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Effect of externally injected toroidal magnetic flux on the dynamo action in reversed-field pinch plasma

机译:外部注入环形磁通量对反向场收缩等离子体中发电机作用的影响

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Summary form only given. Many experiments have shown that the dynamo action induced by MHD activities generates toroidal magnetic flux in reversed-field pinch (RFP) plasmas and that it is accompanied by the degradation of plasma confinement. Therefore, if the toroidal magnetic flux could be externally injected by other means, the confinement would be expected to be extremely improved. The transverse rotating magnetic field is one of the candidates for realizing the magnetic flux injection. because it can drive poloidal current without changing the current in the toroidal coil. In order to confirm the principle, a new device, TPX-R3, was constructed. The device is equipped with a pair of m=1=0 coils, which are directly wound on the discharge tube and are orthogonal to each other. In order to generate a transverse rotating magnetic field, high-frequency currents with phase difference of pi /2 are supplied to each coil from capacitor banks. Standard RFP plasmas produced on TPX-R3 show sawtooth oscillations on various diagnostics.
机译:仅提供摘要表格。许多实验表明,由MHD活动引起的发电机作用在反向场收缩(RFP)等离子体中产生环形磁通量,并且伴随着等离子体限制的降低。因此,如果可以通过其他方式从外部注入环形磁通,则有望极大地改善该限制。横向旋转磁场是用于实现磁通量注入的候选之一。因为它可以驱动极向电流而不改变环形线圈中的电流。为了确认该原理,构建了新设备TPX-R3。该设备配备有一对m = 1 / n = 0线圈,它们直接缠绕在放电管上并且彼此正交。为了产生横向旋转磁场,从电容器组向每个线圈供应具有π/ 2的相位差的高频电流。 TPX-R3上生产的标准RFP等离子体在各种诊断程序中均显示出锯齿状振荡。

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