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XIA Ming, HUANG Zheng-Xiang, GU Xiao-Hui, WANG Ye-Zhong. Study on the Magnetic Field of High Field Magnet Powered by Flux Compression Generator[J]. Chinese Journal of High Pressure Physics, 2012, 26(4): 433-441. doi: 10.11858/gywlxb.2012.04.012
Citation: XIA Ming, HUANG Zheng-Xiang, GU Xiao-Hui, WANG Ye-Zhong. Study on the Magnetic Field of High Field Magnet Powered by Flux Compression Generator[J]. Chinese Journal of High Pressure Physics, 2012, 26(4): 433-441. doi: 10.11858/gywlxb.2012.04.012

Study on the Magnetic Field of High Field Magnet Powered by Flux Compression Generator

doi: 10.11858/gywlxb.2012.04.012
  • Received Date: 06 Jan 2011
  • Rev Recd Date: 17 Feb 2011
  • Issue Publish Date: 15 Aug 2012
  • To study magnetic field of the high field magnet powered by flux compression generator (FCG), a theoretical model is established by analysis of loading process. According to this model, a comparative study on magnetic fields of six high field magnets with different structures is carried out, and the variation laws of the magnetic fields are also acquired. The results show that the parameters of FCG are the main factor in the initial stage, which cause small differences of peak strength and range of magnetic field between six magnets; but in the flux compression stage, the influence of the magnetic structure is more and more important with the variation of circuit process, and the peak strength and range of magnetic field for different magnets are changed significantly. Furthermore, the structure of magnet plays the decisive role in the spatial distribution of magnetic field, which is not affected by the loading process.

     

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  • Knoepfel H. Pulsed High Magnetic Fields [M]. Amsterdam, Holland: North-Holland Publishing Company, 1970: 177-204.
    Fowler C M, Altgilbers L L. Magnetic flux compression generators: A tutorial and survey [J]. Electromagn Phenom, 2003, 3: 306-357.
    Altgilbers L L. Recent advances in explosive pulsed power [J]. Electromagn Phenom, 2003, 3: 497-516.
    Cavazos T C, Gale D G, Roth C E, et al. Flux compression generator development at the air force research laboratory [A]//Proceedings of the 15th International Pulsed Power Conference [C]. Monterey, US, 2005: 453-456.
    Peterson C R, Fowler C M. Rail gun powered by an integral explosive generator, LA-UR-79-2220 [R]. Los Alamos, US: Los Alamos National Laboratory, 1979.
    Kristiansen M, Worsey P, Freeman B, et al. Explosive-driven pulsed generation for directed-energy munitions, AFRL-SR-AR-TR-04-0108 [R]. US: Air Force Research Laboratory, 2004.
    Sun C W. Research of High energy density physics under magnetic load [J]. High Energy Density Physics, 2007, 3(1): 41-46. (in Chinese)
    孙承纬. 电磁加载下的高能量密度物理问题研究 [J]. 高能量密度物理, 2007, 3(1): 41-46.
    Altgilbers L L, Brown M D J, Grishnaev I, et al. Magnetocumulative Generators [M]. New York, US: Springer, 2000: 131-151.
    Chato D M, Kiutu G F, Chase J B. High voltage flux compression generators, AFRL-RD-PS-TR-2008-1046 [R]. US: Air Force Research Laboratory, 2008.
    Novac B M, Smith I R. A zero-dimensional computer code for helical flux-compression generators [J]. Electromagn Phenom, 2003, 3: 444-451.
    Калантаров П Л, Цейтлин Л А. Inductance Calculation for Manual [M]. Translated by Chen T M, Liu B A, Luo Y L, et al. 1st ed. Beijing: China Machine Press, 1992: 252, 311. (in Chinese)
    卡兰塔罗夫 П Л, 采依特林 Л А. 电感计算手册 [M]. 陈汤铭, 刘保安, 罗应立, 等, 译. 第1版. 北京: 机械工业出版社, 1992: 252, 311.
    Wen S L. The problems about joins of induction coils [J]. College Physics, 2005, 24(7): 12-15. (in Chinese)
    文盛乐. 关于电感线圈的联接问题 [J]. 大学物理, 2005, 24(7): 12-15.
    Stuetzer O M. Theory of small compressed magnetic flux current amplifiers, SAND79-1075 [R]. Albuquerque, US: Sandia Laboratories, 1979.
    Tucker T J, Toth R P. A computer code for the prediction of the behavior of electrical circuits containing exploding wire elements, SAND-75-0041 [R]. Albuquerque, US: Sandia Laboratories, 1975.
    Appelgren P. Experiments with and modelling of explosively driven magnetic flux compression generators [D]. Sweden: KTH Royal Institute of Technology, 2008.
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