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Overview of transport, fast particle and heating and current drive physics using tritium in JET plasmas

机译:在JET等离子体中使用tri的传输,快速粒子和加热以及电流驱动物理学概述

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Results are presented from the JET Trace Tritium Experimental (TTE) campaign using minority tritium (T) plasmas (n_T_D < 3%). Thermal tritium particle transport coefficients (D_T, υ_T) are found to exceed neo-classical values in all regimes, except in ELMy H-modes at high densities and in the region of internal transport barriers (ITBs) in reversed shear plasmas. In ELMy H-mode dimensionless parameter scans, at q_(95)~2.8 and triangularity δ= 0.2, the T particle transport scales in a gyro-Bohm manner in the inner plasma (r/a < 0.4), whilst the outer plasma particle transport scaling is more Bohm-like. Dimensionless parameter scans show contrasting behaviour for the trace particle confinement (increases with collisionality, ν~* and β) and bulk energy confinement (decreases with ν~* and is independent of β). In an extended ELMy H-mode data set, with ρ~*, ν~*, β and q varied but with neo-classical tearing modes (NTMs) either absent or limited to weak, benign core modes (4/3 or above), the multiparameter fit to the normalized diffusion coefficient in the outer plasma (0.65 < r/a < 0.8) gives D_T/B_φ~ρ~(*2.46)ν~(*-0.23)β~(-1.01)q~(2.03). In hybrid scenarios (q_(min)~1. low positive shear, no sawteeth), the T particle confinement is found to scale with increasing triangularity and plasma current. Comparing regimes (ELMy H-mode, ITB plasma and hybrid scenarios) in the outer plasma region, a correlation of high values of D_T with high values of υ_T is seen. The normalized diffusion coefficients for the hybrid and ITB scenarios do not fit the scaling derived for ELMy H-modes. The normalized tritium diffusion scales with normalized poloidal Larmor radius (ρ_θ~* = qρ~*) in a manner close to gyro-Bohm (~ρ_θ~(*3) ), with an added inverse β dependence. The effects of ELMs, sawteeth and NTMs on the T particle transport are described. Fast-ion confinement in current-hole (CH) plasmas was tested in TTE by tritium neutral beam injection into JET CH plasmas, γ-rays from the reactions of fusion alpha and beryllium impurities (~9Be(α, nγ)~(12)C) characterized the fast fusion-alpha population evolution. The γ -decay times are consistent with classical alpha plus parent fast triton slowing down times (τ_(Ts) + τ_(αs)) for high plasma currents (I_p > 2 MA) and monotonic q-profiles. In CH discharges the γ-ray emission decay times are much lower than classical (τ_(Ts) + τ_(αs)), indicating alpha confinement degradation, due to the orbit losses and particle orbit drift predicted by a 3-D Fokker-Planck numerical code and modelled using TRANSP.
机译:结果来自使用少数Trace(T)血浆(n_T / n_D <3%)的JET痕量Tri实验(TTE)活动。发现在所有状态下,tri的热粒子传输系数(D_T,υ_T)都超过新古典值,除了高密度的ELMy H模式和反向剪切等离子体中的内部传输壁垒(ITB)区域外。在ELMy H-模式无量纲参数扫描中,在q_(95)〜2.8且三角形δ= 0.2时,T粒子在内部等离子体中以陀螺-波姆的方式缩放(r / a <0.4),而外部等离子体粒子传输比例更像是Bohm型。无量纲参数扫描显示了痕量粒子限制(随碰撞性,ν〜*和β的增加)和体能限制(随ν〜*减少且与β无关)的对比行为。在扩展的ELMy H模式数据集中,ρ〜*,ν〜*,β和q有所变化,但缺少或限于弱良性良性核心模式(4/3或更高)的新古典撕裂模式(NTM) ,对外部等离子体中归一化扩散系数的多参数拟合(0.65 2 MA)和单调q轮廓,γ衰变时间与经典阿尔法加上父快速Triton减慢时间(τ_(Ts)+τ_(αs))一致。在CH放电中,由于3-D Fokker-Planck预测的轨道损耗和粒子轨道漂移,γ射线的发射衰减时间比经典时间(τ_(Ts)+τ_(αs))低得多,表明α约束退化。数字代码并使用TRANSP建模。

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