Search: WFRF:(Strait M.) > Resistive wall mode...
Fältnamn | Indikatorer | Metadata |
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000 | 04123naa a2200661 4500 | |
001 | oai:research.chalmers.se:513cf369-c3ca-486b-a6fa-505ff7cc3bb5 | |
003 | SwePub | |
008 | 171007s2010 | |||||||||||000 ||eng| | |
024 | 7 | a https://doi.org/10.1088/0741-3335/52/10/1040022 DOI |
024 | 7 | a https://research.chalmers.se/publication/1287082 URI |
040 | a (SwePub)cth | |
041 | a engb eng | |
042 | 9 SwePub | |
072 | 7 | a art2 swepub-publicationtype |
072 | 7 | a ref2 swepub-contenttype |
100 | 1 | a Liu, Yueqiang,d 1971u Culham Science Centre4 aut0 (Swepub:cth)elfliu |
245 | 1 0 | a Resistive wall mode control code maturity: progress and specific examples |
264 | c 2010-09-07 | |
264 | 1 | b IOP Publishing,c 2010 |
520 | a Two issues of the resistive wall mode (RWM) control code maturity are addressed: the inclusion of advanced mode damping physics beyond the ideal MHD description, and the possibility of taking into account the influence of 3D features of the conducting structures on the mode stability and control. Examples of formulations and computational results are given, using the MARS-F/K codes and the CarMa code. The MARS-K calculations for a DIII-D plasma shows that the fast ion contributions, which can give additional drift kinetic stabilization in the perturbative approach, also drive an extra unstable branch of mode in the self-consistent kinetic modelling. The CarMa modelling for the ITER steady state advanced plasmas shows about 20% reduction in the RWM growth rate by the volumetric blanket modules. The multi-mode analysis predicts a weak interaction between the n = 0 and the n = 1 RWMs, due to the 3D ITER walls. The CarMa code is also successfully applied to model the realistic feedback experiments in RFX. | |
650 | 7 | a NATURVETENSKAPx Fysik0 (SwePub)1032 hsv//swe |
650 | 7 | a NATURAL SCIENCESx Physical Sciences0 (SwePub)1032 hsv//eng |
653 | a feedback stabilization | |
653 | a tokamaks | |
653 | a plasmas | |
653 | a mhd stability | |
700 | 1 | a Chu, M. S.u General Atomics4 aut |
700 | 1 | a Guo, W. F.u Chinese Academy of Sciences4 aut |
700 | 1 | a Villone, F.u Universita di Cassino e del Lazio Meridionale4 aut |
700 | 1 | a Albanese, R.u Universita Degli Studi Di Napoli Federico Ii,University of Naples Federico II4 aut |
700 | 1 | a Ambrosino, G.u Universita di Cassino e del Lazio Meridionale4 aut |
700 | 1 | a Baruzzo, M.4 aut |
700 | 1 | a Bolzonella, T.4 aut |
700 | 1 | a Chapman, I. T.u Culham Science Centre4 aut |
700 | 1 | a Garofalo, A. M.u General Atomics4 aut |
700 | 1 | a Gimblett, C. G.u Culham Science Centre4 aut |
700 | 1 | a Hastie, R. J.u Culham Science Centre4 aut |
700 | 1 | a Hender, T. C.u Culham Science Centre4 aut |
700 | 1 | a Jackson, G. L.u General Atomics4 aut |
700 | 1 | a La Haye, R. J.u General Atomics4 aut |
700 | 1 | a Lanctot, M. J.u Columbia University in the City of New York4 aut |
700 | 1 | a In, Y.u FAR-TECH, Inc.4 aut |
700 | 1 | a Marchiori, G.4 aut |
700 | 1 | a Okabayashi, M.u Princeton University4 aut |
700 | 1 | a Paccagnella, R.4 aut |
700 | 1 | a Palumbo, M. F.u Universita di Cassino e del Lazio Meridionale4 aut |
700 | 1 | a Pironti, A.u Universita di Cassino e del Lazio Meridionale4 aut |
700 | 1 | a Reimerdes, H.u Columbia University in the City of New York4 aut |
700 | 1 | a Rubinacci, G.u Universita Degli Studi Di Napoli Federico Ii,University of Naples Federico II4 aut |
700 | 1 | a Soppelsa, A.4 aut |
700 | 1 | a Strait, E. J.u General Atomics4 aut |
700 | 1 | a Ventre, S.u Universita di Cassino e del Lazio Meridionale4 aut |
700 | 1 | a Yadykin, Dimitriy,d 1977u Chalmers tekniska högskola,Chalmers University of Technology4 aut0 (Swepub:cth)dimitriy |
710 | 2 | a Culham Science Centreb General Atomics4 org |
773 | 0 | t Plasma Physics and Controlled Fusiond : IOP Publishingg 52:10q 52:10x 1361-6587x 0741-3335 |
856 | 4 | u http://dx.doi.org/10.1088/0741-3335/52/10/104002y FULLTEXT |
856 | 4 8 | u https://doi.org/10.1088/0741-3335/52/10/104002 |
856 | 4 8 | u https://research.chalmers.se/publication/128708 |
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