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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >FIELD REVERSAL EFFECTS ON PARTICLE AND HEAT FLUXES IN DIVERTOR ON JT-60U
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FIELD REVERSAL EFFECTS ON PARTICLE AND HEAT FLUXES IN DIVERTOR ON JT-60U

机译:JT-60U的分流器中的颗粒物和热通量的场反转效应

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摘要

The directions of both the toroidal field and the plasma current are reversed (ion del B drift direction away from the divertor target) in order to reduce an asymmetry of the heat flux distribution at the divertor plates during L-mode discharges on JT-60U. The profiles of electron temperature and density at the divertor target are found to be more symmetric for the reversed field. Reversing the held, particle and impurity recycling is changed from an inboard-enhanced to an outboard-enhanced one, whereby the global particle confinement time remains the same. A symmetric heat load profile changes to an outboard-dominated one with increasing density (n) over bar(e) and safety factor q(eff) of the main plasma for the ion del B drift direction towards the X-point. While an inboard-dominated heat load profile changes to a symmetric one when the ion del B drift direction is away from the X-point. This redistribution of the heat load profile to the divertor target is not explained by the contribution of the radiation loss to the total power balance. [References: 8]
机译:环形场和等离子流的方向都要反向(离子del B偏离偏滤器目标的漂移方向),以减少在JT-60U上进行L模式放电时偏滤器板上热通量分布的不对称性。发现对于反向场,在发散器目标处的电子温度和密度的分布更加对称。将保留的,颗粒和杂质的回收过程从内侧增强转换为外侧增强,从而使总体颗粒限制时间保持不变。对于离子del B朝X点的漂移方向,对称的热负荷曲线随着bar(e)的密度(n)和主等离子体安全系数q(eff)的增加而变化为外侧主导的曲线。当离子del B的漂移方向远离X点时,内侧占主导地位的热负荷曲线将变为对称曲线。热负荷曲线到偏滤器目标的这种重新分配没有通过辐射损耗对总功率平衡的贡献来解释。 [参考:8]

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