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Progress towards steady state on NSTX

机译:在NSTX上达到稳定状态的进展

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In order to reduce recirculating power fraction to acceptable levels, the spherical torus concept relies on the simultaneous achievement of high toroidal β and high bootstrap fraction in steady state. In the last year, as a result of plasma control system improvements, the achievable plasma elongation on NSTX has been raised from κ ~ 2.1 to κ ~ 2.6—approximately a 25% increase. This increase in elongation has led to a substantial increase in the toroidal β for long pulse discharges. The increase in β is associated with an increase in plasma current at nearly fixed poloidal β, which enables higher β_t with nearly constant bootstrap fraction. As a result, for the first time in a spherical torus, a discharge with a plasma current of 1 MA has been sustained for 1 s (0.8 s current flat-top). Data are presented from NSTX correlating the increase in performance with increased plasma shaping capability. In addition to improved shaping, H-modes induced during the current ramp phase of the plasma discharge have been used to reduce flux consumption and to delay the onset of MHD instabilities. Based on these results, a modelled integrated scenario, which has 100% non-inductive current drive with very high toroidal β, will also be discussed. The NSTX poloidal field coils are currently being modified to produce the plasma shape which is required for this scenario, which requires high triangularity (δ ~ 0.8) at elevated elongation (κ ~ 2.5). The other main requirement of steady state on NSTX is the ability to drive a fraction of the total plasma current with RF waves. The results of high harmonic fast wave heating and current drive studies as well as electron Bernstein wave emission studies will be presented.
机译:为了将再循环功率分数减小到可接受的水平,球形环面概念依赖于稳定状态下同时实现高环形β和高自举分数。去年,由于血浆控制系统的改进,NSTX上可达到的血浆伸长率从κ〜2.1提高到κ〜2.6,增加了约25%。伸长的增加导致长脉冲放电的环形β显着增加。 β的增加与近似固定的倍数β处的等离子体电流增加相关,这使得在近似恒定的自举分数的情况下可以实现更高的β_t。结果,首次在球形圆环中以1 MA的等离子体电流持续放电1 s(0.8 s电流为平顶电流)。来自NSTX的数据表明,性能的提高与血浆定型能力的提高相关。除了改进的成形之外,在等离子放电的电流斜坡阶段期间感应的H模式已用于减少通量消耗并延迟MHD不稳定性的发作。基于这些结果,还将讨论一个建模的集成方案,该方案具有100%的非感应电流驱动以及非常高的环形β。目前正在对NSTX极场线圈进行修改,以产生这种情况所需的等离子体形状,该形状需要在伸长率(κ〜2.5)较高的情况下具有较高的三角形度(δ〜0.8)。稳定状态对NSTX的另一个主要要求是能够利用RF波驱动总等离子体电流的一小部分。将介绍高谐波快速波加热和电流驱动研究以及电子伯恩斯坦波发射研究的结果。

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