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High density LHRF experiments in Alcator C-Mod and implications for reactor scale devices

机译:Alcator C-Mod中的高密度LHRF实验及其对反应堆规模设备的意义

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摘要

Parametric decay instabilities (PDI) appear to be an ubiquitous feature of lower hybrid current drive (LHCD) experiments at high density. In density ramp experiments in Alcator C-Mod and other machines the onset of PDI activity has been well correlated with a decrease in current drive efficiency and production of fast electron bremsstrahlung. However whether PDI is the primary cause of the 'density limit', and if so by exactly what mechanism (beyond the obvious one of pump depletion) has not been clearly established. In order to further understand the connection, the frequency spectrum of PDI activity occurring during Alcator C-Mod LHCD experiments has been explored in detail by means of a number of RF probes distributed around the periphery of the C-Mod tokamak including a probe imbedded in the inner wall. The results show that (ⅰ) the excited spectra consists mainly of a few discrete ion cyclotron (IC) quasi-modes, which have higher growth than the ion sound branch; (ⅱ) PDI activity can begin either at the inner or outer wall, depending on magnetic configuration; (ⅲ) the frequencies of the IC quasi-modes correspond to the magnetic field strength close to the low-field side (LFS) or high-field side separatrix; and (ⅳ) although PDI activity may initiate near the inner separatrix, the loss in fast electron bremsstrahlung is best correlated with the appearance of IC quasi-modes characteristic of the magnetic field strength near the LFS separatrix. These data, supported by growth rate calculations, point to the importance of the LFS scrape-off layer (SOL) density in determining PDI onset and degradation in current drive efficiency. By minimizing the SOL density it is possible to extend the core density regime over which PDI can be avoided, thus potentially maximizing the effectiveness of LHCD at high density. Increased current drive efficiency at high density has been achieved in FTU and EAST through lithium coating and special fuelling methods, and in recent C-Mod experiments by operating at higher plasma current. Another approach would be to locate the launcher in the inner wall with double null operation. This would reduce the SOL density by an order of magnitude or more and greatly mitigate the effects of PDI as well as other parasitic losses.
机译:参数衰减不稳定性(PDI)似乎是高密度下低混合电流驱动(LHCD)实验的普遍特征。在Alcator C-Mod和其他机器上进行的密度上升实验中,PDI活性的发生与电流驱动效率的降低以及快速电子stra致辐射的产生密切相关。然而,PDI是否是“密度极限”的主要原因,以及是否通过确切的机制(除了明显的泵损耗)还不清楚。为了进一步了解这种联系,已通过分布在C-Mod托卡马克外围的许多RF探针(包括嵌入在C-Mod托卡马克中的探针)详细研究了Alcator C-Mod LHCD实验期间发生的PDI活性的频谱。内壁。结果表明:(ⅰ)激发光谱主要由几个离散的离子回旋加速器(IC)准模组成,其增长快于离子声分支。 (ⅱ)PDI的活动可以从内壁开始,也可以从外壁开始,这取决于磁性结构; (ⅲ)IC准模式的频率对应于靠近低场侧(LFS)或高场侧分离线的磁场强度; (ⅳ)尽管PDI活性可能在内部分离线附近开始,但快电子致辐射的损失与LFS分离线附近的磁场强度的IC准模式的出现最相关。这些数据得到了增长率计算的支持,指出了LFS刮除层(SOL)密度在确定PDI开始和电流驱动效率降低方面的重要性。通过最小化SOL密度,可以扩展可避免PDI的核心密度范围,从而潜在地最大化LHCD在高密度下的有效性。在FTU和EAST中,通过锂涂层和特殊的加油方法,以及在最近的C-Mod实验中,通过在更高的等离子体电流下运行,已实现了高密度下电流驱动效率的提高。另一种方法是使用双重零位操作将发射器定位在内壁上。这将使SOL密度降低一个数量级或更多,并大大减轻PDI的影响以及其他寄生损耗。

著录项

  • 来源
    《Nuclear fusion》 |2015年第4期|043009.1-043009.16|共16页
  • 作者单位

    Plasma Science and Fusion Center, MIT, Cambridge, MA 02139, USA;

    Plasma Science and Fusion Center, MIT, Cambridge, MA 02139, USA;

    Plasma Science and Fusion Center, MIT, Cambridge, MA 02139, USA;

    Plasma Science and Fusion Center, MIT, Cambridge, MA 02139, USA;

    Plasma Science and Fusion Center, MIT, Cambridge, MA 02139, USA;

    Plasma Science and Fusion Center, MIT, Cambridge, MA 02139, USA;

    Plasma Science and Fusion Center, MIT, Cambridge, MA 02139, USA;

    Plasma Science and Fusion Center, MIT, Cambridge, MA 02139, USA;

    Plasma Science and Fusion Center, MIT, Cambridge, MA 02139, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    lower hybrid; current drive; parametric decay instabilities; scrape-off layer;

    机译:低杂种当前驱动器;参数衰减不稳定性;刮除层;
  • 入库时间 2022-08-18 00:42:32

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