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Deployment of multiple shattered pellet injection systems in KSTAR

机译:在KSTAR中部署多种破碎的颗粒注入系统

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Shattered pellet injection is of the most attractive way to mitigate the plasma disruption in fusion research facilities up to now. DIII-D has already utilized it and achieved very positive results. ITER has decided to adopt this technology for the DMS (disruption mitigation system) for PFPO-1 (Pre-Fusion Power Operation phase 1). The validation between simulation code and experiment, and continuous engineering development need to be carried out to meet the DMS's requirement and reliability.KSTAR (Korea Superconducting Tokamak Advanced Research) is a possible candidate to test the urgent issues of plasma disruption for ITER. KSTAR can install two injectors in toroidal opposite positions. For this work, ORNL (Oak Ridge National Laboratory) will provide the two injectors, the shatter tubes and auxiliary systems. NFRI (National Fusion Research Institute) is preparing the infrastructure of a pumping system, control and data acquisition system, and arranging the location of diagnostic and the heating systems. This presentation describes the basic requirements and the engineering challenges to be solved for successful deployment and operation of multiple SPI injectors in 2019.
机译:破碎的颗粒注入是减轻融合研究设施中的等离子体中断最有吸引力的方法。 DIII-D已经使用它并实现了非常积极的结果。 ITER已决定采用该技术为PFPO-1(预融合电力运行阶段1)进行DMS(中断缓解系统)。仿真码和实验之间的验证以及连续工程开发需要进行,以满足DMS的要求和可靠性.KSTAR(韩国超导Tokamak高级研究)是测试浸泡师的迫切问题的可能候选者。 KSTAR可以在环形相对位置安装两个注射器。对于这项工作,Ornl(橡木岭国家实验室)将提供两个注射器,破碎管和辅助系统。 NFRI(国家融合研究所)正在准备泵送系统,控制和数据采集系统的基础设施,并安排诊断和加热系统的位置。本演示文稿描述了2019年成功部署和运行多个SPI注射器的基本要求和工程挑战。

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