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Experimental results of multiple shattered pellet injection systems in KSTAR

机译:KSTAR多次破碎颗粒注入系统的实验结果

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摘要

Shattered pellet injection (SPI) is the technology chosen for the ITER Disruption Mitigation System and is explored at several fusion research devices, like DIII-D and JET and J-TEXT. The ITER disruption mitigation strategy relies on multiple injections to achieve RE (runaway electron) avoidance with optimum TQ (thermal quench), CQ (current quench) durations to adequately reduce wall loads. To demonstrate the feasibility of the multiple injection and to extrapolate to ITER, experiments with two identical injectors toroidally opposite to each other are needed urgently.KSTAR (Korea Superconducting Tokamak Advanced Research) can be a unique testbed to study the plasma disruption mitigation for ITER. KSTAR has installed two identical injectors in 180 degrees of toroidal opposite positions in 2019. For this system, ORNL (Oak Ridge National Laboratory) provided the two injectors, the shatter tubes, and auxiliary systems. NFRI (National Fusion Research Institute) provided the infrastructure of a vacuum pumping system, control & data acquisition system, and installed additional diagnostic systems for SPI in collaboration with the ITER Organization. This paper describes the engineering achievements during installation on KSTAR and the initial results of single and multiple SPI experiments in the 2019 campaign.
机译:破碎的颗粒注入(SPI)是为迭代中断缓解系统选择的技术,并在几个融合研究装置中探讨,如DIII-D和JET和J-Text。 ITER中断缓解策略依赖于多次喷射来实现与最佳TQ(热骤冷),CQ(电流骤冷)持续时间来实现RE(失控电子)避免,以充分减少壁负荷。为了证明多次注射的可行性和外推到浸泡,需要急需彼此相对的两个相同的喷射器的实验.KSTAR(韩国超导TOKAMAK高级研究)可以是一个独特的试验台,用于研究艾特的等离子体中断缓解缓解。 KSTAR在2019年安装了两个环形相对位置的两个相同的注射器。对于该系统,Ornl(橡木岭国家实验室)提供了两个喷射器,破碎管和辅助系统。 NFRI(国家融合研究所)提供了真空泵系统,控制和数据采集系统的基础设施,以及与ITER组织合作的SPI安装了额外的诊断系统。本文介绍了在KSTAR安装过程中的工程成果以及2019年广告系列的单一和多个SPI实验的初始结果。

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