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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >ICRF antenna-plasma interactions and its influence on W sputtering in ASDEX upgrade
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ICRF antenna-plasma interactions and its influence on W sputtering in ASDEX upgrade

机译:ASDEX升级中ICRF天线-等离子体相互作用及其对W溅射的影响

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摘要

Analysis of the W concentration during ICRF over AUG experimental campaigns confirms the critical role of W antenna limiters for the W content in plasma, though other structures connected to antennas along magnetic field lines cannot be neglected as W sources. Abrupt changes of spectroscopically measured W sputtering patterns are observed which correlate with step-wise changes of connection lengths at antenna limiters. Analysis of discharges with the reversed direction of toroidal magnetic field shows less W release compared to identical discharges with the normal direction. The lower W release is accompanied by lower intensity of fluctuations of reflected ICRF power in the 1-60 kHz range. The observations suggest that local magnetic geometry and density convection at the antennas are at least as important for the W sputtering as the distribution of RF near-fields at the antenna. Measurements of DC currents flowing through the antenna limiters show that the limiters at the active antenna collect predominantly negative DC currents whereas those distant from the active antenna collect predominantly positive DC currents. The latter decrease and become more negative when the intensity of the RF pickup measured at the limiters increases. The mutual compensation between the positive and negative currents can lead to lower values of the DC current than those expected from simplified theoretical models of the RF/DC circuit.
机译:通过AUG实验活动在ICRF期间对W浓度进行的分析证实了W天线限制器对于等离子体中W含量的关键作用,尽管不能忽略沿磁场线连接到天线的其他结构作为W源。观察到光谱测量的W溅射图案的突然变化,其与天线限制器处的连接长度的逐步变化相关。与具有垂直方向的相同放电相比,分析具有反向环形磁场的放电显示更少的W释放。较低的W释放伴随着较低的1-60 kHz范围内反射的ICRF功率波动强度。观测结果表明,对于W溅射,天线处的局部磁性几何形状和密度对流至少与天线上RF近场的分布一样重要。流过天线限制器的直流电流的测量结果表明,有源天线处的限制器主要收集负的直流电流,而远离有源天线的限制器主要收集正的直流电流。当在限制器上测量的RF拾波器的强度增加时,后者减小并变得更负。正电流和负电流之间的相互补偿可能导致DC电流的值低于RF / DC电路的简化理论模型所期望的值。

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