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Studies of Plasma-Focus discharges within the PF-360 facility equipped with needle D2O-ice target

Treść / Zawartość
Identyfikatory
Warianty tytułu
Konferencja
International Workshop on Dense Magnetised Plasmas IWDMP’2000 (12-14.10.2000 ; Kudowa Zdrój, Poland)
Języki publikacji
EN
Abstrakty
EN
The paper describes a new technique which has been investigated in order to overcome the neutron saturation effect and to increase the neutron yield from the plasma-focus (PF) discharges [1]. The PF-360 experimental facility was constructed at the Andrzej Soltan Institute for Nuclear Studies (IPJ) in Swierk, Poland in the late 70s [4, 5]. Recently in order to improve the neutron yield from the PF-360 machine, it was proposed to use a cryogenic deuterium target, which might be placed within the plasma-focus region. For this purpose, we have been made a needle-like cryogenic target covered with a thin „heavy-ice“ layer. A considerable increase in the average neutron yield (from 1.7×1010 to about 2.2×1010 neutrons/shot) has been achieved for 122 kJ PF discharges when the needle target top was placed at a distance of about 100 mm from the electrode ends.
Czasopismo
Rocznik
Strony
69--71
Opis fizyczny
Bibliogr. 7 poz., rys.
Twórcy
  • Department of Plasma Physics and Technology (P-V), The Andrzej Soltan Institute for Nuclear Studies (IPJ), 05-400 Otwock-Swierk by Warsaw, Poland Tel.: +4822/ 7180610, Fax: 4822/ 7793481
  • Department of Plasma Physics and Technology (P-V), The Andrzej Soltan Institute for Nuclear Studies (IPJ), 05-400 Otwock-Swierk by Warsaw, Poland Tel.: +4822/ 7180610, Fax: 4822/ 7793481
autor
  • Department of Plasma Physics and Technology (P-V), The Andrzej Soltan Institute for Nuclear Studies (IPJ), 05-400 Otwock-Swierk by Warsaw, Poland Tel.: +4822/ 7180610, Fax: 4822/ 7793481
autor
  • Department of Plasma Physics and Technology (P-V), The Andrzej Soltan Institute for Nuclear Studies (IPJ), 05-400 Otwock-Swierk by Warsaw, Poland Tel.: +4822/ 7180610, Fax: 4822/ 7793481
Bibliografia
  • 1. Bernard A, Bruzzone H, Choi P et al. (1998) Scientific status of plasma-focus research J Moscow Phys Soc 8:93–170
  • 2. Brzosko JS, Degan JH, Filipov VV, Freeman BL, Kiuttu GF, Mather JW (1997) Comments on the feasibility of archiving scientific break-even with a plasma-focus machine. In: Panarella E. (ed) Proc 2nd Symposium Current Trends in International Fusion Research. NRC Research Press, Ottawa 114:11–32
  • 3. Herold H, Jerzykiewicz A, Sadowski M, Schmidt H (1989) Comparative analysis of large plasma focus experiments performed at IPF, Stuttgard, and at IPJ Swierk. Nucl Fusion 29; 8:1255–1260
  • 4. Jerzykiewicz A, Bielik M, Jakubowski L et al. (1984) Neutron, ion and X radiation from 360 kJ plasma focus device. In: Proc 10th Int Conf PP&CNFR London, UK I:591-601
  • 5. Jerzykiewicz A, Bielik M, Jankowicz Z, et al. (1983) Preliminary investigations of 360 kJ plasma focus device. Proc 11th EPS Conf CFPP. Aachen, Germany I:485
  • 6. Pasternak A, Sadowski M (1998) Theoretical study of ion motion within a Plasma-Focus region. J Tech Phys, Spec Suppl 39:45–49
  • 7. Pasternak A, Sadowski M, Galkowski A (2000) 3D modelling of ion motion within dynamic filamentary PF-pinch column. Czech J Phys, Suppl 50;3:159–163
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ab68339e-d8f1-4120-913e-2b3b3c9e51a1
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