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Trapped particle precession and sub-bounce zonal flow dynamics in tokamaks

机译:陷阱粒子预测和托卡马克斯的分击地震流动动态

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A drift-kinetic calculation in an axisymmetric tokamak, with super-diamagnetic flows, is presented to elucidate the relation between the radial electric field, E-r, zonal flows and the rapid precession of the trapped particle (TP) population. It has been shown earlier (Rosenbluth & Hinton, Phys. Rev. Lett., vol. 80(4), 1998, p. 724, hereafter RH) that an initial radial electric field results in geodesic acoustic mode oscillations which subsequently Landau damp, resulting in a much smaller final residual electric field, and accompanying parallel zonal flows. We observe an apparent paradox: the final angular momentum in the RH parallel zonal flow is much smaller than the angular momentum expected from the well-known rapid precession of the trapped particle population in the RH residual electric field. We reconcile this paradox by illuminating the presence of a population of reverse circulating particle flows that, dominantly, are equal and opposite to the rapid TP precession. Mathematically, the calculation is facilitated by transforming to an energy coordinate shifted from conventional by an amount proportional to E-r. We also discuss the well-known RH coefficient in the context of effective mass and show how the TP precession and the opposite circulating flows contribute to this mass. Finally, we show that in the long wavelength limit, the RH flows and RH coefficient arise as a natural consequence of conservation of toroidal angular momentum and the second adiabatic invariant.
机译:提出了一种具有超级抗磁流的轴对称TOKAMAK中的漂移动力学计算,以阐明径向电场,E-R,区流和捕获颗粒(TP)群体的快速进程之间的关系。它已被展示(Rosenbluth&Hinton,Phys。Rev. Lett。,Vol.80(4),1998,p.724,以下初始电场导致随后Landau Damp的测地声学模式振荡,导致更小的最终残余电场,并伴随着平行区域流动。我们观察到一个明显的悖论:RH平行区域流动中的最终角动量远小于RH残余电场中被困颗粒群的众所周知的快速预期的角动量。我们通过照亮逆转循环粒子流量的存在来调和这一悖论,这些粒子流量,主导地位,与快速TP Precession相等。在数学上,通过将从传统的量转移到与E-R成比例的量来促进计算。我们还在有效质量的背景下讨论了众所周知的RH系数,并展示TP Precess和相反的循环流程对该质量有贡献。最后,我们表明,在长波长的极限中,RH流量和RH系数出现为环形角动量和第二绝热不变的自然后果。

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