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Mode-locking phenomena in the TPE-RX reversed-field pinch plasma

机译:TPE-RX反向场收缩等离子体中的锁模现象

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The characteristics of the phase- and wall-locked mode found in a large-sized reversed-field pinch (RFP) machine TPE-RX [Y. Yagi Plasma Phys. Controlled Fusion 41, 255 (1999)] are described in detail. The toroidally-localized radial magnetic field starts to grow after the setup of the RFP configuration in a current rising phase, reaching up to 2% of the poloidal magnetic field at the plasma surface, and stays at the same toroidal location throughout the discharge. The mode frequently locks to the thick shell gap position with a 20%-30% probability. The plasma-wall interaction is enhanced at the locked position where the thermal wall load is peaked by a factor of about 3 on average. The locked mode disappears in some experimental conditions. The probability for the locked mode to appear depends on the experimental conditions, especially on the filling pressure of the fueling gas and on the rise time of the plasma current. Possible causes of the locked mode are discussed from the braking effect of the eddy current as well as from the halo current in the vacuum vessel. (C) 1999 American Institute of Physics. [S1070-664X(99)00110-X]. [References: 35]
机译:在大型反向场收缩(RFP)机器TPE-RX中发现了锁相和锁相模式的特征[Y.八木等离子物理详细描述了Controlled Fusion 41,255(1999)。在将RFP配置设置为电流上升阶段后,环形局部的径向磁场开始增长,达到等离子表面上的极向磁场的2%,并在整个放电过程中保持在相同的环形位置。该模式经常以20%-30%的概率锁定到厚壳间隙位置。等离子体-壁相互作用在锁定位置处得到增强,在锁定位置处,热壁负载平均达到峰值的3倍。在某些实验条件下,锁定模式消失。出现锁定模式的可能性取决于实验条件,特别是取决于燃料气体的填充压力和等离子电流的上升时间。从涡流的制动效果以及真空容器中的光晕电流来讨论锁定模式的可能原因。 (C)1999美国物理研究所。 [S1070-664X(99)00110-X]。 [参考:35]

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