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Understanding the core density profile in TCV H-mode plasmas

机译:了解TCV H型等离子体中的核心密度分布

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Results from a database analysis of H-mode electron density profiles on the Tokamak à Configuration Variable (TCV) under stationary conditions show that the logarithmic electron density gradient increases with collisionality. By contrast, usual observations of H-modes showed that the electron density profiles tend to flatten with increasing collisionality. In this work it is reinforced that the role of collisionality alone, depending on the parameter regime, can be rather weak, and in these dominantly electron heated TCV cases, the electron density gradient is tailored by the underlying turbulence regime, which is mostly determined by the ratio of the electron to ion temperature and that of their gradients. Additionally, mostly in ohmic plasmas, the Ware-pinch can significantly contribute to the density peaking. Qualitative agreement between the predicted density peaking by quasi-linear gyrokinetic simulations and the experimental results is found. Quantitative comparison would necessitate ion temperature measurements, which are lacking in the considered experimental dataset. However, the simulation results show that it is the combination of several effects that influences the density peaking in TCV H-mode plasmas.
机译:在固定条件下,在托卡马克à配置变量(TCV)上对H型电子密度分布进行数据库分析的结果表明,对数电子密度梯度随碰撞性而增加。相比之下,对H模式的常规观察表明,电子密度分布趋于随着碰撞性的增加而趋于平坦。在这项工作中,需要强调的是,取决于参数范围,仅碰撞性的作用可能会很弱,并且在这些主要由电子加热的TCV情况下,电子密度梯度由潜在的湍流范围来定制,而湍流范围主要取决于电子与离子温度之比及其梯度。此外,大多数在欧姆等离子体中,Ware-pinch可以显着促进密度峰值。找到了准线性陀螺动力学模拟预测的密度峰值与实验结果之间的定性一致性。定量比较将需要离子温度测量,这是所考虑的实验数据集中所缺乏的。但是,仿真结果表明,是几种效应的组合影响了TCV H型等离子体的密度峰值。

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