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Characterization of the H-mode edge barrier at ASDEX Upgrade

机译:在ASDEX升级中表征H模式边缘屏障

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The scaling of the edge transport barrier (ETB) that sustains H-mode plasmas is crucial for the performance of next step tokamaks. At ASDEX Upgrade, the suite of edge diagnostics has been significantly improved to address this issue. High spatial resolution profiles of most of the key edge plasma parameters necessary to determine the magneto hydrodynamic (MHD) stability are now available. New high temporal resolution measurements give clear indications of the nonlinear evolution of the ELM crash. The correlation lengths of edge turbulence have been shown to be correlated with the edge radial electric field shear using a new correlation Doppler reflectometer system. The measured pressure gradient in the ETB is found to be consistent with ideal MHD stability limits, both for Type I and II ELMs. In addition, the edge electron temperature and density gradient lengths are found to be strongly correlated, leaving only the ETB width as a free parameter. In ASDEX Upgrade, the ETB width does not vary significantly over the entire H-mode edge database. Modelling of the transport of comparison discharges in hydrogen and deuterium shows that the expected mass effect on neutral penetration is largely compensated by more efficient heating of deuterium neutrals but requires a transport barrier in both the energy and particle channels in order to reproduce the measured edge temperature and density profiles.
机译:维持H型等离子体的边缘传输势垒(ETB)的缩放对于下一步托卡马克的性能至关重要。在ASDEX升级中,边缘诊断套件已得到显着改进,以解决此问题。现在可提供确定磁流体动力学(MHD)稳定性所需的大多数关键边缘等离子体参数的高空间分辨率轮廓。新的高时间分辨率测量结果清楚地表明了ELM碰撞的非线性演变。使用新的相关多普勒反射仪系统,已证明边缘湍流的相关长度与边缘径向电场剪切相关。发现I型和II型ELM的ETB中测得的压力梯度均与理想的MHD稳定性极限一致。另外,发现边缘电子温度和密度梯度长度之间有很强的相关性,只剩下ETB宽度作为自由参数。在ASDEX升级中,在整个H模式边缘数据库中,ETB宽度没有明显变化。氢和氘中比较放电的传输模型表明,对中性渗透的预期质量效应在很大程度上通过更有效地加热氘中性而得到补偿,但是为了再生测得的边缘温度,需要在能量和颗粒通道中都具有传输障碍和密度分布图。

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