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Individual Sawtooth Pacing by Synchronized ECCD in TCV

机译:在TCV中通过同步ECCD个人锯齿起搏

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Previous real-time sawtooth control scenarios using EC actuators have attempted to shorten [1] or lengthen [2] the sawtooth period by optimally positioning the EC absorption near the q velence 1 surface. In new experiments we demonstrate for the first time that individual sawtooth crashes can be repetitively induced at predictable times by reducing the stabilizing ECCD power after a predetermined time from the preceding crash. Other stabilizing actuators (e.g. ICRF, NBI) are expected to produce similar effects. Armed with these results, we present a new sawtooth / NTM control paradigm for improved performance in burning plasmas. The potential appearance of neo-classical tearing modes, triggered by long period sawtooth crashes even at low beta, becomes predictable and therefore amenable to preemptive ECCD. The ITER Electron Cyclotron Upper Launcher (EC-UL) design incorporates the needed functionalities for this method to be applied. The methodology and associated TCV experiments will be presented.
机译:先前使用EC执行器的实时锯齿控制场景已经尝试通过最佳地定位Q Velence 1表面附近的EC吸收来缩短[1]或延长锯齿周期。在新的实验中,我们首次证明了通过在从前碰撞的预定时间之后减少稳定的ECCD电力来重复地在可预测的时期重复地引起各个锯齿崩溃。预计其他稳定致动器(例如ICRF,NBI)将产生类似的效果。使用这些结果,我们提出了一种新的锯齿/ NTM控制范式,可提高燃烧等离子体的性能。即使在低β在低β即使在低β下,长期锯齿撞击的新经典撕裂模式的潜在外观也是可预测的,因此适用于先发制人的ECCD。 ITER电子回旋/上发射器(EC-UL)设计包括该方法的所需功能。将提出方法和相关的TCV实验。

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