Transportation properties of a high-current magnetically insulated transmission line and dynamics of the electrode plasma

被引:22
|
作者
Anan'ev, S. S. [1 ]
Bakshaev, Yu. L. [1 ]
Bartov, A. V. [1 ]
Blinov, P. I. [1 ]
Dan'ko, S. A. [1 ]
Zhuzhunashvili, A. I. [1 ]
Kazakov, E. D. [1 ]
Kalinin, Yu. G. [1 ]
Kingsep, A. S. [1 ]
Korolev, V. D. [1 ]
Mizhiritskii, V. I. [1 ]
Smirnov, V. P. [1 ]
Tkachenko, S. I. [2 ]
Chernenko, A. S. [1 ]
机构
[1] Russian Res Ctr, Kurhatov Inst, Moscow 123182, Russia
[2] Russian Acad Sci, Inst High Energy Dens, Joint Inst High Temperatures, Moscow 127412, Russia
基金
俄罗斯基础研究基金会;
关键词
52.59.Mv; 84.70.+p;
D O I
10.1134/S1063780X08070064
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
Results are presented from experimental studies of a section of a magnetically insulated transmission line (MITL) with a current density of up to 500 MA/cm(2) and linear current density of up to 7 MA/cm (the parameters close to those in a fast-Z-pinch-driven fusion reactor projected at Sandia Laboratories). The experiments were performed in the S-300 facility (3 MA, 0.15 Omega, 100 ns). At high linear current densities, the surface of the ohmically heated MITL electrode can explode and a plasma layer can form near the electrode surface. As a result, the MITL can lose its transmission properties due to the shunting of the vacuum gap by the plasma produced. In this series of experiments, the dynamics of the electrode plasma and the dependence of the transmission properties of the MITL on the material and cleanness of the electrode surface were studied. It is shown experimentally that, when the current with a linear density of up to 7 MA/cm begins to flow along a model MITL, the input and output currents differ by less than 10% over a time interval of up to 230 ns for nickel electrodes and up to 350 ns for a line with a gold central electrode. No effect of the oil film present on the electrode surface on the loss of the transmission properties of the line was observed. It is also shown that electron losses insignificantly contribute to the total current balance. The experimental results are compared with calculations of the electrode explosion and the subsequent expansion of the plasma layer. A conclusion is made that the life-time of the model MITL satisfies the requirements imposed on the transmission lines intended for use in the projected thermonuclear reactor.
引用
收藏
页码:574 / 586
页数:13
相关论文
共 50 条
  • [31] Ion current losses in the convolute and inner magnetically insulated transmission line of the Z machine
    Waisman, Eduardo M.
    Desjarlais, M. P.
    Cuneo, M. E.
    PHYSICAL REVIEW ACCELERATORS AND BEAMS, 2019, 22 (03):
  • [32] A high-efficiency repetitively pulsed magnetically insulated transmission line oscillator
    Fan, Yu-Wei
    Wang, Xiao-Yu
    Zhang, Zi-Cheng
    Xun, Tao
    Yang, Han-Wu
    VACUUM, 2016, 128 : 39 - 44
  • [33] Experimental study on dynamics of mode competition in magnetically insulated transmission line oscillator (MILO)
    Jung, H. C.
    Min, S. H.
    Shin, S. H.
    Kim, D. H.
    Kim, C. H.
    Yim, D. W.
    Park, G. S.
    EIGHTH IEEE INTERNATIONAL VACUUM ELECTRONICS CONFERENCE, 2007, : 311 - +
  • [34] Investigation of plasma evolution in a coaxial small-gap magnetically insulated transmission line
    Ivanov, VV
    Laca, PJ
    Bauer, BS
    Presura, R
    Sotnikov, VI
    Astanovitskiy, AL
    Le Galloudec, B
    Glassman, J
    Wirtz, RA
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 2004, 32 (05) : 1843 - 1848
  • [35] MEASUREMENTS OF ELECTRODE PLASMA IN A MAGNETICALLY INSULATED VACUUM DIODE
    CHU, EY
    SHANNON, JP
    PEARLMAN, JS
    BENJAMIN, RF
    REINOVSKY, R
    BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, 1980, 25 (08): : 943 - 943
  • [36] Dynamic modeling of magnetically insulated transmission line systems
    Mendel, CW
    Rosenthal, SE
    PHYSICS OF PLASMAS, 1996, 3 (11) : 4207 - 4219
  • [37] Moltipactor discharge in a magnetically insulated transmission line oscillator
    Hao Jian-Hong
    Ding Wu
    Dong Zhi-Wei
    ACTA PHYSICA SINICA, 2006, 55 (09) : 4789 - 4794
  • [38] Flow impedance in a uniform magnetically insulated transmission line
    Mendel, CW
    Seidel, DB
    PHYSICS OF PLASMAS, 1999, 6 (12) : 4791 - 4793
  • [39] Improved Bifrequency Magnetically Insulated Transmission Line Oscillator
    Wang, Dong
    Chen, Daibing
    Qin, Fen
    Fan, Zhikai
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 2010, 38 (01) : 19 - 25
  • [40] Generalized Model for Magnetically Insulated Transmission Line Flow
    Ottinger, Paul F.
    Schumer, Joseph W.
    Hinshelwood, David D.
    Allen, Raymond J.
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 2008, 36 (05) : 2708 - 2721