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Monte-Carlo Orbit/Full Wave Simulation of Fast Alfvén Wave (FW) Damping on Resonant Ions in Tokamaks

机译:快速Alfvén波(FW)的Monte-Carlo轨道/全波仿真在托卡克斯的共振离子上阻尼

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To simulate the resonant interaction of fast Alfvén wave (FW) heating and Coulomb collisions on energetic ions, including finite orbit effects, a Monte-Carlo code ORBIT-RF has been coupled with a 2D full wave code TORIC4. ORBIT-RF solves Hamiltonian guiding center drift equations to follow trajectories of test ions in 2D axisymmetric numerical magnetic equilibrium under Coulomb collisions and ion cyclotron radio frequency quasi-linear heating. Monte-Carlo operators for pitch-angle scattering and drag calculate the changes of test ions in velocity and pitch angle due to Coulomb collisions. A rf-induced random walk model describing fast ion stochastic interaction with FW reproduces quasi-linear diffusion in velocity space. FW fields and its wave numbers from TORIC are passed on to ORBIT-RF to calculate perpendicular rf kicks of resonant ions valid for arbitrary cyclotron harmonics. ORBIT-RF coupled with TORIC using a single dominant toroidal and poloidal wave number has demonstrated consistency of simulations with recent DIII-D FW experimental results for interaction between injected neutral-beam ions and FW, including measured neutron enhancement and enhanced high energy tail. Comparison with C-Mod fundamental heating discharges also yielded reasonable agreement.
机译:为了模拟快速Alfvén波(FW)加热的谐振相互作用和能量离子上的Coulomb碰撞,包括有限轨道效应,据蒙特卡罗码轨道轨道-RF已经与2D全波代码Toric4耦合。轨道-RF求解汉密尔顿引导中心漂移方程,遵循Coulomb碰撞和离子回旋射频准线性加热下的2D轴对称数值磁平衡中的测试离子的轨迹。用于球场散射的Monte-Carlo操作员,并且拖动由于库仑碰撞而计算速度和俯仰角的测试离子的变化。一种RF诱导的随机步道模型,描述了与FW的快速离子随机相互作用再现在速度空间中的准线性扩散。 FW字段及其波的波数传递到轨道-RF以计算适用于任意回旋谐波的谐振离子的垂直RF踢。使用单个主导环形环形波动和针状波数与复合的轨道-RF已经证明了近期DIII-D FW实验结果的仿真对注射中性光束离子和FW之间的相互作用的实验结果,包括测量的中子增强和增强的高能量尾。与C-MOD基本供暖放电的比较也产生了合理的协议。

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