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Full wave simulations of fast wave mode conversion and lower hybrid wave propagation in tokamaks

机译:托卡马克中快速波模转换和低杂波传播的全波模拟

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Fast wave (FW) studies of mode conversion (MC) processes at the ion-ion hybrid layer in toroidal plasmas must capture the disparate scales of the FW and mode converted ion Bernstein and ion cyclotron waves. Correct modeling of the MC layer requires resolving wavelengths on the order of k(perpendicular to)rho(i)similar to1 which leads to a scaling of the maximum poloidal mode number, M-max, proportional to 1/rho(*) (rho(*)equivalent torho(i)/L). The computational resources needed scale with the number of radial (N-r), poloidal (N-theta), and toroidal (N-phi) elements as N-r * N-phi * N-theta(3). Two full wave codes, a massively-parallel-processor (MPP) version of the TORIC-2D finite Larmor radius code [M. Brambilla, Plasma Phys. Controlled Fusion 41, 1 (1999)] and also an all orders spectral code AORSA2D [E. F. Jaeger , Phys. Plasmas 9, 1873 (2002)], have been developed which for the first time are capable of achieving the resolution and speed necessary to address mode conversion phenomena in full two-dimensional (2-D) toroidal geometry. These codes have been used in conjunction with theory and experimental data from the Alcator C-Mod [I. H. Hutchinson , Phys. Plasmas 1, 1511 (1994)] to gain new understanding into the nature of FWMC in tokamaks. The massively-parallel-processor version of TORIC is also now capable of running with sufficient resolution to model planned lower hybrid range of frequencies experiments in the Alcator C-Mod. (C) 2004 American Institute of Physics.
机译:环形等离子体中离子-离子杂化层的模式转换(MC)过程的快速波(FW)研究必须捕获FW和模式转换的离子伯恩斯坦波和离子回旋波的不同尺度。正确的MC层建模需要解析与k(垂直)rho(i)近似于1的k的波长,这导致最大倍数模数M-max的缩放与1 / rho(*)(rho成比例) (*)相当于torho(i)/ L)。计算资源需要按径向(N-r),极向(N-theta)和环形(N-phi)元素的数量进行缩放,即N-r * N-phi * N-theta(3)。两个全波代码,TORIC-2D有限拉莫尔半径代码的大规模并行处理器(MPP)版本[M. Brambilla,等离子物理。 Controlled Fusion 41,1(1999)]以及所有阶次频谱代码AORSA2D [E. F. Jaeger,物理学。已经开发出等离子9,1873(2002)],它首次能够实现解决全二维(2-D)环形几何中的模式转换现象所需的分辨率和速度。这些代码已与Alcator C-Mod [I. H.Hutchinson,物理学。 [Plasmas 1,1511(1994)],以获取对托卡马克人FWMC性质的新认识。 TORIC的大规模并行处理器版本现在也能够以足够的分辨率运行,以在Alcator C-Mod中为计划的较低混合频率实验建模。 (C)2004美国物理研究所。

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