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MHD phenomena in ASDEX Upgrade and TEXTOR

机译:ASDEX升级和TEXTOR中的MHD现象

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MHD phenomena in ASDEX Upgrade in standard shear discharge regimes as well as in weak and reversed shear discharges are investigated. The onset of neoclassical tearing modes leads to the most serious g limit at ASDEX Upgrade. The β_p value for the onset of neoclassical tearing modes is found to be proportional to the poloidal ion gyroradius for collisionless plasmas, as proposed by the ion polarization current model. Larger collisionalities have a stabilizing effect. Sawtooth crashes or fishbones can trigger the mode, and in a few cases it appears spontaneously. The fractional energy loss due to a (3,2) mode saturates for large pressures at around 25%, in agreement with the result of theoretical calculations. Owing to its large and flexible heating power, ASDEX Upgrade is well equipped for investigations of fast particle driven or influenced MHD modes. The observed TAEs have been shown to agree well with theoretical predictions regarding the frequency as well as the drive by fast particles. Fishbones have been shown to not only affect the fast particle distribution but also directly to affect the background plasma. For low and reversed shear discharges, theoretical predictions for the growth of neoclassical tearing modes in regimes with a large fraction of bootstrap current at the rational surface, as well as for neoclassical double tearing modes, are given. In discharges with large impurity accumulation in the plasma centre, unusual MHD phenomena such as cascades of high n tearing modes and modes driven by positive pressure gradients have been found at ASDEX Upgrade. For similar discharges, double tearing modes have been investigated at TEXTOR.
机译:研究了ASDEX升级版中的MHD现象,包括标准剪力释放方案以及弱和反向剪力释放情况。新古典撕裂模式的出现导致ASDEX升级中最严重的g限制。如离子极化电流模型所建议的,发现新古典撕裂模式的开始时的β_p值与无碰撞等离子体的极向离子陀螺半径成比例。较大的碰撞具有稳定作用。锯齿崩溃或鱼骨会触发该模式,在某些情况下会自发出现。与理论计算的结果一致,由于(3,2)模式导致的分数能量损失在25%左右的大压力下达到饱和。由于其强大的加热功率和灵活的灵活性,ASDEX升级设备非常适合研究快速粒子驱动或受影响的MHD模式。已显示观察到的TAE与有关频率以及快速粒子驱动的理论预测非常吻合。已经显示鱼骨不仅影响快速的颗粒分布,而且直接影响本底血浆。对于低剪切力和反向剪切力,给出了在理论表面具有大量自举电流的状态下新古典撕裂模式的增长以及新古典双撕裂模式的理论预测。在等离子体中心存在大量杂质堆积的放电中,在ASDEX升级版中发现了异常的MHD现象,例如高n撕裂模式的级联和由正压力梯度驱动的模式。对于类似的放电,TEXTOR已研究了双撕裂模式。

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