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APS -59th Annual Meeting of the APS Division of Plasma Physics - Event - Incorporating pedestals with feedback into sandpile models for fusion plasmas

机译:APS-APS等离子体物理部第59届年会-活动-将带有反馈的基座整合到用于融合等离子体的沙堆模型中

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The pedestal in a H-mode fusion plasma is thought to result from shear flow induced by a radial electric field. The size of the pedestal relates to the Larmor radius of the ions, and in turn to their temperature. This creates a feedback mechanism within the plasma as temperature changes cause changes in pedestal size. We present here modifications of a sandpile model (S C Chapman, Phys. Rev. E 62, 1905 (2000)) in which we incorporate feedback effects. A key parameter, $L_f$, defines the distance over which the sandpile can interact with itself, analogous to shear flow in the plasma. Decreasing the value of $L_f$ increases the energy in the sandpile. By changing $L_f$ at the edge of the sandpile over a distance related to the energy of the system, we produce a pedestal, and introduce an element of feedback analogous to changes in the shear flow in a fusion plasma. We also show other variants of the model which produce pedestals without introducing feedback. We observe that maximum waiting times between mass loss events (MLEs), and maximum MLE sizes, grow with pedestal size, consistent with the behaviour of ELMs in a fusion plasma, and that this occurs only in the presence of feedback in the model.
机译:H型聚变等离子体中的基座被认为是由径向电场引起的剪切流产生的。基座的尺寸与离子的拉莫尔半径有关,而与离子的温度有关。当温度变化引起基座尺寸变化时,这将在等离子体内创建反馈机制。我们在这里介绍了沙堆模型的修改(S Chapman,Phys。Rev. E 62,1905(2000)),其中我们纳入了反馈效应。关键参数$ L_f $定义了沙堆可以与自身相互作用的距离,类似于等离子中的剪切流。减小$ L_f $的值会增加沙堆中的能量。通过在与系统能量相关的距离上更改沙堆边缘的$ L_f $,我们产生了一个基座,并引入了类似于聚变等离子体中剪切流变化的反馈元素。我们还显示了该模型的其他变体,这些变体在不引入反馈的情况下产生基座。我们观察到质量损失事件(MLE)之间的最大等待时间和最大MLE大小随基座大小而增长,这与融合等离子体中ELM的行为一致,并且仅在模型中存在反馈的情况下才会发生这种情况。

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