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Parameter dependence of ELM loss reduction by magnetic perturbations at low pedestal density and collisionality in ASDEX upgrade

机译:在ASDEX升级中低基座密度和碰撞性磁性扰动降低ELM损耗的参数依赖性

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ELM mitigation by magnetic perturbations is studied at low pedestal collisionalities down to ITER-like values (V-e*(,PED) = 0.1) in ASDEX Upgrade. A comprehensive database of ELM energy losses for varying plasma density, heating power, edge safety factor and magnetic perturbation structure has been assembled to investigate parameter dependencies of ELM mitigation. It is found that magnetic perturbations with a toroidal mode number n = 2 can reduce the ELM energy loss normalized to the energy stored in the plasma pedestal from about 30% to less than 5%, i.e. by a factor of six, below an electron pedestal collisionality of V-e*(,PED) = 0.4. At this level of ELM mitigation a significant reduction of the pedestal pressure and, therefore, global plasma confinement occurs. This pedestal pressure reduction is mostly due to a reduction of plasma density, the so-called 'pump-out' effect. Refueling by neutral beams and in particular by pellet injection is possible and can re-establish confinement, however, the ELM energy loss increases as well with increasing density.
机译:通过磁性扰动的ELM缓解在低基座互连下,在ASDEX升级中,在低基座集合下降到ITER样值(V-E *(,PED)= 0.1)。已经组装了用于不同等离子体密度,加热功率,边缘安全系数和磁性扰动结构的ELM能量损失的综合数据库,以研究ELM缓解的参数依赖性。发现具有环形模式n = 2的磁性扰动可以将归一化的ELM能量损失降低到储存在等离子体基座中的能量,从约30%到小于5%,即六倍,在电子基座下方Ve *(,ped)= 0.4的收集性。在这种级别的ELM缓解基座压力的显着降低,因此发生了全局血浆限制。该基座减压主要是由于等离子体密度的降低,所谓的“泵出”效果。通过中性梁和特别是通过颗粒喷射进行加油,并且可以重新建立限制,但是,ELM能量损失也随着密度的增加而增加。

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