JT-60U中的微粒限制和运输

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Particle confinement and transport have been systematically analysed for improved con- finement modes in JT-60U. A scaling law for the total number of ions in the main plasma of ELMy H mode plasmas was proposed for the first time, with confinement times of the particles fuelled by NBI (centre fuelling) and by recycling and gas puffing (edge fuelling) separately defined. The confinement time increases and decreases with density for centre and edge fuelling, respectively. A comparison between the experimental data and the scaling was made for high β_p ELMy H mode and reversed shear plasmas. In the reversed shear plasma, particle confinement was enhanced by a factor of about 2 compared with the scaling, when the enhancement factor of the energy confinement time over the ELMy H mode scaling was larger than 1.2. Density controllability is discussed on the basis of the scaling in ELMy H mode, and it was found that additional fuelling with a confinement time of 0.1-0.4 s is necessary for density control in JT-60U. The particle diffusivity and convection velocity were evaluated by means of a perturbation technique using modulated helium gas puffing in ELMy H mode and reversed shear plasmas. The particle diffusivity and convection velocity were estimated to be 0.2-2 m~2/s and from -4 (inward) to 0 m/s for the reversed shear plasma, and 0.4-2 m~2/s and from -5.5 (inward) to +2.5 (outward) m/s for the ELMy H mode plasma, respectively. The particle diffusivity around the internal transport barrier was reduced by a factor of 5-6 compared with that in the inside and outside regions in the reversed shear plasma.
机译:为了提高JT-60U的限制模式,系统地分析了粒子限制和传输。首次提出了ELMy H模式等离子体的主要等离子体中离子总数的缩放定律,其中分别定义了由NBI(中心加油),再循环和气体吹气(边缘加油)加注的粒子的限制时间。对于中心加油和边缘加油,限制时间分别随密度增加和减少。对于高β_pELMy H模式和反向剪切等离子体,对实验数据和缩放比例进行了比较。在反向剪切等离子体中,当能量约束时间在ELMy H模式尺度上的增强因子大于1.2时,与尺度化相比,粒子约束增强了约2倍。基于ELMy H模式下的缩放比例讨论了密度可控性,并且发现在JT-60U中进行密度控制时,必须在0.1-0.4 s的限制时间内进行额外的加油。通过扰动技术,使用ELMy H模式下的调制氦气吹气和反向剪切等离子体,评估了粒子的扩散率和对流速度。反向剪切等离子体的粒子扩散率和对流速度估计为0.2-2 m〜2 / s,从-4(向内)到0 m / s,从0.4(-1)(-5.5) ELMy H模式等离子体分别向内(向内)至+2.5(向外)m / s。与反向剪切等离子体的内部和外部区域相比,内部传输壁垒周围的颗粒扩散率降低了5-6倍。

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