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The influence of rotation on the beta(N) threshold for the 2/1 neoclassical tearing mode in DIII-D

机译:旋转对DIII-D中2/1新古典撕裂模式的beta(N)阈值的影响

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摘要

Utilizing a capability to vary neutral beam torque injection in the DIII-D [J. L. Luxon, Nucl. Fusion 42, 614 (2002)] tokamak, m=2/1 neoclassical tearing mode onset thresholds are found to fall by about one unit in beta(N), from similar to 3 to similar to 2, in ITER-like sawtoothing high-energy confinement modes of plasma operation [R. Aymar, Plasma Phys. Control. Fusion 42, B385 (2000)] as "co-injected" torque and rotation are reduced. However, increasing levels of torque and rotation in the counter-direction do not lead to corresponding rises in beta(N) thresholds. More encouragingly, error field sensitivity is not found to increase in low rotation plasmas, as might be expected theoretically. These results pose an interesting physics problem, as well as raising concern for future devices such as ITER. Further analyses have explored possible physics origins of the behavior. They suggest many of the usual effects expected to lead to a rotation dependence (mode coupling, wall drag, ion polarization currents) are not significant, with instead models that depend on the size and sign of rotation shear playing a role. Onset behavior suggests the mode is close to being intrinsically (classically) unstable when it appears, and a conceptual explanation is offered for a mechanism by which rotation shear feeds into the onset process through changes to the classical tearing stability index, Delta('). Further parameter extensions and studies are desirable to fully resolve the underlying physics of this interesting process. (C) 2008 American Institute of Physics.
机译:在DIII-D中利用改变中性束扭矩注入的能力[J. L.Luxon,Nucl。 Fusion 42,614(2002)]托卡马克,m / n = 2/1新古典主义撕裂模式的起始阈值在类似ITER的锯齿状结构中,在beta(N)中下降了大约一个单位,从相似的3降低到相似的2。等离子操作的高能限制模式[R.艾玛(Aymar),等离子物理学。控制。 [Fusion 42,B385(2000)]减小了“共同注入”的转矩和旋转。但是,反方向上扭矩和旋转水平的增加不会导致beta(N)阈值相应增加。更令人鼓舞的是,在低旋转等离子体中,未发现误差场灵敏度增加,这在理论上是可以预期的。这些结果提出了一个有趣的物理问题,并引起了对ITER等未来设备的关注。进一步的分析已经探究了该行为的可能的物理起源。他们认为,预期导致旋转依赖性的许多常见影响(模式耦合,壁阻力,离子极化电流)并不重要,取而代之的是取决于旋转剪切的大小和符号的模型。起爆行为表明该模式在出现时几乎是固有的(经典)不稳定,并且提供了一种机制的解释,通过该机制,旋转剪切力通过更改经典的撕裂稳定性指数Delta(')进入起爆过程。需要进一步的参数扩展和研究以完全解决此有趣过程的基础物理问题。 (C)2008美国物理研究所。

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