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首页> 外文期刊>Physics of plasmas >Gyrokinetic neoclassical study of the bootstrap current in the tokamak edge pedestal with fully non-linear Coulomb collisions
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Gyrokinetic neoclassical study of the bootstrap current in the tokamak edge pedestal with fully non-linear Coulomb collisions

机译:完全非线性库仑碰撞的托卡马克边缘基座自举电流的陀螺动力学新古典研究

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As a follow-up on the drift-kinetic study of the non-local bootstrap current in the steep edge pedestal of tokamak plasma by Koh et al. [Phys. Plasmas 19, 072505 (2012)], a gyrokinetic neoclassical study is performed with gyrokinetic ions and drift-kinetic electrons. Besides the gyrokinetic improvement of ion physics from the drift-kinetic treatment, a fully non-linear Fokker-Planck collision operator-that conserves mass, momentum, and energy-is used instead of Koh et al.'s linearized collision operator in consideration of the possibility that the ion distribution function is non-Maxwellian in the steep pedestal. An inaccuracy in Koh et al.'s result is found in the steep edge pedestal that originated from a small error in the collisional momentum conservation. The present study concludes that (1) the bootstrap current in the steep edge pedestal is generally smaller than what has been predicted from the small banana-width (local) approximation [e.g., Sauter et al., Phys. Plasmas 6, 2834 (1999) and Belli et al., Plasma Phys. Controlled Fusion 50, 095010 (2008)], (2) the plasma flow evaluated from the local approximation can significantly deviate from the non-local results, and (3) the bootstrap current in the edge pedestal, where the passing particle region is small, can be dominantly carried by the trapped particles in a broad trapped boundary layer. A new analytic formula based on numerous gyrokinetic simulations using various magnetic equilibria and plasma profiles with self-consistent Grad-Shafranov solutions is constructed. (c) 2016 AIP Publishing LLC.
机译:作为对Koh等人在托卡马克等离子体陡峭边缘基座上非局部自举电流的漂移动力学研究的后续研究。 [物理Plasmas 19,072505(2012)],是用回旋离子和漂移动电子进行回旋新古典研究。考虑到漂移动力学处理改善了离子物理的陀螺动力学,还考虑到考虑了以下因素,使用了完全非线性的Fokker-Planck碰撞算子(保留质量,动量和能量)来代替Koh等人的线性碰撞算子。离子分布函数在陡峭的基座中具有非麦克斯韦性的可能性。 Koh等人的结果存在误差,这是由于陡峭的边缘基座引起的,该基座是由碰撞动量守恒中的一个小误差引起的。本研究得出的结论是(1)陡峭边缘基座中的自举电流通常小于香蕉宽度(局部)小近似值所预测的电流(例如Sauter等,Phys。 Plasmas 6,2834(1999)和Belli等,Plasma Phys。 Controlled Fusion 50,095010(2008)],(2)从局部近似值评估的等离子体流会明显偏离非局部结果,并且(3)边缘基座上的自举电流,该区域的通过粒子区域较小,可以主要由被俘获的粒子在较宽的俘获边界层中携带。构造了一个新的解析公式,该公式基于使用各种磁平衡和等离子轮廓以及自洽Grad-Shafranov解的众多陀螺动力学模拟。 (c)2016 AIP Publishing LLC。

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