Design of ITER divertor VUV spectrometer and prototype test at KSTAR tokamak

被引:9
|
作者
Seon, Changrae [1 ]
Hong, Joohwan [2 ]
Song, Inwoo [2 ]
Jang, Juhyeok [2 ]
Lee, Hyeonyong [2 ]
An, Younghwa [1 ]
Kim, Bosung [3 ]
Jeon, Taemin [2 ]
Park, Jaesun [2 ]
Choe, Wonho [2 ]
Lee, Hyeongon [1 ]
Pak, Sunil [1 ]
Cheon, MunSeong [1 ]
Choi, Jihyeon [1 ]
Kim, Hyeonseok [1 ]
Biel, Wolfgang [4 ]
Bernascolle, Philippe [5 ]
Barnsley, Robin [5 ]
O'Mullane, Martin [6 ]
机构
[1] Natl Fus Res Inst, Gwahangno 169-148, Daejeon, South Korea
[2] Korea Adv Inst Sci & Technol, Daehak Ro,291, Daejeon, South Korea
[3] Ajou Univ, Dept Energy Syst Res, Suwon 443749, South Korea
[4] Forschungszentrum Julich, EURATOM Assoc, Trilateral Euregio Cluster, Inst Plasmaphys, D-52425 Julich, Germany
[5] ITER Org, Route Vinon Sur Verdon CS 90 046, St Paul Les Durance, France
[6] Univ Strathclyde, Dept Phys SUPA, Glasgow G4 ONG, Lanark, Scotland
来源
EUROPEAN PHYSICAL JOURNAL D | 2017年 / 71卷 / 12期
基金
新加坡国家研究基金会;
关键词
VACUUM-ULTRAVIOLET; X-RAY; SPECTROSCOPY; RESOLUTION; DETECTOR; RANGE;
D O I
10.1140/epjd/e2017-70825-3
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Design and development of the ITER divertor VUV spectrometer have been performed from the year 1998, and it is planned to be installed in the year 2027. Currently, the design of the ITER divertor VUV spectrometer is in the phase of detail design. It is optimized for monitoring of chord-integrated VUV signals from divertor plasmas, chosen to contain representative lines emission from the tungsten as the divertor material, and other impurities. Impurity emission from overall divertor plasmas is collimated through the relay optics onto the entrance slit of a VUV spectrometer with working wavelength range of 14.6-32 nm. To validate the design of the ITER divertor VUV spectrometer, two sets of VUV spectrometers have been developed and tested at KSTAR tokamak. One set of spectrometer without the field mirror employs a survey spectrometer with the wavelength ranging from 14.6nm to 32nm, and it provides the same optical specification as the spectrometer part of the ITER divertor VUV spectrometer system. The other spectrometer with the wavelength range of 5-25nm consists of a commercial spectrometer with a concave grating, and the relay mirrors with the same geometry as the relay mirrors of the ITER divertor VUV spectrometer. From test of these prototypes, alignment method using backward laser illumination could be verified. To validate the feasibility of tungsten emission measurement, furthermore, the tungsten powder was injected in KSTAR plasmas, and the preliminary result could be obtained successfully with regard to the evaluation of photon throughput.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] Design of ITER divertor VUV spectrometer and prototype test at KSTAR tokamak
    Changrae Seon
    Joohwan Hong
    Inwoo Song
    Juhyeok Jang
    Hyeonyong Lee
    Younghwa An
    Bosung Kim
    Taemin Jeon
    Jaesun Park
    Wonho Choe
    Hyeongon Lee
    Sunil Pak
    MunSeong Cheon
    Jihyeon Choi
    Hyeonseok Kim
    Wolfgang Biel
    Philippe Bernascolle
    Robin Barnsley
    Martin O’Mullane
    The European Physical Journal D, 2017, 71
  • [2] VUV spectroscopy in impurity injection experiments at KSTAR using prototype ITER VUV spectrometer
    Seon, C. R.
    Hong, J. H.
    Song, I.
    Jang, J.
    Lee, H. Y.
    An, Y. H.
    Kim, B. S.
    Jeon, T. M.
    Park, J. S.
    Choe, W.
    Lee, H. G.
    Pak, S.
    Cheon, M. S.
    Choi, J. H.
    Kim, H. S.
    Biel, W.
    Bernascolle, P.
    Barnsley, R.
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2017, 88 (08):
  • [3] Design and vibration test of first mirror mount assembly for ITER divertor VUV spectrometer
    Hong, Joohwan
    Seon, Changrae
    Won, Min-Gu
    Kim, Yoo Kwan
    Kim, Boseong
    Ma, Byungsu
    Kim, Jaemin
    Shim, Heejin
    Cheon, Munseong
    FUSION ENGINEERING AND DESIGN, 2024, 208
  • [4] Erosion resistance test of SiC mirror sample for ITER divertor VUV spectrometer
    Kim, Boseong
    Chai, Kil-Byoung
    Park, Jae -Sun
    Seon, Changrae
    An, Younghwa
    Kim, Yoo Kwan
    Cheon, Munseong
    Bonnin, Xavier
    FUSION ENGINEERING AND DESIGN, 2024, 200
  • [5] Test of prototype ITER vacuum ultraviolet spectrometer and its application to impurity study in KSTAR plasmas
    Seon, C. R.
    Hong, J. H.
    Jang, J.
    Lee, S. H.
    Choe, W.
    Lee, H. H.
    Cheon, M. S.
    Pak, S.
    Lee, H. G.
    Biel, W.
    Barnsley, R.
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2014, 85 (11):
  • [6] Evaluation of a monoblock divertor design for the ITER tokamak
    Lee, YT
    Hoffman, MA
    Hafez, M
    FUSION TECHNOLOGY, 1996, 30 (03): : 669 - 673
  • [7] VUV divertor impurity monitor for ITER
    Ebisawa, K
    Ando, T
    Costley, A
    Janeschitz, G
    Martin, E
    Sugie, T
    DIAGNOSTICS FOR EXPERIMENTAL THERMONUCLEAR FUSION REACTORS 2, 1998, : 337 - 343
  • [8] Design of the KSTAR divertor
    Lee, B
    Hill, D
    Im, KH
    Sevier, L
    Han, JH
    Braams, BJ
    FUSION TECHNOLOGY, 2000, 37 (02): : 110 - 123
  • [9] ITER prototype divertor cassette design, manufacturing and assembly plans
    Driemeyer, DE
    Cole, FR
    Slattery, KT
    Wille, GW
    17TH IEEE/NPSS SYMPOSIUM ON FUSION ENGINEERING, VOLS 1 AND 2, 1998, : 344 - 348
  • [10] The design of the KSTAR tokamak
    Lee, GS
    Kim, J
    Hwang, SM
    Chang, CS
    Chang, HY
    Cho, MH
    Choi, BH
    Kim, K
    Jardin, S
    Neilson, GH
    Park, HK
    Reiersen, W
    Schmidt, J
    Young, K
    Schultz, J
    Sevier, L
    Cho, SY
    Han, JH
    Hur, NI
    Im, KH
    Kim, S
    Kim, JY
    Kyum, MC
    Lee, BJ
    Lee, DK
    Lee, SG
    Yang, HL
    Hong, BG
    Hwang, YS
    Kim, SH
    Kim, YJ
    Lim, JY
    Namkung, W
    Chung, KH
    Choi, DI
    FUSION ENGINEERING AND DESIGN, 1999, 46 (2-4) : 405 - 411