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Study of the Effects of Corrugated Wall Structures due to Blanket Modules around ICRH Antennas

机译:瓦楞壁结构由于ICRH天线覆盖模块的影响研究

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In future fusion reactors, and in ITER, the first wall will be covered by blanket modules. These blanket modules, whose dimensions are of the order of the ICRF wavelengths, together with the clearance gaps between them will constitute a corrugated structure which will interact with the electromagnetic waves launched by ICRF antennas. The conditions in which the grooves constituted by the clearance gaps between the blanket modules can become resonant are studied. Simple analytical models and numerical simulations show that mushroom type structures (with larger gaps at the back than at the front) can bring down the resonance frequencies, which could lead to large voltages in the gaps between the blanket modules and perturb the RF properties of the antenna if they are in the ICRF operating range. The effect on the wave propagation along the wall structure, which is acting as a spatially periodic (toroidally and poloidally) corrugated structure, and hence constitutes a slow waVe structure modifying the wall boundary condition, is examined.
机译:在未来的融合反应堆中,在磨料中,第一墙将被毯子模块覆盖。这些覆盖模块,其尺寸为ICRF波长的顺序,以及它们之间的间隙间隙将构成波纹结构,其将与ICRF天线发射的电磁波相互作用。研究了通过橡皮布模块之间的间隙构成的凹槽的条件可以研究。简单的分析模型和数值模拟表明,蘑菇型结构(在后面的差距较大)可以降低谐振频率,这可能导致毯子模块之间的间隙中的大电压和扰动RF属性。天线如果它们在ICRF工作范围内。研究了对沿着壁结构的波传播的影响,该墙体结构用作空间周期性(环形和单线)波纹结构,并因此构成改变壁边界条件的慢波结构。

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