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首页> 外文期刊>Physics of plasmas >Electron-cyclotron wave scattering by edge density fluctuations in ITER
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Electron-cyclotron wave scattering by edge density fluctuations in ITER

机译:ITER中边缘密度波动引起的电子回旋波散射

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摘要

The effect of edge turbulence on the electron-cyclotron wave propagation in ITER is investigated with emphasis on wave scattering, beam broadening, and its influence on localized heating and current drive. A wave used for electron-cyclotron current drive (ECCD) must cross the edge of the plasma, where density fluctuations can be large enough to bring on wave scattering. The scattering angle due to the density fluctuations is small, but the beam propagates over a distance of several meters tip to the resonance layer and even small angle scattering leads to a deviation of several centimeters at the deposition location. Since the localization of ECCD is crucial for the control of neoclassical tearing modes, this issue is of great importance to the ITER design. The wave scattering process is described oil the basis of a Fokker-Planck equation, where the diffusion coefficient is calculated analytically as well as computed numerically using a ray tracing code.
机译:研究了边缘湍流对ITER中电子回旋波传播的影响,重点是波散射,电子束展宽及其对局部加热和电流驱动的影响。用于电子回旋电流驱动(ECCD)的波必须穿过等离子体的边缘,在等离子体的边缘,密度波动可能足够大以引起波散射。由于密度波动引起的散射角很小,但是光束在共振层上方传播了几米,甚至很小的角度散射也会导致在沉积位置产生几厘米的偏差。由于ECCD的定位对于控制新古典撕裂模式至关重要,因此该问题对ITER设计非常重要。以Fokker-Planck方程为基础描述了波散射过程,在该方程中,解析系数以及使用射线跟踪代码以数值方式计算了扩散系数。

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