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Numerical modeling of the coupling of an ICRH antenna with a plasma with self-consistent antenna currents

机译:具有自洽天线电流的ICRH天线与等离子体耦合的数值模型

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A realistic modeling of ICRH antennas requires the knowledge of the antenna currents. The code ICANT determines self-consistently these currents and, as a byproduct, the electrical characteristics of the antenna (radiated power, propagation constants on straps, frequency response,…). The formalism allows for the description of three-dimensional antenna elements (for instance, finite size thick screen blades). The results obtained for various cases where analytical results are available are discussed. The resonance appearing in the spectrum and the occurrence of unphysical resonant modes are discussed. The capability of this self-consistent method is illustrated by a number of examples, e.g., fully conducting thin or thick screen bars leading to magnetic shielding effects, frequency response and resonances of an end-tuned antenna, field distributions in front of a Tore-Supra type antenna with tilted screen blades.
机译:实际的ICRH天线建模需要了解天线电流。代码ICANT可以自洽地确定这些电流,并作为副产品确定天线的电气特性(辐射功率,带上的传播常数,频率响应等)。形式主义允许描述三维天线元件(例如,有限尺寸的厚屏幕叶片)。讨论了在各种情况下可获得分析结果的结果。讨论了频谱中出现的共振和非物理共振模的出现。大量示例说明了这种自洽方法的功能,例如,完全导通的薄或厚屏蔽条会导致磁屏蔽效应,最终调谐天线的频率响应和谐振,Tore-带有倾斜式屏幕刀片的Supra型天线。

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