CHARACTERIZATION OF QSPA PLASMA STREAMS IN PLASMA -SURFACE INTERACTION EXPERIMENTS: SIMULATION OF ITER DISRUPTION

被引:0
|
作者
Makhlaj, V. A. [1 ]
机构
[1] Kharkov Phys & Technol Inst, Inst Plasma Phys, NSC, UA-310108 Kharkov, Ukraine
关键词
TARGETS; EROSION;
D O I
暂无
中图分类号
O57 [原子核物理学、高能物理学];
学科分类号
070202 ;
摘要
Experimental simulations of thermal stage of ITER disruptions with relevant surface heat loads (energy density up to 30 MJ/m(2)) were performed with a quasi-steady-state plasma accelerator QSPA Kh-50. It was found, that the melt motion driven by plasma pressure gradient dominates in tungsten macroscopic erosion, resulting in droplet splashing and formation of the craters with rather large edge ridges of displaced material. The contribution of mass loss to surface erosion is negligible in comparison with surface profile development caused by melt motion.
引用
收藏
页码:126 / 128
页数:3
相关论文
共 50 条
  • [31] PLASMA-FACING MATERIALS EROSION UNDER ITER-LIKE TRANSIENT LOADS AT QSPA PLASMA GUN FACILITY
    Klimov, N. S.
    Podkovyrov, V. L.
    Zhitlukhin, A. M.
    Muzichenko, A. D.
    Kovalenko, D. V.
    Putrik, A. B.
    Kupriyanov, I. B.
    Giniyatulin, R. N.
    Gervash, A. A.
    Safronov, V. M.
    FUSION SCIENCE AND TECHNOLOGY, 2014, 66 (01) : 118 - 124
  • [32] THE COMPARATIVE ANALYSIS OF THE COMPRESSIBLE PLASMA STREAMS GENERATED IN QSPA FROM THE VARIOUS GASES
    Kozlov, A. N.
    Drukarenko, S. P.
    Seytkhalilova, E. I.
    Solyakov, D. G.
    Velichkin, M. A.
    PROBLEMS OF ATOMIC SCIENCE AND TECHNOLOGY, 2012, (06): : 120 - 122
  • [33] Beryllium layer response to ITER-like ELM plasma pulses in QSPA-Be
    Klimov, N. S.
    Podkovyrov, V. L.
    Kupriyanov, I. B.
    Linke, J.
    Pitts, R. A.
    Safronov, V. M.
    Kovalenko, D. V.
    Loewenhoffc, Th.
    Lungu, C. P.
    Pintsuk, G.
    De Temmerman, G.
    Muzichenko, A. D.
    Markin, A. A.
    Taratorkin, P. N.
    Zabirova, N. E.
    Zhitlukhin, A. M.
    NUCLEAR MATERIALS AND ENERGY, 2017, 12 : 433 - 440
  • [34] Investigation of vanadium alloys in CTR plasma disruption-simulation experiments
    Yakushin, VL
    Kalin, BA
    Kraskovskaya, NV
    Votinov, SN
    Vasiliev, VI
    JOURNAL OF NUCLEAR MATERIALS, 1996, 233 : 390 - 394
  • [35] ENERGY DEPOSITION DURING DISRUPTION SIMULATION EXPERIMENTS IN A PLASMA-ACCELERATOR
    BOLT, H
    BARABASH, V
    GERVASH, A
    LINKE, J
    NICKEL, H
    OVCHINNIKOV, I
    RODIG, M
    FUSION ENGINEERING AND DESIGN, 1995, 30 (03) : 225 - 232
  • [36] PARAMETERS OF HYDROGEN PLASMA STREAMS IN QSPA-M AND THEIR DEPENDENCE ON EXTERNAL MAGNETIC FIELD
    Ladygina, M. S.
    Petrov, Yu, V
    Yeliseev, D., V
    Makhlai, V. A.
    Kulik, N., V
    Staltsov, V. V.
    PROBLEMS OF ATOMIC SCIENCE AND TECHNOLOGY, 2021, (01): : 61 - 64
  • [37] Plasma-surface interaction issues of an all-metal ITER
    Brooks, J. N.
    Allain, P.
    Doerner, R. P.
    Hassanein, A.
    Nygren, R.
    Rognlien, T. D.
    Whyte, D. G.
    NUCLEAR FUSION, 2009, 49 (03)
  • [38] Simulation of burning plasma dynamics in ITER
    Natl Inst for Fusion Science, Nagoya, Japan
    Fusion Technol, 4 (590-600):
  • [39] Simulation of burning plasma dynamics in ITER
    Wang, JF
    Amano, T
    Ogawa, Y
    Inoue, N
    FUSION TECHNOLOGY, 1997, 32 (04): : 590 - 600
  • [40] LABORATORY EXPERIMENTS AND DEVICES TO STUDY PLASMA SURFACE INTERACTION
    van Rooij, G. J.
    FUSION SCIENCE AND TECHNOLOGY, 2010, 57 (2T) : 313 - 319