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Resistive wall stabilized operation in rotating high beta NSTX plasmas

机译:旋转高βNSTX血浆中的电阻壁稳定操作

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The National Spherical Torus Experiment (NSTX) has demonstrated the advantages of low aspect ratio geometry in accessing high toroidal and normalized plasma beta, β_t ≡ 2μ_0 < p > / B_0~2 and β_N ≡ 10~8 < β_t > aB_0/I_p. Experiments have reached β_t = 39% and β_N = 7.2 through boundary and profile optimization. High β_N plasmas can exceed the ideal no-wall stability limit, β_(Nno-wall), for periods much greater than the wall eddy current decay time. Resistive wall mode (RWM) physics is studied to understand mode stabilization in these plasmas. The toroidal mode spectrum of unstable RWMs has been measured with mode number n up to 3. The critical rotation frequency of Bondeson-Chu, Ω_(crit) = ω_A/(4q~2), describes well the RWM stability of NSTX plasmas when applied over the entire rotation profile and in conjunction with the ideal stability criterion. Rotation damping and global rotation collapse observed in plasmas exceeding β_(Nno-wall) differs from the damping observed during tearing mode activity and can be described qualitatively by drag due to neoclassical toroidal viscosity in the helically perturbed field of an ideal displacement. Resonant field amplification of an applied n - 1 field perturbation has been measured and increases with increasing β_N- Equilibria are reconstructed including measured ion and electron pressure, toroidal rotation and flux isotherm constraint in plasmas with core rotation ω_φ/ω_A up to 0.48. Peak pressure shifts of 18% of the minor radius from the magnetic axis have been reconstructed.
机译:美国国家球形圆环实验(NSTX)展示了低纵横比几何结构在获取高环形和归一化血浆ββ_t≡2μ_0> / B_0〜2和β_N≡10〜8 <β_t> aB_0 / I_p方面的优势。通过边界和轮廓优化,实验已达到β_t= 39%和β_N= 7.2。高β_N等离子体可以超过理想的无壁稳定性极限,即β_(Nno-wall),其持续时间远大于壁涡流的衰减时间。研究了电阻壁模式(RWM)物理,以了解这些等离子体中的模式稳定。在模式编号n最高为3的情况下,测量了不稳定RWM的环形模式频谱。Bondeson-Chu的临界旋转频率Ω_(crit)=ω_A/(4q〜2),很好地描述了NSTX等离子体在应用时的RWM稳定性在整个旋转曲线上并结合理想的稳定性标准。在超过β_(Nno-wall)的等离子体中观察到的旋转阻尼和整体旋转塌陷与在撕裂模式活动期间观察到的阻尼不同,并且由于理想位移的螺旋扰动场中的新古典环形粘度,可以通过阻力来定性地描述。已经测量了施加的n-1场扰动的共振场放大,并且随着β_N的增加而增加。重建了包括磁芯旋转ω_φ/ω_A最高为0.48的等离子体中测得的离子和电子压力,环向旋转和通量等温线约束的平衡。已重建了距磁轴18%的小半径的峰值压力偏移。

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