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首页> 外文期刊>Journal of the Korean Physical Society >Simulation Study of the Disruption Load in KSTAR Device with a Modified Passive Stabilizer
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Simulation Study of the Disruption Load in KSTAR Device with a Modified Passive Stabilizer

机译:改进型无源稳定器在KSTAR装置中破坏负荷的仿真研究

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摘要

The structure of the passive stabilizer system in KSTAR (Korea Superconducting Tokamak Advanced Research) device was recently modified mainly in relation to the upgrade of the vertical position control system. Corresponding to this design change in one of the plasma facing components, a simulation study was performed to see how the disruption load and the characteristics varied. During the vertical drift phase, the vertical growth rate is shown to be increased by about 8 times while the vertical force on the passive stabilizer is reduced by about 5 times for the new passive stabilizer compared with the old one. Meanwhile, during the thermal and current quench phase, relatively small differences were observed in the disruption load and characteristics between the two models.
机译:最近,主要针对垂直位置控制系统的升级,对KSTAR(韩国超导托卡马克高级研究)装置中的被动稳定器系统的结构进行了修改。对应于面对等离子体的组件之一的这种设计更改,进行了仿真研究,以查看破坏载荷和特性如何变化。在垂直漂移阶段,与旧的相比,新的被动稳定器的垂直增长率显示为增加了大约8倍,而被动稳定器上的垂直力减小了大约5倍。同时,在热淬火和电流淬火阶段,两个模型之间的破坏负荷和特性存在相对较小的差异。

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