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Design of folded waveguide antenna for Alcator C-Mod

机译:Alcator C-Mod的折叠波导天线设计

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The Oak Ridge National Laboratory (ORNL) ion cyclotron range of frequencies (ICRF) antenna for Alcator C-Mod is a folded waveguide (FWG) antenna designed to determine whether the FWG can serve as a high power density, ceramic-free antenna for both present heating and fast wave current drive (FWCD) applications and for future tokamaks such as the International Thermonuclear Experimental Reactor (ITER) and the Tokamak Physics Experiment (TPX). The FWG is particularly attractive because it has a low internal electric field per unit power coupled to the plasma. This results in more power capability and has been demonstrated by 1-MW (unloaded) tests on the Radio Frequency Test Facility (RFTF). The experiment will characterize the impact of an FWG on impurity control in the presence of high power density and on central heating. The antenna is designed to withstand the tokamak environment, including high heat fluxes, high-temperature bakeout, and major disruptions, without vacuum leaks. The front face is curved to fit the plasma outline. Two front plates are fabricated for the antenna, one with full-width slits at every other location between vanes and the other with alternating right and left half-width slits at every location between vanes for pi-phasing.
机译:橡树岭国家实验室(ORNL)离子回旋加速器频率范围(ICRF)天线用于Alcator C-Mod是折叠波导(FWG)天线,旨在确定FWG是否可以用作高功率密度,无陶瓷天线的天线目前的加热和快速波电流驱动(FWCD)应用以及未来的托卡马克装置,例如国际热核实验反应堆(ITER)和托卡马克物理实验(TPX)。 FWG特别吸引人,因为它与等离子体耦合的每单位功率具有较低的内部电场。这样可以产生更大的功率,并且已经通过射频测试设施(RFTF)上的1兆瓦(空载)测试得到了证明。该实验将表征在高功率密度存在下FWG对杂质控制的影响以及对中央加热的影响。该天线旨在承受托卡马克环境,包括高热通量,高温烘烤和重大破坏,而不会发生真空泄漏。前面弯曲成适合等离子轮廓。为天线制造了两个前板,一个在叶片之间的每个其他位置都具有全宽缝隙,另一个在叶片之间的每个位置具有交替的左右半宽缝隙以进行π相移。

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