An experimental study of magnetic islands as Hamiltonian systems

R. Gandy, G. Hartwell, J. Hanson, S. Knowlton, H. Lin
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引用次数: 4

Abstract

Magnetic islands play an important role in determining plasma transport in toroidal magnetic confinement systems. The magnetic error fields and the associated islands can be theoretically described by a Hamiltonian approach. Experiments have been conducted on the Compact Auburn Torsatron [Fusion Technol. 18, 281 (1990)] to test the applicability and limits of the first‐order Hamiltonian theory to magnetic islands. A novel set of helical trim coils with the same spatial periodicity as an ι– = 1/2 magnetic island were used to create a perturbation field of variable magnitude and phase. Extensive experimental parametric studies of the magnetic island were conducted and compared with theory. It was found that the first‐order Hamiltonian theory is applicable for the complete range of experimental error fields.
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磁岛作为哈密顿系统的实验研究
磁岛在环形磁约束系统中对等离子体输运起着重要的决定作用。磁误差场和相关岛可以用哈密顿方法在理论上描述。在Compact Auburn Torsatron上进行了实验[Fusion technology . 18,281(1990)],以测试一阶哈密顿理论对磁岛的适用性和局限性。利用一组与1/2磁岛具有相同空间周期性的螺旋微调线圈来产生可变大小和相位的微扰场。对磁岛进行了大量的实验参数研究,并与理论进行了比较。结果表明,一阶哈密顿理论适用于实验误差场的全部范围。
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