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Feedback stabilization of resistive shell modes in a reversed field pinch

机译:反向场收缩中电阻壳模式的反馈稳定

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A reactor relevant reversed field pinch (RFP) must be capable of operating successfully when surrounded by a close-fitting resistive shell whose L/R time is much shorter than the pulse length. Resonant modes are largely unaffected by the shell resistivity, provided that the plasma rotation is maintained against the breaking effect of nonaxisymmetric eddy currents induced in the shell. This may require an auxiliary momentum source, such as a neutral beam injector. Nonresonant modes are largely unaffected by plasma rotation, and are expected to manifest themselves as nonrotating resistive shell modes growing on the L/R time of the shell. A general RFP equilibrium is subject to many simultaneously unstable resistive shell modes; the only viable control mechanism for such modes in a RFP reactor is active feedback. It is demonstrated than an N-fold toroidally symmetric arrangement of feedback coils, combined with a strictly linear feedback algorithm, is capable of simultaneously stabilizing all intrinsically unstable resistive shell modes over a wide range of different RFP equilibria. The number of coils in the toroidal direction N, at any given poloidal angle, must be greater than, or equal to, the range of toroidal mode numbers of the unstable resistive shell modes. However, this range is largely determined by the aspect-ratio of the device. The optimum coil configuration corresponds to one in which each feedback coil slightly overlaps its immediate neighbors in the toroidal direction. The critical current which must be driven around each feedback coils is, at most, a few percent of the equilibrium toroidal plasma current. The feedback scheme is robust to small deviations from pure N-fold toroidal symmetry or a pure linear response of the feedback circuits. (C) 1999 American Institute of Physics. [S1070-664X(99)02109-6]. [References: 29]
机译:与反应堆相关的反向场收缩(RFP),必须在其紧密配合的电阻壳(其L / R时间比脉冲长度短得多)包围的情况下才能成功运行。共振模态在很大程度上不受壳电阻率的影响,只要保持等离子体旋转以抵抗壳中感应的非轴对称涡流的破坏作用即可。这可能需要辅助动量源,例如中性束注入器。非共振模式在很大程度上不受等离子体旋转的影响,并有望表现为在外壳的L / R时间上增长的非旋转电阻壳模式。一般的RFP平衡会同时受到许多不稳定的电阻壳模式的影响。在RFP反应堆中,针对此类模式的唯一可行控制机制是主动反馈。它被证明是反馈线圈的N倍环形对称布置,结合严格的线性反馈算法,能够在各种不同的RFP平衡范围内同时稳定所有固有不稳定的电阻壳模式。在任何给定的极角下,在环形方向N上的线圈数必须大于或等于不稳定电阻壳模式的环形模式数的范围。但是,此范围很大程度上取决于设备的纵横比。最佳线圈配置对应于这样一种配置,其中每个反馈线圈在环形方向上略微重叠其直接相邻的线圈。必须在每个反馈线圈周围驱动的临界电流最多为平衡环形等离子体电流的百分之几。反馈方案对于与纯N倍环形对称性或反馈电路的纯线性响应的微小偏差具有鲁棒性。 (C)1999美国物理研究所。 [S1070-664X(99)02109-6]。 [参考:29]

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