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Original Articles

Simulation of the iter plasma disruption with the plasma accelerator “vika”

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Pages 77-98 | Published online: 19 Aug 2006

References

  • Drozdov , A. A. , Kuznetsov , V. E. Ljublin , B. V. 1995 . Iiwestigations of parameters of the intensive plasma flows, generated by high current long pulse plasma accelerators . Plasma Devices and Operation , 4 ( 1 ) : 53 – 82 .
  • Sestero , A. 1995 . Formation and evolution of a wall protective plasma shield in a hard disruption. . Nuclear Fusion , 35 ( 8 ) : 919 – 933 .
  • Hassanein , A. , Konkashbaev , I. , Konkashbaev , A. and Nikandrov , L. 1995 . September : 25 – 29 . Lifetime evaluation of plasma-facing materials during a Tokamak disruption. Seventh International Conference on Fusion Reactor Materials (ICFRM-7), Obninsk, Russia, Report No. 080057.
  • Hassanein , A. and Konkashbaev , I. 1995 . Comprehensive model for disruption erosion in a reactor environment. . Journal of Nuclear Materials , 220–222 : 244 – 248 .
  • Wuerz , H. , Landman , L. Bazylev , B. Status of modelling of plasma formation and divertor plate erosion for ITER Tokamak plasma disruption . ICFRM- , Report No. 030004.
  • Hassanein , A. 1994 . Plasma disruption modeling and simulation. . Fusion Technology , 26 Nov. : 532 – 539 .
  • Hassanein , A. and Konkashbaev , I. 1995 . An assessment of disruption erosion in the ITER environment. . Fusion Engineering and Design , 28 : 27 – 33 .
  • Wuerz , H. , Landman , I. Pestchany , S. Plasma wall interaction in ITER tokamak hard disruptions . 12-th International Conference on Plasma-surface Interaction . May , France : St. Raphael .
  • Arkhipov , N. I. , Bakhtin , V. P. Kurkin , S. M. The study of structure and dynamics of a shielding layer for inclined incidence of a plasma stream at MK200 CUSP facility. . ICFRM-7 , Report No. 080016.
  • Belan , V. G. , Levashov , V. F. Maynashev , V. S. Features of dynamic and structure of shielding layer at the interaction of plasma flow QSPA with target. . ICFRM-7. , Report No. 080014.
  • Tereshin , V. I. , Chebotarev , V. V. Garkusha , I. E. Characteristics of the transient plasma layers produced by irradiation of graphite targets by high power quasistationary plasma streams under the disruption modelling experiments. . ICFRM-7 , Report No. 080035.
  • Rocket , P. D. , Hanter , J. A. Bradley , J. T. Comparison of e-beam and plasma gun disruption simulation. . ICFRM-7 , Report No. 080008.
  • Engelko , V. I. , Andreev , A. D. Burtseva , T. A . Investigation of the candidate divertor materials erosion at the powerful electron beam. . ICFRM-7 , Report No. 270009.
  • Burdakov , A. V. , Chagin , M. N. Filippov , V. V. On a possibility of explosive material erosion under conditions of ITER disruption event. . ICFRM-7 , Report No. 080054.
  • Burtseva , T. A. , Drozdov , A. A. Gervash , A. A. Effects of high heat plasma fluxes on the new C-C composites, different metals and coatings for ITER plasma facing components. Proceedings of the 18-th Symposium on Fusion Technology . August 22–26 , pp. 235 – 238 . Germany : Karlsruhe .
  • Burtseva , T. A. , Drozdov , A. A. Gervash , A. A. 1995 . Plasma disruption simulation of different materials for the ITER application. . Plasma Devices and Operation , 4 ( 1 ) : 31 – 41 .
  • Griem , H. R. 1964 . Plasma Spectroscopy , McGrow-Hill Book Company .
  • Kappler , F. , Landman , I. , Piazza , G. and Wuerz , H. 1995 . “ Numerical modeling of plasma shield formation and divertor plate erosion during ITER tokamak plasma disruptions. ” . In Annual Report of Forschungszentrum , Karlsruhe . 5590.
  • Bazylev , B. N. , Romanov , G. S. and Tolkach , V. I. 1993 . “ Optical properties of tungsten plasma. ” . In Report of Heat and Mass Transfer Institute.

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