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Development of KSTAR ECE imaging system for measurement of temperature fluctuations and edge density fluctuation

机译:开发用于测量温度波动和边缘密度波动的KSTAR ECE成像系统

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摘要

The ECE imaging (ECEI) diagnostic tested on the TEXTOR tokamak revealed the sawtooth reconnection physics in unprecedented detail, including the first observation of high-field-side crash and collective heat transport [H. K. Park, N. C. Luhmann, Jr., A. J. H. Donne et al., Phys. Rev. Lett. 96, 195003 (2006)]. An improved ECEI system capable of visualizing both high-and low-field sides simultaneously with considerably better spatial coverage has been developed for the KSTAR tokamak in order to capture the full picture of core MHD dynamics. Direct 2D imaging of other MHD phenomena such as tearing modes, edge localized modes, and even Alfven eigenmodes is expected to be feasible. Use of ECE images of the optically thin edge region to recover 2D electron density changes during L/H mode transitions is also envisioned, providing powerful information about the underlying physics. The influence of density fluctuations on optically thin ECE is discussed. (C) 2010 American Institute of Physics. [doi: 10.1063/1.3483209]
机译:在TEXTOR托卡马克上进行的ECE成像(ECEI)诊断测试揭示了锯齿形重新连接的物理学史无前例的细节,包括首次观察到高场侧碰撞和集体传热[H. K.Park,N.C. Luhmann,Jr.,A.J.H.Donne等,Phys。牧师96,195003(2006)]。为了捕获核心MHD动力学的全貌,已经开发了一种改进的ECEI系统,该系统能够同时可视化高场和低场侧并具有相当好的空间覆盖率。其他MHD现象的直接2D成像,例如撕裂模式,边缘局部模式,甚至Alfven本征模式,都是可行的。还设想了使用光学薄边缘区域的ECE图像来恢复L / H模式转换期间的2D电子密度变化,从而提供了有关基础物理学的有力信息。讨论了密度波动对光学薄ECE的影响。 (C)2010美国物理研究所。 [doi:10.1063 / 1.3483209]

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