Simulations of Reflectometer Response to ITER Plasma Perturbations Caused by Alfvén Modes

IF 0.9 4区 物理与天体物理 Q4 PHYSICS, FLUIDS & PLASMAS Plasma Physics Reports Pub Date : 2023-10-07 DOI:10.1134/S1063780X23600895
D. A. Shelukhin, M. Yu. Isaev, S. Yu. Medvedev, V. A. Vershkov, M. I. Mikhailov
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Abstract

The KINX and VENUS codes were used for simulation of the baseline inductive and steady-state scenarios of the ITER tokamak operation. The perturbations of plasma electron density and magnetic field caused by the Alfvén modes were calculated in the flux coordinates for these scenarios. The perturbation fields obtained were converted into the engineering coordinates in order to calculate the propagation of probe electromagnetic radiation of the reflectometer using the two-dimensional full-wave TAMIC RτX code in the expected geometry of the experiment. The calculations performed show that for the baseline inductive scenario, in the case of reflection of the extraordinary wave at the lower cutoff frequency from the high magnetic field side, the electric field relative perturbations of the reflected reflectometer signal correspond to the margin of linear range of the diagnostics operation or even go out of this range. It was found that in a number of scenarios, not only the electron density perturbations, but also the magnetic field perturbations significantly contribute to the total signal perturbations that makes even more difficult the further data interpretation. Another possible problem is the narrow frequency range of probing frequencies where the Alfvén mode can be observed. In addition to simulating the reflection of electromagnetic waves from plasma, it was analyzed also the possibility of measuring the Alfvén modes parameters when the extraordinary wave pass through the plasma in the transparency window between the upper and lower cutoff frequencies of the extraordinary wave (refractometry). It is shown that at the fundamental frequency, the phase perturbations range from 3 to 60 degrees, which makes it impossible to use the amplitude-modulated refractometer for analyzing signals. The “synthetic diagnostics” approach was used, which showed itself well for simulating the operation of reflectometers at plasma facilities.

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反射计对阿尔芬模式引起的ITER等离子体扰动的响应模拟
KINX和VENUS代码用于ITER托卡马克操作的基线感应和稳态场景的模拟。在这些情况下,在通量坐标中计算了Alfvén模式引起的等离子体电子密度和磁场的扰动。将获得的扰动场转换为工程坐标,以便使用二维全波TAMIC RτX代码在预期的实验几何结构中计算反射计的探针电磁辐射的传播。所执行的计算表明,对于基线电感情况,在从高磁场侧以较低截止频率反射非常波的情况下,反射反射计信号的电场相对扰动对应于诊断操作的线性范围的裕度,或者甚至超出该范围。研究发现,在许多情况下,不仅电子密度扰动,磁场扰动都对总信号扰动有显著影响,这使得进一步的数据解释更加困难。另一个可能的问题是探测频率的频率范围很窄,可以观察到Alfvén模式。除了模拟电磁波从等离子体的反射外,还分析了当非常波在非常波的上下截止频率之间的透明窗口中穿过等离子体时测量Alfvén模式参数的可能性(折射测量法)。研究表明,在基频下,相位扰动的范围从3度到60度,这使得无法使用调幅折射计来分析信号。使用了“合成诊断”方法,该方法很好地模拟了等离子体设施中反射计的操作。
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来源期刊
Plasma Physics Reports
Plasma Physics Reports 物理-物理:流体与等离子体
CiteScore
1.90
自引率
36.40%
发文量
104
审稿时长
4-8 weeks
期刊介绍: Plasma Physics Reports is a peer reviewed journal devoted to plasma physics. The journal covers the following topics: high-temperature plasma physics related to the problem of controlled nuclear fusion based on magnetic and inertial confinement; physics of cosmic plasma, including magnetosphere plasma, sun and stellar plasma, etc.; gas discharge plasma and plasma generated by laser and particle beams. The journal also publishes papers on such related topics as plasma electronics, generation of radiation in plasma, and plasma diagnostics. As well as other original communications, the journal publishes topical reviews and conference proceedings.
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