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Antenna coupling study for ICWC plasma characterization in TEXTOR

机译:TEXTOR中ICWC等离子体表征的天线耦合研究

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Ion cyclotron wall conditioning (ICWC) discharges, in pulsed-mode operation, were carried out in the limiter tokamak TEXTOR to explore safe operational regimes for the experimental parameters for possible ICWC-discharge cleaning in International Thermonuclear Experimental Reactor (ITER) at half field. Antenna coupling properties obtained during the ion cyclotron range of frequencies (ICRF) wall conditioning experiments performed in heliuma€“hydrogen mixture in TEXTOR were analysed in relation to the obtained ICWC-plasma characterization results. Satisfactory antenna coupling in the mode conversion scenario along with reproducible generation of ICRF plasmas for wall conditioning, were achieved by coupling radio frequency (RF) power from one or two ICRF antennas. The plasma breakdown results obtained in the TEXTOR tokamak have been compared with the predictions of a zero-dimensional RF plasma production model. The present study of ICWC emphasizes the beneficial effect of application of an additional (along with toroidal magnetic field) stationary vertical ($B_{V} ll B_{T}$) or oscillating poloidal magnetic field ($B_{P} ll B_{T}$) on antenna coupling and relevant plasma parameters.
机译:在限制器托卡马克TEXTOR中以脉冲模式操作进行离子回旋壁调节(ICWC)放电,以探索国际半热场中国际热核实验反应堆(ITER)可能进行ICWC放电清洁的实验参数的安全操作方案。结合获得的ICWC-等离子体表征结果,分析了在离子回旋加速器频率范围(ICRF)在TEXTOR中的氦-氢混合物中进行的壁调节实验期间获得的天线耦合特性。通过耦合来自一到两个ICRF天线的射频(RF)功率,可以在模式转换场景中获得令人满意的天线耦合,以及可重生的用于墙面调节的ICRF等离子体。在TEXTOR托卡马克中获得的等离子体击穿结果已与零维RF等离子体产生模型的预测进行了比较。 ICWC的当前研究强调了施加额外的(与环形磁场一起)静止垂直磁场($ B_ {V} ll B_ {T} $)或振荡极磁场($ B_ {P} ll B_ {天线耦合和相关的等离子体参数。

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