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Edge operational space for high density/high confinement ELMY H-modes in JET

机译:JET中用于高密度/高限制ELMY H模式的边缘操作空间

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This paper discusses how the proximity to the L-H threshold affects the confinement of ELMy H-modes at high density. The largest reduction in confinement at high density is observed at the transition from the Type I to the Type III ELMy regime. At medium plasma triangularity, delta congruent to 0.3 (where delta is the average triangularity at the separatrix), JET experiments show that by increasing the margin above the L-H threshold power and maintaining the edge temperature above the critical temperature for the transition to Type III ELMs, it is possible to avoid the degradation of the pedestal pressure with density, normally observed at lower power. As a result, the range of achievable densities (both in the core and in the pedestal) is increased. At high power above the L-H threshold power the core density was equal to the Greenwald limit with H97 congruent to 0.9. There is evidence that a mixed regime of Type I and Type II ELMs has been obtained at this intermediate triangularity, possibly as a result of this increase in density. At higher triangularity, delta congruent to 0.5, the power required to achieve similar results is lower. [References: 15]
机译:本文讨论了到L-H阈值的接近度如何影响高密度ELMy H-模式的限制。从I型过渡到III型ELMy方案时,观察到高密度限制的最大减少。在中等等离子三角形度下,δ等于0.3(其中δ是分离线的平均三角形),JET实验表明,通过增加余量到LH阈值功率以上,并使边缘温度保持在过渡到III型ELM的临界温度之上,可以避免通常在较低功率下观察到的基座压力随密度降低的情况。结果,增加了可达到的密度范围(在芯部和基座中)。在高于L-H阈值功率的高功率下,铁心密度等于格林瓦尔德极限,H97等于0.9。有证据表明,可能是由于密度增加而在此中间三角形处获得了I型和II型ELM的混合状态。在较高的三角形度(Δ等于0.5)下,实现类似结果所需的功率较低。 [参考:15]

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