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Summary of experimental core turbulence characteristics in ohmic and electron cyclotron resonance heated discharges in T-10 tokamak plasmas

机译:T-10托卡马克等离子体在欧姆和电子回旋共振加热放电中的实验核湍流特性总结

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This report summarizes the results of experimental turbulence investigations carried out at T-10 for more than 10 years. The turbulence characteristics were investigated using correlation reflectometry, multipin Langmuir probe (MLP) and heavy ion beam probe diagnostics. The reflectometry capabilities were analysed using 2D full-wave simulations and verified by direct comparison using a MLP. The ohmic and electron cyclotron resonance heated discharges show the distinct transition from the core turbulence, having complex spectral structure, to the unstructured one in the scrape-off layer. The core turbulence includes 'broad band, quasi-coherent' features, arising due to the excitation of rational surfaces with high poloidal m-numbers, with a low frequency near zero and specific oscillations at 15-30 kHz. All experimentally measured properties of low frequency and high frequency quasi-coherent oscillations are in good agreement with predictions of linear theory for the ion temperature gradient/dissipative trapped electron mode instabilities. Significant local changes in the turbulence characteristics were observed at the edge velocity shear layer and in the core near q = 1 radius after switching off the electron cyclotron resonance heating (ECRH). The local decrease in the electron heat conductivity and decrease in the turbulence level could be evidence of the formation of an electron internal transport barrier. The dynamic behaviour of the core turbulence was also investigated for the case of fast edge cooling and the beginning phase of ECRH.
机译:该报告总结了在T-10进行了10多年的实验湍流研究的结果。使用相关反射仪,多针朗缪尔探针(MLP)和重离子束探针诊断仪研究了湍流特性。使用2D全波仿真分析了反射仪的功能,并使用MLP通过直接比较进行了验证。欧姆和电子回旋加速器共振加热的放电显示出从具有复杂光谱结构的核心湍流到刮除层中未结构化的湍流的明显过渡。核心湍流包括“宽带,准相干”特征,这是由于具有高倍数m数,低频接近零和15-30 kHz的特定振荡的有理表面的激发而产生的。低频和高频准相干振荡的所有实验测量特性均与离子温度梯度/耗散俘获电子模式不稳定性的线性理论预测相符。关闭电子回旋共振加热(ECRH)后,在边缘速度剪切层和q = 1半径附近的核中,湍流特性发生了明显的局部变化。电子热导率的局部降低和湍流能级的降低可能是电子内部传输势垒形成的证据。对于快速边缘冷却和ECRH的开始阶段,还研究了核心湍流的动态行为。

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