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Geodesic acoustic modes in a fluid model of tokamak plasma: the effects of finite beta and collisionality

机译:托卡马克等离子体流体模型中的测地线声模:有限β和碰撞性的影响

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摘要

Starting from the Braginskii equations, relevant for the tokamak edge region, a complete set of nonlinear equations for the geodesic acoustic modes (GAM) has been derived which includes collisionality, plasma beta and external sources of particle, momentum and heat. Local linear analysis shows that the GAM frequency increases with collisionality at low radial wave number k(r) and decreases at high k(r). GAM frequency also decreases with plasma beta. Radial profiles of GAM frequency for two Tore Supra shots, which were part of a collisionality scan, are compared with these calculations. A discrepancy between experiment and theory is observed, which seems to be explained by a finite k(r) for the GAM when flux surface averaged density < n > and temperature < T > are assumed to vanish. It is shown that this agreement is incidental and self-consistent inclusion of < n > and < T > responses enhances the disagreement more with k(r) at high k(r). So the discrepancy between the linear GAM calculation and experiment, (which also persist for more 'complete' linear models such as gyrokinetics) can probably not be resolved by simply adding a finite k(r).
机译:从与托卡马克边缘区域相关的Braginskii方程开始,已经得出了一套完整的测地线声模(GAM)非线性方程组,其中包括碰撞性,等离子体β和外部粒子,动量和热源。局部线性分析表明,GAM频率在低径向波数k(r)时随碰撞而增加,而在高k(r)时降低。 GAM频率也随血浆β而降低。将两次碰撞扫描的一部分,将两次计算的GAM频率的径向轮廓与这些计算进行了比较。观察到实验与理论之间的差异,这似乎由GAM的有限k(r)来解释,当假定通量表面平均密度和温度消失时。结果表明,该协议是偶然的且自洽地包含,而响应则在高k(r)时与k(r)的分歧更加明显。因此,线性GAM计算与实验之间的差异(对于更完整的线性模型(如运动学动力学)也仍然存在),仅通过添加有限的k(r)可能无法解决。

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