Fast Time Response Electromagnetic Disruption Mitigation Concept

作者: R. Raman , T. R. Jarboe , J. E. Menard , S. P. Gerhardt , M. Ono

DOI: 10.13182/FST14-916

关键词:

摘要: AbstractAn important and urgent issue for ITER is predicting controlling disruptions. Tokamaks spherical tokamaks have the potential to disrupt. Methods rapidly quench discharge after an impending disruption detected are essential protect vessel internal components. The warning time onset of some disruptions in could be <10 ms, which poses stringent requirements on mitigation system reactor systems. In this proposed method, a cylindrical boron nitride projectile containing radiative payload composed boron, nitride, or beryllium particulate matter weighing ~15 g accelerated velocities order 1 2 km/s <2 ms linear rail gun accelerator. A partially fragmented capsule then injected into tokamak 3- 6-ms timescale, where dispersed. device referred as electromagnetic particle injector has meet short timescales whic...

参考文章(20)
L.R. Baylor, C. C. Barbier, J. R. Carmichael, S. K. Combs, M. N. Ericson, N. D. Bull Ezell, P. W. Fisher, M. S. Lyttle, S. J. Meitner, D. A. Rasmussen, S. F. Smith, J. B. Wilgen, S. Maruyama, G. Kiss, Disruption Mitigation System Developments and Design for ITER Fusion Science and Technology. ,vol. 68, pp. 211- 215 ,(2015) , 10.13182/FST14-926
G.M. Olynyk, R.S. Granetz, M.L. Reinke, D.G. Whyte, T. Golfinopoulos, J.W. Hughes, J.R. Walk, V.A. Izzo, S.K. Combs, S.L. Milora, M.W. Brookman, Rapid shutdown experiments with one and two gas jets on Alcator C-Mod Nuclear Fusion. ,vol. 53, pp. 092001- ,(2013) , 10.1088/0029-5515/53/9/092001
R Raman, D Mueller, T.R Jarboe, B.A Nelson, M.G Bell, M Ono, T Bigelow, R Kaita, B LeBlanc, K.C Lee, R Maqueda, J Menard, S Paul, L Roquemore, Non-inductive solenoid-less plasma current startup in NSTX using transient CHI Nuclear Fusion. ,vol. 47, pp. 792- 799 ,(2007) , 10.1088/0029-5515/47/8/009
James H. Hammer, Charles W. Hartman, James L. Eddleman, Harry S. McLean, Experimental demonstration of acceleration and focusing of magnetically confined plasma rings. Physical Review Letters. ,vol. 61, pp. 2843- 2846 ,(1988) , 10.1103/PHYSREVLETT.61.2843
E. M. Hollmann, P. B. Aleynikov, T. Fülöp, D. A. Humphreys, V. A. Izzo, M. Lehnen, V. E. Lukash, G. Papp, G. Pautasso, F. Saint-Laurent, J. A. Snipes, Status of research toward the ITER disruption mitigation system Physics of Plasmas. ,vol. 22, pp. 021802- ,(2015) , 10.1063/1.4901251
E. M. Hollmann, N. Commaux, N. W. Eidietis, D. A. Humphreys, T. J. Jernigan, C. J. Lasnier, R. A. Moyer, R. A. Pitts, M. Sugihara, E. J. Strait, J. Watkins, J. C. Wesley, Characterization of heat loads from mitigated and unmitigated vertical displacement events in DIII-D Physics of Plasmas. ,vol. 20, pp. 062501- ,(2013) , 10.1063/1.4810792
F. Saint-Laurent, G. Martin, T. Alarcon, A. Le Luyer, P. Pastor, S. Putvinski, B. Vincent, J. Bucalossi, S. Bremond, Ph. Moreau, E. Nardon, C. Reux, FIRE, a novel concept of massive gas injection for disruption mitigation in ITER: Validation on Tore Supra Fusion Engineering and Design. ,vol. 89, pp. 3022- 3038 ,(2014) , 10.1016/J.FUSENGDES.2014.09.007
C. Reux, J. Bucalossi, F. Saint-Laurent, C. Gil, P. Moreau, P. Maget, Experimental study of disruption mitigation using massive injection of noble gases on Tore Supra Nuclear Fusion. ,vol. 50, pp. 095006- ,(2010) , 10.1088/0029-5515/50/9/095006
M. Lehnen, K. Aleynikova, P.B. Aleynikov, D.J. Campbell, P. Drewelow, N.W. Eidietis, Yu. Gasparyan, R.S. Granetz, Y. Gribov, N. Hartmann, E.M. Hollmann, V.A. Izzo, S. Jachmich, S.-H. Kim, M. Kočan, H.R. Koslowski, D. Kovalenko, U. Kruezi, A. Loarte, S. Maruyama, G.F. Matthews, P.B. Parks, G. Pautasso, R.A. Pitts, C. Reux, V. Riccardo, R. Roccella, J.A. Snipes, A.J. Thornton, P.C. de Vries, Disruptions in ITER and strategies for their control and mitigation Journal of Nuclear Materials. ,vol. 463, pp. 39- 48 ,(2015) , 10.1016/J.JNUCMAT.2014.10.075