Triton burnup measurements by neutron activation at JT-60U

被引:20
作者
Hoek, M
Nishitani, T
Carlsson, M
Carlsson, T
机构
[1] JAPAN ATOM ENERGY RES INST,NAKA FUS RES ESTAB,NAKA,IBARAKI 31101,JAPAN
[2] CHALMERS UNIV TECHNOL,S-41296 GOTHENBURG,SWEDEN
关键词
D O I
10.1016/0168-9002(95)00667-2
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
This paper describes measurements on triton burnup in a deuterium plasma by the detection of the 2.5 MeV neutrons (from DD fusion) and the 14 MeV neutrons (from DT fusion). The 2.5 MeV neutrons have been measured by fission chambers and activation of indium foils while the 14 MeV neutrons have been detected by activation of silicon, aluminum, and copper foils. The measured yields of the 2.5 MeV neutrons utilizing In foils are similar to 20-40% higher than the yields obtained from fission chambers depending on what calibration factors are used. The deviation decreases with the plasma major radius (or increasing plasma volume). When the triton burnup is measured by utilizing neutron threshold reactions (E(n) > 2.5 MeV) and In foils, then systematic errors in the calibration factors cancel and the maximum deviation between the measured triton burnup for different calibration factors is reduced to similar to 5%. The measurements indicate that triton burnup increases with the 14 MeV neutron yield, indicating that the relative yield of 14 MeV neutrons increases depending on the time duration of the deuterium neutral beam injection (NBI). Furthermore, the triton burnup decreases with an increased plasma major radius, indicating increased triton nipple losses, and increases with plasma current, indicating reduced banana orbit losses.
引用
收藏
页码:804 / 814
页数:11
相关论文
共 14 条
  • [1] CONFINEMENT AND HEATING OF A DEUTERIUM-TRITIUM PLASMA
    HAWRYLUK, RJ
    ADLER, H
    ALLING, P
    ANCHER, C
    ANDERSON, H
    ANDERSON, JL
    ASHCROFT, D
    BARNES, CW
    BARNES, G
    BATHA, S
    BELL, MG
    BELL, R
    BITTER, M
    BLANCHARD, W
    BRETZ, NL
    BUDNY, R
    BUSH, CE
    CAMP, R
    CAORLIN, M
    CAUFFMAN, S
    CHANG, Z
    CHENG, CZ
    COLLINS, J
    COWARD, G
    DARROW, DS
    DELOOPER, J
    DUONG, H
    DUDEK, L
    DURST, R
    EFTHIMION, PC
    ERNST, D
    FISHER, R
    FLONCK, RJ
    FREDERICKSON, E
    FROMM, N
    FU, GY
    FURTH, HP
    GENTILE, C
    GORELENKOV, N
    GREK, B
    GRISHAM, LR
    HAMMETT, G
    HANSON, GR
    HEIDBRINK, W
    HERRMANN, HW
    HILL, KW
    HOSEA, J
    HSUAN, H
    JANOS, A
    JASSBY, DL
    [J]. PHYSICAL REVIEW LETTERS, 1994, 72 (22) : 3530 - 3533
  • [2] HAWRYLUK RJ, 1994, 1KTH INT C PLASM PHY
  • [3] HOEK M, 1995, SCI INSTRUM, V66
  • [4] HOEK M, 1994, JAERIM94002 JAP AT E
  • [5] IKEDA Y, 1988, JAERI1312 JAP AT EN
  • [6] NISHITANI T, 1992, REV SCI INSTRUM, V63, P5270, DOI [10.1063/1.1143439, 10.1063/1.1143666]
  • [7] NISHITANI T, 1992, 14TH P INT C PLASM P
  • [8] NISHITANI T, 1993, JAERIM93057 JAP AT E, P267
  • [9] NISHITANI T, 1992, JAERIM92073 JAP AT E, P242
  • [10] FUSION POWER PRODUCTION FROM TFTR PLASMAS FUELED WITH DEUTERIUM AND TRITIUM
    STRACHAN, JD
    ADLER, H
    ALLING, P
    ANCHER, C
    ANDERSON, H
    ANDERSON, JL
    ASHCROFT, D
    BARNES, CW
    BARNES, G
    BATHA, S
    BELL, MG
    BELL, R
    BITTER, M
    BLANCHARD, W
    BRETZ, NL
    BUDNY, R
    BUSH, CE
    CAMP, R
    CAORLIN, M
    CAUFFMAN, S
    CHANG, Z
    CHENG, CZ
    COLLINS, J
    COWARD, G
    DARROW, DS
    DELOOPER, J
    DUONG, H
    DUDEK, L
    DURST, R
    EFTHIMION, PC
    ERNST, D
    FISHER, R
    FONCK, RJ
    FREDERICKSON, E
    FROMM, N
    FU, GY
    FURTH, HP
    GENTILE, C
    GORELENKOV, N
    GREK, B
    GRISHAM, LR
    HAMMETT, G
    HANSON, GR
    HAWRYLUK, RJ
    HEIDBRINK, W
    HERRMANN, HW
    HILL, KW
    HOSEA, J
    HSUAN, H
    JANOS, A
    [J]. PHYSICAL REVIEW LETTERS, 1994, 72 (22) : 3526 - 3529