{"title":"Simulations of beta-induced Alfvén eigenmode mitigation by off-axis energetic particle distribution","authors":"Sizhe Duan, Xiang Zhu, Huishan Cai","doi":"10.1088/1741-4326/ad41c4","DOIUrl":null,"url":null,"abstract":"\n The effect of different off-axis energetic particle (EP) slowing down distribution on beta-induced Alfven eigenmode (BAE), driven by the on-axis EP distribution, is systematically studied using kinetic-magnetohydrodynamic code M3D-K. The aim is to analyze the optimal parameter region for controlling AEs via varying EP distribution parameters. The simulation results reveal that by modifying the gradients of the EP distribution, the off-axis EP can further destabilize or mitigate the on-axis EP driven BAE, depending on the off-axis EP distribution's parameters: deposition profile, EP beta, pitch angle, injection velocity and direction. When the off-axis EP is deposited outside the mode center, and its injection velocity is sufficiently large to satisfy the resonance with BAE, the stabilization of BAE is achieved. This stabilizing effect is directly proportional to the off-axis EP beta, while excessive off-axis EP beta can trigger a new EP-driven instability located outside the BAE. Furthermore, to achieve a stronger stabilizing effect, the pitch angle distribution and velocity direction of the off-axis EP should be close to those of the on-axis EP. For instance, compared to the counter-passing off-axis EP, the co-passing off-axis EP can lead to a more effective mitigation of the BAE driven by the co-passing on-axis EP.","PeriodicalId":503481,"journal":{"name":"Nuclear Fusion","volume":"24 3","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-04-23","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Nuclear Fusion","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1088/1741-4326/ad41c4","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
The effect of different off-axis energetic particle (EP) slowing down distribution on beta-induced Alfven eigenmode (BAE), driven by the on-axis EP distribution, is systematically studied using kinetic-magnetohydrodynamic code M3D-K. The aim is to analyze the optimal parameter region for controlling AEs via varying EP distribution parameters. The simulation results reveal that by modifying the gradients of the EP distribution, the off-axis EP can further destabilize or mitigate the on-axis EP driven BAE, depending on the off-axis EP distribution's parameters: deposition profile, EP beta, pitch angle, injection velocity and direction. When the off-axis EP is deposited outside the mode center, and its injection velocity is sufficiently large to satisfy the resonance with BAE, the stabilization of BAE is achieved. This stabilizing effect is directly proportional to the off-axis EP beta, while excessive off-axis EP beta can trigger a new EP-driven instability located outside the BAE. Furthermore, to achieve a stronger stabilizing effect, the pitch angle distribution and velocity direction of the off-axis EP should be close to those of the on-axis EP. For instance, compared to the counter-passing off-axis EP, the co-passing off-axis EP can lead to a more effective mitigation of the BAE driven by the co-passing on-axis EP.
利用动力学-磁流体动力学代码 M3D-K,系统地研究了不同的离轴高能粒子(EP)减速分布对由轴向 EP 分布驱动的贝塔诱导阿尔芬特征模(BAE)的影响。目的是分析通过改变 EP 分布参数来控制 AE 的最佳参数区域。模拟结果表明,通过改变 EP 分布的梯度,轴外 EP 可以进一步破坏或减轻轴内 EP 驱动的 BAE,具体取决于轴外 EP 分布的参数:沉积剖面、EP β、俯仰角、注入速度和方向。当离轴 EP 沉积在模式中心之外,并且其注入速度足够大以满足与 BAE 的共振时,就会实现 BAE 的稳定。这种稳定效果与离轴 EP beta 值成正比,而过大的离轴 EP beta 值会引发位于 BAE 外部的新的 EP 驱动不稳定。此外,为了达到更强的稳定效果,离轴 EP 的俯仰角分布和速度方向应与轴上 EP 的俯仰角分布和速度方向接近。例如,与反通过的离轴 EP 相比,共通过的离轴 EP 可以更有效地缓解由共通过的轴上 EP 驱动的 BAE。