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A high power experimental traveling wave antenna for fast wave heating and current drive in DIII-D and relevance to ITER

机译:用于快速波加热和电流驱动的高功率实验行驶波天线和DIII-D的电流驱动及其与ITER的相关性

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The impact of a contemplated conversion of the directly driven high power antenna arrays in DIII-D to externally tuned and coupled traveling wave antennas (TWAs) is evaluated based on empirical modeling, computer simulation and low power experiments. A regime of operation is predicted within the TWA passband in which the reflected power from the TWA approaches 0.1% during the ELM-free H-mode. Furthermore, this reflected power does not exceed 1% and the optimum phase velocity produced by the TWA decreases less than 5% during ELMs. This resilient operating regime is phase shifted using external tuning stubs, thus providing considerable experimental flexibility. Over 90% plasma coupling efficiency is achieved by recovering the TWA output power using a novel traveling wave recirculator. Combining the above attributes with efficient plasma coupling even at large antenna-plasma distances and the lack of need for dynamic tuning, TWAs appear to offer great promise for ITER.
机译:基于经验建模,计算机仿真和低功率实验,评估直接驱动的高功率天线阵列的预期转换直接驱动的高功率天线阵列的影响和耦合的行进波天线(TWA)。在TWA通带内预测操作制度,其中在无ELM的H模式期间来自TWA的反射功率接近0.1%。此外,这种反射功率不超过1%,并且在ELM期间,TWA产生的最佳相速度降低于5%。这种弹性操作制度是使用外部调谐存根的相移,从而提供相当大的实验灵活性。通过使用新颖的行波回复器恢复TWA输出功率来实现超过90%的等离子体耦合效率。即使在大型天线 - 等离子体距离和缺乏动态调谐的情况下,将上述属性与高效的等离子体耦合相结合,TWA似乎对迭代提供了很大的承诺。

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