Numerical simulations on loss of ICRF-heated NBI ions in EAST

C. Song, Ji Wang, Bin Wu, Lan Yin, Xueyu Gong, Baolong Hao, Yuqing Chen, Qian-hong Huang, Yijun Zhong, Yahong Xie, Yuanlai Xie
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Abstract

The loss of ICRF-heated NBI ions in EAST tokamak was numerically investigated by ORBIT code simulations. The effects of collisions and ripples on particle losses taken into account, and the distributions of fast ions generated by different beams in combination with ICRF heating were calculated using the TRANSP code. Results showed that ICRF waves altered the orbital distributions of beam ions, causing an increase in trapped ions and fast ion losses. Additionally, for co-current injected beams, perpendicular injection resulted in higher fast ion losses in synergistic heating than tangential injection. The study also found that the synergistic effect of collisions and ripples enhanced fast ion losses, which were highly localized and generated a maximum heat load of 0.165 MW/m2 on the first wall. However, conducting synergy heating experiments at high plasma currents and low effective ion charge numbers can significantly reduce the loss of fast ions.
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关于 EAST 中经 ICRF 加热的 NBI 离子损失的数值模拟
通过ORBIT代码模拟,对EAST托卡马克中ICRF加热的NBI离子的损耗进行了数值研究。考虑了碰撞和波纹对粒子损耗的影响,并使用TRANSP代码计算了不同束流结合ICRF加热产生的快离子的分布。结果表明,ICRF 波改变了束离子的轨道分布,导致截留离子和快离子损耗增加。此外,对于同向注入的束流,垂直注入比切向注入导致协同加热的快离子损耗更高。研究还发现,碰撞和波纹的协同效应增强了快离子损耗,这种损耗高度局部化,在第一壁上产生的最大热负荷为 0.165 MW/m2。不过,在高等离子体电流和低有效离子电荷数条件下进行协同加热实验可以显著减少快离子的损失。
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