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Conceptual design of Light Impurity Monitor for Wendelstein 7-X

Treść / Zawartość
Identyfikatory
Warianty tytułu
Konferencja
9th Kudowa Summer School „Towards Fusion Energy”
Języki publikacji
EN
Abstrakty
EN
As plasma impurity ions can significantly influence the properties of a fusion plasma by dilution and enhancement of the radiation losses, the process of monitoring of their concentrations is one of the most important tasks. A Light Impurity Monitor is needed for monitoring the contamination of the stellarator plasma by carbon, nitrogen, boron, and oxygen impurities, which are indicators for the overload of the plasma facing components, leakage of the vacuum vessel, or wall condition, respectively. Their concentration will be estimated on the basis of emission intensities of their hydrogen-like ions. In this paper a conceptual design of such a spectrometer is presented, including the description of the geometry, the acquisition system and safety systems.
Słowa kluczowe
Czasopismo
Rocznik
Strony
155--160
Opis fizyczny
Bibliogr. 10 poz., rys.
Twórcy
autor
autor
autor
  • Institute of Physics, Opole University, 48 Oleska Str., 45-052 Opole, Poland, Tel.: +48 77 452 7263, Fax: +48 77 452 7290, iksiaz@uni.opole.pl
Bibliografia
  • 1. Barnsley R, Brzozowski J, Coffey IH et al. (1992) Bragg spectroscopy of impurities during the JET preliminary tritium experiment. Rev Sci Instrum 63:5023–5025
  • 2. Barnsley R, Peacock NJ, Dunn J (2003) Versatile high resolution crystal spectrometer with X-ray charge coupled device detector. Rev Sci Instrum 74:2388–2408
  • 3. Beiersdorfer P, von Goeler S, Bitter M, Hill KW, Hulse RA, Walling RS (1988) High-resolution bent-crystal spectrometer for the ultra-soft X-ray region. ReportPPPL-2561. Princeton Plasma Physics Laboratory, Princeton, USA
  • 4. Bolshukhin D, Neu R, Schloegl D, Dux R, ASDEX Upgrade Team (2001) Measurement of spurious impurity concentrations in ASDEX Upgrade by X-ray spectroscopy. Rev Sci Instrum 72:4115–4124
  • 5. Burhenn R, Feng Y, Ida K et al. (2009) On impurity handling in high performance stellarator/heliotron plasmas. Nucl Fusion 49:065005
  • 6. Michelis C De, Mattioli M (1984) Spectroscopy and impurity behaviour in fusion plasmas. Rep Prog Phys 47:1233–1346
  • 7. Neu R, Asmussen K, Fussmann G et al. (1996) Monitor for the carbon and oxygen impurities in the ASDEX Upgrade tokamak. Rev Sci Instrum 67:1829–1833
  • 8. Neu R, Dux R, Geier A et al. (2002) Impurity behaviour in the ASDEX Upgrade divertor tokamak with large area tungsten walls. Plasma Phys Control Fusion 44:811–826
  • 9. Peacock NJ, Barnsley R, Lawson KD et al. (1997) Quantitative spectroscopy of X-ray lines and continua in Tokamaks. Rev Sci Instrum 68;4:1734–1738
  • 10. Stutman D, Finkenthal M, Moos HW et al. (1982) Integrated impurity diagnostic package for magnetic fusion experiments. Rev Sci Instrum 74:1982–1987
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ8-0006-0029
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