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Neutral beam stabilization of sawtooth oscillations in JET

机译:JET中锯齿波振荡的中性束稳定

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Recent experiments in the Joint European Torus (JET) have provided evidence of sawtooth stabilization by fast ions arising from deuterium neutral beam injection (NBI). A possible theoretical basis for the interpretation of the observed sawtooth period behaviour is investigated and predictions are compared with experimental results, using a sawtooth period model developed to predict the sawtooth period in the International Thermonuclear Experimental Reactor (ITER). Unlike the case of ion cyclotron resonance heating, a detailed comparison between theory and experiment for NBI has not yet been made. In the model employed in this paper, a beam ion contribution to the internal kink potential energy has been incorporated, using a simple analytical expression valid in the limit of isotropic fast particles. This analytical expression has been found to compare well with detailed calculations performed with a hybrid kinetic/MHD code NOVA-K, using fast particle distribution functions computed with a plasma analysis code TRANSP. The beam ion contribution has been implemented in a transport code PRETOR and a few representative JET discharges have been analysed and modelled. The beam ion term is found to be sufficiently stabilizing to produce simulated sawtooth periods in agreement with the experimental results. Sawtooth periods computed without taking this term into account are much shorter than the measured periods. The model indicates that sawteeth are triggered in these JET discharges by excitation of the internal kink in the semi-collisional ion-kinetic regime: this was found by previous authors to be the sawtooth trigger most likely to be relevant to ITER. The role of beam ions in determining the sawtooth period in JET is thus found to be similar to the predicted role of alpha-particles in ITER. [References: 39]
机译:最近在欧洲联合圆环(JET)中进行的实验提供了由氘中性束注入(NBI)引起的快速离子稳定锯齿的证据。使用为国际热核实验反应堆(ITER)中预测的锯齿周期而开发的锯齿周期模型,对解释观察到的锯齿周期行为的可能理论基础进行了研究,并将预测结果与实验结果进行了比较。与离子回旋共振加热的情况不同,尚未对NBI的理论和实验进行详细比较。在本文采用的模型中,已使用在各向同性快粒子范围内有效的简单解析表达式,将束离子对内部扭结势能的贡献纳入了计算。已经发现该解析表达式与使用混合动力学/ MHD编码NOVA-K进行的详细计算可以很好地进行比较,使用由血浆分析编码TRANSP计算的快速粒子分布函数。束离子贡献已在传输代码PRETOR中实现,并且对一些代表性的JET放电进行了分析和建模。发现离子束项足够稳定,可以产生与实验结果一致的模拟锯齿周期。不考虑该术语而计算的锯齿周期比测量的周期短得多。该模型表明,在这些JET放电中,锯齿是由半碰撞离子动力学机制中的内部扭结激发而触发的:以前的作者发现这是最可能与ITER相关的锯齿触发。因此,发现束离子在确定JET中的锯齿周期中的作用与ITER中α粒子的预测作用相似。 [参考:39]

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