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Global Alfven eigenmodes in the H-1 heliac

机译:H-1 Heliac的全球Alfven特征模型

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Recent upgrades in H-1 power supplies have enabled the operation of the H-1 experiment at higher heating powers than previously attainable. A heating power scan in mixed hydrogen/helium plasmas reveals a change in mode activity with increasing heating power. At low power (< 50 kW) modes with beta-induced Alfven eigenmode frequency scaling are observed. At higher power modes consistent with an analysis of nonconventional global Alfven eigenmodes (GAEs) are observed, the subject of this work. We have computed the mode continuum, and identified GAE structures using the ideal MHD solver CKA and the gyrokinetic code EUTERPE. An analytic model for ICRH-heated minority ions is used to estimate the fast ion temperature from the hydrogen species. Linear growth rate scans using a local flux surface stability calculation, LGRO, are performed. These studies demonstrate drive from the radial spatial gradient of circulating particles whose speed is significantly less than the Alfven speed, and are resonant with the mode through harmonics of the Fourier decomposition of the strongly shaped heliac magnetic field. They reveal drive is possible with a small (n(f)/n(0) < 0.2) hot energetic tail of the hydrogen species, for which T-f > 300 eV. Local linear growth rate scans are also complemented with global calculations from CKA and EUTERPE. These qualitatively confirm the findings from the LGRO study, and show that the inclusion of finite Larmor radius effects can reduce the growth rate by a factor of up to ten, and increases the marginal stability fast ion temperature by a factor of two. Finally, a study of damping of the global mode with the thermal plasma is conducted, computing continuum damping, and the damping arising from finite Larmor radius and parallel electric fields ( via resistivity). We find that continuum damping is of order 0.1% for the configuration studied. A similar calculation in the cylindrical plasma model produces a frequency 35% higher and a damping 30% of the
机译:最近H-1电源的升级使H-1实验的操作能够在更高的加热功率下的操作而不是以前可达到的。混合氢/氦等离子体中的加热功率扫描显示了随着加热功率增加的模式活性的变化。在低功率(<50kW)模式下,观察到β致诱导的Alfven eIgenmode频率缩放。在较高的动力模式下,观察到非共同纳入全球Alfven特征模(GAES)的分析,这项工作的主题。我们已经计算了Mode连续体,并使用理想的MHD求解器CKA和Gyrokinetic Code Euterpe识别GAE结构。 ICRH加热少数族离子的分析模型用于估计来自氢物质的快速离子温度。执行使用局部通量表面稳定性计算的线性生长速率扫描,LGRO。这些研究表明,从循环颗粒的径向空间梯度的驱动,其速度明显小于ALFven速度,并且通过傅里叶磁场的傅里叶磁场的谐波的谐波谐振。它们揭示驱动器是可能的氢物种的小(n(f)/ n(0)<0.2)热能尾部,T-F> 300eV。局部线性生长速率扫描也与CKA和Euterpe的全局计算辅成。这些定性地证实了LGRO研究的发现,并表明包含有限的大肠杆半径效应可以将生长速度降低到最多十个,并将边缘稳定性快速离子温度提高两倍。最后,对全球模式的阻尼具有热等离子体的研究,计算连续局部阻尼,以及由有限的大距离半径和平行电场产生的阻尼(通过电阻率)。我们发现,对于所研究的配置,Continuum Damping是订单0.1%。圆柱形等离子体模型的类似计算产生35%的频率高,阻尼30%

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