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MHD-induced energetic ion loss during H-mode discharges in the National Spherical Torus Experiment

机译:在国家球形圆环实验中,HHD放电期间MHD诱导的高能离子损失

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Magnetohydrodynamic (MHD) induced energetic ion loss in neutral beam heated H-mode discharges in the National Spherical Torus Experiment (NSTX) is discussed. After H-mode onset, the neutral particle analyser (NPA) spectrum usually exhibits a significant loss of energetic ions mainly for E > E{sub}b/2 where E{sub}b is the beam injection energy, although this loss occasionally extends to lower energy. The magnitude of the energetic ion loss diminishes with increasing tangency radius of the NPA sightline, increasing the toroidal field and the neutral beam injection energy. Modelling suggests that MHD-induced ion loss is enhanced during H-mode operation due to an evolution of the q and beam deposition profiles that feeds both passing and trapped ions into the region of the plasma affected by the low-n MHD activity. It must be emphasized that this loss mechanism is a pressure profile effect that can sometimes occur in unusually high density L-mode discharges, but almost always is observed in H-mode discharges because of the intrinsic broad electron density profile. Analysis of the particle interaction with a model magnetic perturbation supports the energy selectivity of the observed MHD-induced loss. Transport analysis using a fast-ion diffusion model to emulate MHD-induced energetic ion loss shows significant modifications of the heating produced by the neutral beam which changes the inferred power balance, thermal diffusivities and the thermal energy confinement time. In the case cited herein, MHD-induced energetic ion loss increased the thermal energy confinement, τ{sub}E, by ~15% and reduced the toroidal beta, β{sub}T, by ~7%. An accounting of energetic ion loss is therefore important for proper analysis of power balance and transport in plasmas exhibiting MHD-induced energetic ion loss.
机译:在国家球形圆环实验(NSTX)中讨论了磁流体动力学(MHD)在中性束加热的H型放电中引起的高能离子损失。在H模式开始后,中性粒子分析仪(NPA)谱通常表现出高能离子的显着损失,主要是针对E> E {sub} b / 2,其中E {sub} b是束注入能量,尽管这种损失有时会扩大降低能量。高能量离子损失的幅度随着NPA视线的相切半径的增加而减小,从而增加了环形场和中性束注入能量。建模表明,由于q和束沉积曲线的演变,MHD诱导的离子损失在H模式操作期间会增强,该结构将通过和捕获的离子馈入受低n MHD活性影响的等离子体区域。必须强调的是,这种损耗机制是压力分布效应,有时会在异常高密度的L型放电中发生,但由于固有的宽电子密度分布,几乎总是在H模式放电中观察到这种现象。对具有模型磁扰动的粒子相互作用的分析支持了观察到的MHD引起的损耗的能量选择性。使用快速离子扩散模型模拟MHD引起的高能离子损失的传输分析显示,中性束产生的热量发生了显着变化,从而改变了推断的功率平衡,热扩散率和热能限制时间。在本文引用的情况下,MHD引起的高能离子损失使热能限制τ{sub} E增大了约15%,并使环形ββ{T} T减小了约7%。因此,高能离子损失的计算对于正确分析显示MHD诱导的高能离子损失的等离子体中的功率平衡和传输非常重要。

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