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Inter-ELM evolution of the edge current density in JET-ILW type I ELMy H-mode plasmas

机译:Jet-ILW I型ELMY H模式等离子体中边缘电流密度的ELM间进化

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Recent studies (Maggi et al 2015 Nucl. Fusion 55 113031; Maggi et al 2017 Nucl. Fusion 57 116012) have shown that on JET with the Be/W ITER-like wall (JET-ILW) in high beta discharges with high D-2 gas rates, the inter-ELM temperature pedestal growth is saturated half way through the ELM cycle, leading to plasmas with reduced confinement, and that the linear MHD stability of these pedestals is inconsistent with the peeling-ballooning paradigm (Snyder et al 2002 Phys. Plasmas 9 2037-43; Wilson et al 2002 Phys. Plasmas 9 1277-86). In this paper, the inter-ELM evolution of the edge current density is investigated in a wide range of type. I ELMy H-modes on JET-ILW. It is found that in discharges at a low gas rate, the peak edge bootstrap current continuously increases until the ELM crashes, while it saturates during the ELM cycle at high gas rates. The effect of current diffusion on the build-up of the edge current inter-ELM is assessed by simulating the Ohmic current contribution with the JETTO transport code. The simulations indicate that current diffusion contributes little to the time evolution of the total edge current in the second half of the ELM cycle and the total current is dominated by the bootstrap current. Therefore, current diffusion does not explain why JET-ILW type. I ELMy pedestals at a high gas rate and high beta(N) are found to be stable to peeling-ballooning modes.
机译:最近的研究(Maggi et al 2015 Nucl。Fusion 55 113031; Maggi等,2017年Nucl。Fusion 57 116012)显示,在高β放电的BE / W iter样墙上(Jet-ILW)的射流在高D-上2气体速率,ELM间温度基座生长通过ELM循环饱和,导致距离减少的等离子体,并且这些基座的线性MHD稳定性与剥离 - 气球范例不一致(SNYDER等人2002 。Plasmas 9 2037-43;威尔逊等人2002题。等离子体91277-86)。在本文中,在各种类型的类型中研究了边缘电流密度的ELM间进化。 i elmy h-modes在Jet-ILW上。发现在低气速的放电中,峰值边缘自动释放电流直到ELM崩溃之前连续增加,同时在高气体速率下饱和在ELM循环期间饱和。通过模拟与捷光传输代码的欧姆电流贡献来评估电流扩散对边缘电流间elm的积聚的影响。模拟表明电流扩散略微达到ELM周期的后半部分中的总边缘电流的时间演变,并且总电流由自举电流主导。因此,电流扩散不解释为什么Jet-ILW类型。在高煤气速率和高β(n)处的I Emmy Peastals被认为是剥离 - 膨胀模式的稳定性。

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