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Study of detachment in future ASDEX Upgrade alternative divertor configurations by means of EMC3-EIRENE

机译:通过EMC3-烯烯来研究未来ASDEX升级替代方向性配置的脱离

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ASDEX Upgrade is preparing a hardware modification of its upper divertor in order to study alternative divertor configurations, like the X-divertor (XD) and the snowflake divertor (SF), that are discussed as a possible solution for the power exhaust problem. Experiments characterizing the current upper divertor in single-null (SN) configuration before and during detachment were carried out recently and interpreted by EMC3-EIRENE (Lunt et?al., 2020) now including volumetric recombination. In continuation of these studies we here report on further simulations with this code extrapolating these conditions to the future upper divertor. For the same transport parameters, input power and upstream separatrix density for which the outer target (OT) of the SN is attached, the XD and SF show significant detachment at the OT accompanied by a reduction of the parallel heat flux by a factor of more than five. Despite the shallow field line incidence angles in the XD configuration the intrinsic 3D error fields from the current feeds only cause toroidal variations of the power fluxes of the order of 10%. With a hypothetical misalignment of the divertor coils by 3?cm substantial asymmetries in the power deposition profile are found, however, even those vanish when going to detached plasma conditions. In order to fully detach the plasma at the OT in the SF configuration impurities, here in the form of nitrogen, need to be puffed directly into the region of the secondary X-point in the simulation.
机译:ASDEX升级正在准备其上部转移器的硬件修改,以便研究替代的偏移器配置,例如X转移器(XD)和雪花偏移器(SF),这些配置是作为电力排气问题的可能解决方案。在最近和在脱离之前和在分离之前和在分离之前和在脱离之前和在脱离之前和在脱离期间的实验进行的实验,并由EMC3-烯烯(Lunt et?Al,2020)解释,现在包括体积重组。在继续这些研究中,我们在此报告进一步模拟与此代码外推到未来的上部偏转器。对于相同的传输参数,附着SN的外目标(OT)的输入功率和上游分离密度,XD和SF在OT上显示出显着的脱离,伴随着并行热通量的减少量更多超过五。尽管XD配置中的浅场线入射角,所以来自电流馈送的内在3D误差场仅导致电量的环形变化量为10%。发现了转移器线圈的假设未对准3?CM在电力沉积曲线中的显着不对称,也被发现,即使在进入分离的等离子体条件时也消失。为了在SF配置杂质中完全分离血浆,这里以氮的形式,需要直接膨胀到模拟中的次级X点的区域中。

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