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Effects of ICRF power on SOL density profiles and LH coupling during simultaneous LH and ICRF operation on Alcator C-Mod

机译:在Alcator C-Mod上同时进行LH和ICRF操作期间,ICRF功率对SOL密度分布和LH耦合的影响

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摘要

A dedicated experiment during simultaneous lower hybrid (LH) and ion cyclotron range-of-frequencies (ICRF) operations is carried out to evaluate and understand the effects of ICRF power on the scrape-off-layer (SOL) density profiles and on the resultant LH coupling for a wide range of plasma parameters on Alcator C-Mod. Operation of the LH launcher with the adjacent ICRF antenna significantly degrades LH coupling while operation with the ICRF antenna that is not magnetically connected to the LH launcher minimally affects LH coupling. An X-mode reflectometer system at three poloidal locations adjacent to the LH launcher and a visible video camera imaging the LH launcher are used to measure local SOL density profile and emissivity modifications with the application of LH and LH + ICRF power. These measurements confirm that the density in front of the LH launcher depends strongly on the magnetic field line mapping of the active ICRF antenna. Reflectometer measurements also observe both ICRF-driven and LH-driven poloidal density profile asymmetries, especially a strong density depletion at certain poloidal locations in front of the LH launcher during operation with a magnetically connected ICRF antenna. The results indicate that understanding both LH-driven flows and ICRF sheath driven flows may be necessary to understand the observed density profile modifications and LH coupling results during simultaneous LH + ICRF operation.
机译:在同时进行低杂化(LH)和离子回旋加速器频率范围(ICRF)操作期间进行了一项专门实验,以评估和了解ICRF功率对刮除层(SOL)密度分布及其结果的影响LH耦合用于Alcator C-Mod上的各种等离子体参数。 LH发射器与相邻ICRF天线的操作会大大降低LH耦合,而与未磁连接至LH发射器的ICRF天线的操作对LH耦合的影响最小。在LH发射器附近的三个极点位置的X模式反射仪系统和对LH发射器进行成像的可视摄像机使用LH和LH + ICRF功率来测量局部SOL密度分布和发射率修改。这些测量结果证实,LH发射器前面的密度在很大程度上取决于有源ICRF天线的磁力线映射。反射计的测量还观察到ICRF驱动和LH驱动的极向密度分布不​​对称,特别是在磁连接ICRF天线工作期间,LH发射器前方某些极向位置上的强密度损耗。结果表明,在同时进行LH + ICRF操作期间,了解LH驱动的流动和ICRF鞘管驱动的流动对于理解观察到的密度分布变化和LH耦合结果可能是必要的。

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