首页|Development of Dα band symmetrical visible optical diagnostic for boundary reconstruction on EAST tokamak

Development of Dα band symmetrical visible optical diagnostic for boundary reconstruction on EAST tokamak

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To investigate the potential of utilizing visible spectral imaging for controlling the plasma boundary shape during stable operation of plasma in future tokamak,a Da band symmetric visible light diagnostic system was designed and implemented on the Experimental Advanced Superconducting Tokamak(EAST).This system leverages two symmetric optics for joint plasma imaging.The optical system exhibits a spatial resolution less than 2 mm at the poloidal cross-section,distortion within the field of view below 10%,and relative illumination of 91%.The high-quality images obtained enable clear observation of both the plasma boundary position and the characteristics of components within the vacuum vessel.Following system calibration and coordinate transformation,the image coordinate boundary features are mapped to the tokamak coordinate system.Utilizing this system,the plasma boundary was reconstructed,and the resulting representation showed alignment with the EFIT(Equilibrium Fitting)results.This underscores the system's superior performance in boundary reconstruction applications and provides a diagnostic foundation for boundary shape control based on visible spectral imaging.

visible optical diagnosticplasmaboundary reconstructionEAST

陈明、沈飊、郭笔豪、陈大龙、蔡福瑞、肖炳甲、Shinichiro KADO

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Hefei Institutes of Physical Science,Chinese Academy of Sciences,Hefei 230031,People's Republic of China

Science Island Branch,Graduate School of University of Science and Technology of China,Hefei 230026,People's Republic of China

Graduate School of Energy Science,Kyoto University,Uji 611-0011,Japan

Institute of Advanced Energy,Kyoto University,Uji 611-0011,Japan

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National MCF Energy Research and Development Program of ChinaNational MCF Energy Research and Development Program of China国家自然科学基金国家自然科学基金

2018YFE03021032018YFE03021001220519511975277

2024

等离子体科学和技术(英文版)
中国科学院合肥物质科学研究所 中国力学学会

等离子体科学和技术(英文版)

EI
影响因子:0.297
ISSN:1009-0630
年,卷(期):2024.26(2)
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