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Recent developments in ICRF antenna modelling

机译:ICRF天线建模的最新进展

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The antennas presently developed for ion cyclotron resonance frequency (ICRF) heating of the ITER plasma consist of a tightly packed array of a large number of radiating straps, in order to deliver a high power density without exceeding radio-frequency voltage standoffs. A recently developed three-dimensional electromagnetic commercial software has enabled important progress in the coupling analysis and optimization of such demanding systems. Approximations allowing these codes to convincingly model the effect of antenna loading by a magnetized plasma are discussed. It is shown that, for the purpose of antenna design calculations, a slab of ordinary dielectric with a high relative permittivity, K-D, of the order of (c/V-A)(2), where V-A is the plasma Alfven velocity, can reproduce the main features of wave reflection and refraction by the plasma edge. Multi-layered dielectrics permit more refined approximations. The numerical application of the approximation is illustrated by a simulation of the JET 'A2' ICRF arrays, which fairly, qualitatively reproduces the experimental frequency dependence of the coupling resistance. The same loading approximation is applied to the design of realistic experimental test-bed conditions for antenna prototypes or mock-ups, using water as a means of creating plasma-relevant antenna loading. Application to a scaled mockup of the ITER antenna is briefly presented.
机译:目前开发的用于ITER等离子体离子回旋共振频率(ICRF)加热的天线由紧密堆积的大量辐射带组成,以提供高功率密度而又不超过射频电压的距离。最近开发的三维电磁商业软件已经在这种苛刻系统的耦合分析和优化方面取得了重要进展。讨论了允许这些代码令人信服地模拟磁化等离子体对天线负载影响的近似方法。结果表明,出于天线设计计算的目的,具有(c / VA)(2)量级的相对介电常数KD较高的普通电介质平板可以再现等离子体的Alfven速度。等离子体边缘的波反射和折射的主要特征。多层电介质允许更精细的近似。通过对JET'A2'ICRF阵列的仿真来说明近似值的数值应用,该仿真公平,定性地再现了耦合电阻的实验频率依赖性。使用水作为产生与等离子体相关的天线负载的方法,将相同的负载近似值应用于天线原型或实体模型的实际实验测试台条件的设计。简要介绍了在ITER天线的比例模型中的应用。

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