Overview of recent TJ-II stellarator results

dc.contributor.authorE. Ascasíbar, D. Alba
dc.contributor.authorD. Alegre, A. Alonso
dc.contributor.authorJ. Alonso, F. de Aragón
dc.contributor.authorA. Baciero, J.M. Barcala
dc.contributor.authorE. Blanco, J. Botija
dc.contributor.authorL. Bueno, S. Cabrera
dc.contributor.authorE. de la Cal, I. Calvo
dc.contributor.authorA. Cappa, D. Carralero
dc.contributor.authorR. Carrasco, B. Carreras
dc.contributor.authorF. Castejón, R. Castro
dc.contributor.authorA. de Castro, G. Catalán
dc.contributor.authorA.A. Chmyga, M. Chamorro
dc.contributor.authorA.W. Cooper, A. Dinklage
dc.contributor.authorL. Eliseev, T. Estrada
dc.contributor.authorM. Ezzat, F. Fernández-Marina
dc.contributor.authorJ.M. Fontdecaba, L. García
dc.contributor.authorI. García-Cortés, R. García-Gómez
dc.contributor.authorJ.M. García-Regaña, A. González-Jerez
dc.contributor.authorG. Grenfell, J. Guasp
dc.contributor.authorJ. Hernández-Sánchez, J. Hernanz
dc.contributor.authorC. Hidalgo, E. Hollmann
dc.contributor.authorA. Jiménez-Denche, P. Khabanov
dc.contributor.authorN. Kharchev, I. Kirpitchev
dc.contributor.authorR. Kleiber, A.S. Kozachek
dc.contributor.authorL. Krupnik, F. Lapayese
dc.contributor.authorM. Liniers, B. Liu
dc.contributor.authorD. López-Bruna, A. López-Fraguas
dc.contributor.authorB. López-Miranda, J. López-Rázola
dc.contributor.authorU. Losada, E. de la Luna
dc.contributor.authorA. Martín de Aguilera, F. Martín-Díaz
dc.contributor.authorM. Martínez-Fuentes, G. Martín-Gómez
dc.contributor.authorA.B. Martín-Rojo, J. Martínez-Fernández
dc.contributor.authorK.J. McCarthy, F. Medina
dc.contributor.authorM. Medrano, L. Melón
dc.contributor.authorA.V. Melnikov, P. Méndez
dc.contributor.authorR. Merino, F.J. Miguel
dc.contributor.authorB. van Milligen, A. Molinero
dc.contributor.authorB. Momo, P. Monreal
dc.contributor.authorS. Mulas, Y. Narushima
dc.contributor.authorM. Navarro, M. Ochando
dc.contributor.authorS. Ohshima, J. Olivares
dc.contributor.authorE. Oyarzába, J.L. de Pablos
dc.contributor.authorL. Pacios, N. Panadero
dc.contributor.authorF. Parra, I. Pastor
dc.contributor.authorA. de la Peña, A. Pereira
dc.contributor.authorJ.R. Pinzón, A.B. Portas
dc.contributor.authorE. Poveda, J.A. Quintana
dc.contributor.authorF.J. Ramos, G.A. Rattá
dc.contributor.authorM. Redondo, E. Rincon
dc.contributor.authorL. Ríos, C. Rodríguez-Fernández
dc.contributor.authorL. Rodríguez-Rodrigo, B. Rojo
dc.contributor.authorA. Ros, E. Rosa
dc.contributor.authorE. Sánchez, J. Sánchez
dc.contributor.authorM. Sánchez, E. Sánchez-Sarabia
dc.contributor.authorS. Satake, J.A. Sebastián
dc.contributor.authorR. Sharma, C. Silva
dc.contributor.authorE.R. Solano, A. Soleto
dc.contributor.authorB.J. Sun, F.L. Tabarés
dc.contributor.authorD. Tafalla, H. Takahashi
dc.contributor.authorN. Tamura, A. Tolkachev
dc.contributor.authorJ. Vega, G. Velasco
dc.contributor.authorJ.L. Velasco, S. Yamamoto
dc.contributor.authorB. Zurro, TJ-Team
dc.date.accessioned2024-12-04T14:42:05Z
dc.date.available2024-12-04T14:42:05Z
dc.date.issued2019-07
dc.description.abstractThe main results obtained in the TJ-II stellarator in the last two years are reported. The most important topics investigated have been modelling and validation of impurity transport, validation of gyrokinetic simulations, turbulence characterisation, effect of magnetic configuration on transport, fuelling with pellet injection, fast particles and liquid metal plasma facing components. As regards impurity transport research, a number of working lines exploring several recently discovered effects have been developed: the effect of tangential drifts on stellarator neoclassical transport, the impurity flux driven by electric fields tangent to magnetic surfaces and attempts of experimental validation with Doppler reflectometry of the variation of the radial electric field on the flux surface. Concerning gyrokinetic simulations, two validation activities have been performed, the comparison with measurements of zonal flow relaxation in pellet-induced fast transients and the comparison with experimental poloidal variation of fluctuations amplitude. The impact of radial electric fields on turbulence spreading in the edge and scrape-off layer has been also experimentally characterized using a 2D Langmuir probe array. Another remarkable piece of work has been the investigation of the radial propagation of small temperature perturbations using transfer entropy. Research on the physics and modelling of plasma core fuelling with pellet and tracer-encapsulated solid-pellet injection has produced also relevant results. Neutral beam injection driven Alfvénic activity and its possible control by electron cyclotron current drive has been examined as well in TJ-II. Finally, recent results on alternative plasma facing components based on liquid metals are also presented.es_ES
dc.description.sponsorshipFinanciado por el programa Euratom 2014–2018, bajo el Grant Agreement No. 633053. También ha recibido financiación del Ministerio de Ciencia, Inovación y Universidades de España, a través de los proyectos ENE2013-48109-P, ENE2015-70142-P y FIS2017-88892-P, y del Gobierno español a través del grant PRX17/00425. También ha recibido soporte del Science and Technology Center in Ukraine (STCU), a través del proyecto P-507F.es_ES
dc.identifier.citationDOI: 10.1088/1741-4326/ab205ees_ES
dc.identifier.issn1741-4326
dc.identifier.urihttps://hdl.handle.net/20.500.14855/3742
dc.language.isoenges_ES
dc.publisherNuclear Fusiones_ES
dc.rights.accessRightsopen accesses_ES
dc.subjectstellaratores_ES
dc.subjectimpurity transportes_ES
dc.subjectgyrokinetic simulationses_ES
dc.subjectelectric fieldses_ES
dc.subjectturbulencees_ES
dc.subjectAlfvénic activityes_ES
dc.subjectliquid metal plasma facing componentses_ES
dc.titleOverview of recent TJ-II stellarator resultses_ES
dc.typejournal articlees_ES

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