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Heat-flux footprints for I-mode and EDA H-mode plasmas on Alcator C-Mod

机译:alcator C-mod上I模和EDa H模等离子体的热通量足迹

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摘要

IR thermography is used to measure the heat flux footprints on C-Mod’s outer target in I-mode and EDA H-mode plasmas. The footprint profiles are fit to a function with a simple physical interpretation. The fit parameter that is sensitive to the power decay length into the SOL, λ[subscript SOL], is ~1–3× larger in I-modes than in H-modes at similar plasma current, which is the dominant dependence for the H-mode λ[subscript SOL]. In contrast, the fit parameter sensitive to transport into the private-flux-zone along the divertor leg is somewhat smaller in I-mode than in H-mode, but otherwise displays no obvious dependence on I[subscript p], B[subscript t], or stored energy. A third measure of the footprint width, the “integral width”, is not significantly different between H- and I-modes. Also discussed are significant differences in the global power flows of the H-modes with “favorable” ∇B drift direction and those of the I-modes with “unfavorable” ∇B drift direction.
机译:红外热像仪用于测量I型和EDA H型等离子体在C-Mod外靶上的热通量足迹。占用空间轮廓可通过简单的物理解释适合功能。在相似的等离子电流下,对进入SOL的功率衰减长度敏感的拟合参数λ[下标SOL]在I模式下比H模式大约1-3倍,这是H的主要依赖性-模式λ[下标SOL]。相比之下,对沿着分流器支路传输到专用通量区敏感的拟合参数在I模式下要比H模式下要小一些,但对I [下标p],B [下标t ]或储存的能量。在H模式和I模式之间,覆盖区宽度的第三种度量值“整体宽度”没有显着差异。还讨论了“ B漂移方向为“ H”的H模式和“ powerB”漂移方向为“ I”的I模式的整体功率流的显着差异。

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