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Commissioning of vacuum pumping devices of the second KSTAR neutral beam injection system

机译:第二台KSTAR中性束注入系统的真空抽气装置调试

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The Korea Superconducting Tokamak Advanced Research (KSTAR) Neutral Beam Injection (NBI) system is designed to provide additional plasma heating and current drive for high performance and long pulse operation of the KSTAR tokamak using two co-current beam injection systems. Each neutral beam injection system is designed to consist of three ion sources, and each ion source is designed to deliver more than 2.0 MW of deuterium neutral beam power for the 100 keV beam energy. Consequently, the final goal of the KSTAR NBI system is to inject 12 MW of deuterium beam power for the long pulse operation of the KSTAR. The first NBI (NBI-1) has been installed since 2010, which provides a 100 keV deuterium neutral beam of 6.0 MW maximum using three ion sources.The second NBI (NBI-2) also consist with three ion sources which arranged vertically with tangency radius of 1.56 m to provide balanced core heating and off-axis current drive will be constructed until 2019. An ion source will be commissioned 2018 KSTAR campaign, and the other two ion source will be applied to KSTAR from 2019. As the vacuum condition can substantially affect the beam performance, the vacuum pumping system for NBI-2 has been carefully designed. The cryopumps for NBI-2 were designed and the overall vacuum pumping system of NBI-2 was installed including turbo pumps, mechanical booster-pumps, and dry-pumps. In this paper, the detailed engineering design, fabrication, and installation results of large condensation cryopumps and vacuum sub-components were explained. The effective pumping speed and pressure distribution will be evaluated through the commissioning of the vacuum pumping system for NBI-2. Finally, we present the operation procedures of the NBI-2 vacuum pumping system.
机译:韩国超导托卡马克先进研究(KSTAR)中性束注入(NBI)系统旨在通过使用两个并流束注入系统为KSTAR托卡马克提供高性能和长脉冲操作的附加等离子体加热和电流驱动。每个中性束注入系统设计为由三个离子源组成,并且每个离子源设计为以100 keV束能量提供超过2.0 MW的氘中性束功率。因此,KSTAR NBI系统的最终目标是为KSTAR的长脉冲操作注入12 MW氘束功率。第一个NBI(NBI-1)自2010年以来已安装,使用三个离子源可提供最大6.0 MW的100 keV氘中性束;第二个NBI(NBI-2)还包括三个相切垂直排列的离子源半径为1.56 m,以提供平衡的铁芯加热和离轴电流驱动,直到2019年。离子源将在2018年KSTAR战役中投入使用,另外两个离子源将从2019年开始应用于KSTAR。 NBI-2真空泵系统经过精心设计,大大影响了光束性能。设计了NBI-2的低温泵,并安装了NBI-2的整个真空泵系统,包括涡轮泵,机械增压泵和干式泵。本文介绍了大型冷凝式低温泵和真空分组件的详细工程设计,制造和安装结果。有效抽气速度和压力分布将通过NBI-2真空抽气系统的调试来评估。最后,我们介绍了NBI-2真空泵系统的操作程序。

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