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DIAGNOSTICS FOR THE KSTAR: KOREA SUPER-CONDUCTING TOKAMAK ADVANCED RESEARCH

机译:KSTAR的诊断:韩国超级导演TOKAMAK高级研究

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The KSTAR (Korea Super-conducting Tokamak Advanced Research) is aiming at the successful performance of the advanced tokamak (AT) mode and steady state operations. Though the AT mode can be realized in present tokamaks, it has usually been achieved as a transient phenomenon, shorter than the characteristic time scales. The KSTAR, however, will pursue steady state AT operation with fully super-conducting magnets and with state-of-the-art plasma control schemes. After achieving the first plasma milestone, the KSTAR operations for testing AT modes will be performed in order according to the availability of heating and other ancillary systems. KSTAR diagnostics are also installed in a phased manner, prioritized by the order of the operation scenarios, the availability of related technologies and the required time for development. The whole diagnostics set is classified in three categories as the Machine and Control, Core, and Divertor and Edge. The whole set is also listed in three phases by the order of development as Basic, Baseline and Mission-oriented. The Basic set consists of a minimal diagnostics for the Day One plasma operation of KSTAR. Most of magnetic diagnostics and relatively simple diagnostic sets for measuring basic parameters such as electron temperature and density, ion temperature, impurity behavior, neutral pressure, and run-away electron detection are included. Monitoring TV viewing inside vacuum vessel in the visible and IR region will also be included in this phase of development. As other ancillary systems are installed to KSTAR, relevant diagnostics is going to be added in parallel. Thus for the Baseline campaign when important physics experiments will be performed with intensive heating capabilities with a divertor configuration, profile measurements of important parameters should be provided. Baseline diagnostics are prepared for this purpose.
机译:KSTAR(韩国超级导演TOKAMAK高级研究)旨在成功表现先进的TOKAMAK(AT)模式和稳态运营。虽然可以在目前的Tokamak中实现AT模式,但它通常已经实现为瞬态现象,而不是特征时间尺度短。然而,KSTAR将在使用完全超导磁铁和最先进的等离子体控制方案的操作中进行稳态。在实现第一个等离子体里程碑之后,根据加热和其他辅助系统的可用性,将按顺序进行用于测试的KSTAR操作。 KSTAR诊断也以分阶段的方式安装,优先顺序由操作场景,相关技术的可用性以及所需的开发时间。整个诊断集分为三类作为机器和控制,核心和偏移器和边缘。整个集合也按照发展顺序列为三个阶段,作为基本,基线和任务导向。基本集由KSTAR的一天的诊断最小诊断。包括用于测量诸如电子温度和密度,离子温度,杂质行为,中性压力和耗尽电子检测的基本参数的大多数磁性诊断和相对简单的诊断组。在可见的和IR区域中监测电视在真空容器内部将包括在此开发阶段。随着其他辅助系统安装到KSTAR,将并行添加相关的诊断。因此,对于基线运动,当重要物理实验将用偏移器配置进行密集的加热能力时,应提供重要参数的轮廓测量。为此目的准备基线诊断。

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