论文标题
用自洽的射线追踪计算RF电流冷凝
Calculating RF current condensation with self-consistent ray-tracing
论文作者
论文摘要
通过利用RF波的功率沉积的非线性扩增,电流冷凝有望实现磁岛稳定的新途径。我们提出了电流凝结的数值分析,将波传播的几何光学处理和阻尼与岛上的热扩散方程求解器耦合。考虑到岛上的几何形状和相对论阻尼,可以更精确地进行分析理论,并且可以实际预测特定的情况。通过这种更精确的描述,可以在现实的参数值下在类似iTer的场景中获得分叉和相关的滞后效应。此外,已经表明,动态变化的RF波启动角可以导致磁滞并有助于避免非线性阴影效果。
By exploiting the nonlinear amplification of the power deposition of RF waves, current condensation promises new pathways to the stabilisation of magnetic islands. We present a numerical analysis of current condensation, coupling a geometrical optics treatment of wave propagation and damping to a thermal diffusion equation solver in the island. Taking into account the island geometry and relativistic damping, previous analytical theory can be made more precise and specific scenarios can be realistically predicted. With this more precise description, bifurcations and associated hysteresis effects could be obtained in an ITER-like scenario at realistic parameter values. Moreover, it is shown that dynamically varying the RF wave launching angles can lead to hysteresis and help to avoid the nonlinear shadowing effect.