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Open field equilibrium current and cross-field passing electrons as an initiator of a closed flux surface in EC-heated toroidal plasmas

机译:在EC加热的环形等离子体中,开放场平衡电流和穿过场的电子作为封闭通量表面的引发剂

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摘要

A model for the non-inductive initiation of a closed flux surface observed in electron cyclotron (EC) heated toroidal plasmas is presented. First, a pressure-driven equilibrium toroidal current develops under a weak external vertical field so as to counter balance the pressure-ballooning and current-hoop forces. When the self-field from the current almost cancels out the external vertical field, a forward energetic part of electrons in the velocity space begins to make cross-field passing (CFP) orbits. The CFP electrons are generated by the EC heating of bulk electrons and subsequent pitch-angle scattering, which is analyzed using the Fokker–Planck equation. They provide an additional current that closes the field lines. The model is examined for experiments in the small low aspect ratio device of LATE and in the large conventional device of JT-60U with a search for appropriate modes of EC heating. Simultaneous coincidence of the model with these two experiments is obtained in terms of microwave power and driven current. The results predict that initiation of a closed flux surface requires more and more EC power as the plasma major radius increases. In particular, careful injection of high N∥ EC waves is needed for large devices, both for initiation of a closed flux surface and for subsequent enlargement of the flux surface by the usual EC current drive onto the closed flux area.
机译:提出了在电子回旋加速器(EC)加热的环形等离子体中观察到的非感应式闭合通量表面的模型。首先,在弱的外部垂直场下会产生压力驱动的平衡环形电流,以抵消压力气球力和电流环力的平衡。当来自电流的自场几乎抵消了外部垂直场时,速度空间中电子的前向高能部分开始形成跨场通过(CFP)轨道。 CFP电子是通过体电子的EC加热和随后的俯仰角散射产生的,使用Fokker-Planck方程进行分析。它们提供了一个额外的电流来闭合磁力线。为寻找合适的EC加热模​​式,在LATE的小型低长宽比设备和JT-60U的大型常规设备中对模型进行了实验检验。在微波功率和驱动电流方面,该模型与这两个实验的同时一致性。结果预测,随着等离子体主半径的增加,封闭通量表面的启动需要越来越多的EC功率。特别是,对于大型器件,需要仔细注入高N∥EC波,既要启动闭合的磁通表面,又要通过通常的EC电流驱动将磁通表面扩大到闭合的磁通区域上。

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