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Advances in Lower Hybrid Current Drive for Tokamak Long Pulse Operation: Technology and Physics

机译:托卡马克长脉冲运行的低混合电流驱动技术的进展:技术和物理

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The paper gives a picture of the present status and understanding of technology and physics of Lower Hybrid Current Drive for long pulse operation in tokamaks, including the development of continuous wave (CW) high power klystrons, and its evolutions towards ITER. 3.7 GH / 700 kW CW klystrons produced in series by Thales Electron Devices are now in operation on Tore Supra. First series of eight klystrons delivered more than 4 MW to sustain non-inductive plasmas during 50 s. Moreover, a prototype of 500 kW CW klystron operating at 5 GHz developed for KSTAR by Toshiba Electron Tubes and Devices, and foreseen for ITER, is able to produce RF output powers of 300 kW / 800 s and 450 kW / 20 s on matched load. The situation on wave coupling and antennas is reported, with the latest Tore Supra results of the new CW Passive-Active Multi-junction (PAM) launcher: the antenna concept foreseen for ITER. First experiments with the PAM antenna in Tore Supra have provided extremely encouraging results in terms of power handling and coupling. Relevant ITER power density of ~25 MW/m2 (2.7 MW of power injected into the plasma) has been maintained over ~80 s. In addition, LH power of 2.7 MW has been coupled at a plasma-antenna distance of 10 cm.
机译:本文介绍了用于托卡马克长脉冲操作的下混合电流驱动技术的现状以及对技术和物理的理解,包括连续波(CW)大功率速调管的发展及其向ITER的发展。 Thales电子设备公司批量生产的3.7 GH / 700 kW CW速调管现已在Tore Supra投入运行。第一个系列的8个速调管在50 s内提供了超过4 MW的功率以维持非感应等离子体。此外,由东芝电子管和设备公司为KSTAR开发并在ITER上预见到的以5 GHz运行的500 kW CW速调管原型可以在匹配负载下产生300 kW / 800 s和450 kW / 20 s的RF输出功率。 。报告了波耦合和天线的情况,以及新型CW被动-主动多结(PAM)发射器的最新成果:ITER所预见的天线概念。 Tore Supra的PAM天线的首次实验在功率处理和耦合方面提供了令人鼓舞的结果。 ITER的相关功率密度一直保持在〜80 s左右,约为25 MW / m 2 (向等离子体中注入的2.7 MW功率)。此外,2.7 MW的LH功率已在10 cm的等离子天线距离处耦合。

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