Overview of the TJ-II stellarator research programme towards model validation in fusion plasmas.

dc.contributor.authorC. Hidalgo, E. Ascasíbar
dc.contributor.authorD. Alegre, A. Alonso
dc.contributor.authorJ. Alonso, R. Antón
dc.contributor.authorA. Baciero, J. Baldzuhn
dc.contributor.authorJ.M. Barcala, L. Barrera
dc.contributor.authorE. Blanco, J. Botija
dc.contributor.authorL. Bueno, S. Cabrera
dc.contributor.authorA. de Castro, E. de la Cal
dc.contributor.authorI. Calvo, A. Cappa
dc.contributor.authorD. Carralero, R. Carrasco
dc.contributor.authorB. Carreras, R. Castro
dc.contributor.authorA. de Castro, L. Cebrián
dc.contributor.authorA.A. Chmyga, M. Chamorro
dc.contributor.authorP. Colino, F. de Aragón
dc.contributor.authorM. Drabinskiy, J. Duque
dc.contributor.authorL. Eliseev, F.J. Escoto
dc.contributor.authorT. Estrada, M. Ezzat
dc.contributor.authorF. Fraguas, D. Fernández-Ruiz
dc.contributor.authorJ.M. Fontdecaba, A. Gabriel
dc.contributor.authorD. Gadariya, 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.authorV. Guisse, J. Hernández-Sánchez
dc.contributor.authorJ. Hernanz, A. Jiménez-Denche
dc.contributor.authorP. Khabanov, N. Kharchev
dc.contributor.authorR. Kleiber, F. Koechl
dc.contributor.authorT. Kobayashi, G. Kocsis
dc.contributor.authorM. Koepke, A.S. Kozachek
dc.contributor.authorL. Krupnik, F. Lapayese
dc.contributor.authorM. Liniers, B. Liu
dc.contributor.authorD. López-Bruna, B. López-Miranda
dc.contributor.authorU. Losada, E. de la Luna
dc.contributor.authorS.E. Lysenko, F. Martín-Díaz
dc.contributor.authorG. Martín-Gómez, E. Maragkoudakis
dc.contributor.authorJ. Martínez-Fernández, K.J. McCarthy
dc.contributor.authorF. Medina, M. Medrano
dc.contributor.authorA.V. Melnikov, P. Méndez
dc.contributor.authorF.J. Miguel, B. van Milligen
dc.contributor.authorA. Molinero, G. Motojima
dc.contributor.authorS. Mulas, Y. Narushima
dc.contributor.authorM. Navarro, I. Nedzelskiy
dc.contributor.authorR. Nuñez, M. Ochando
dc.contributor.authorS. Ohshima, E. Oyarzábal
dc.contributor.authorJ.L. de Pablos, F. Palomares
dc.contributor.authorN. Panadero, F. Papoušek
dc.contributor.authorF. Parra, C. Pastor
dc.contributor.authorI. Pastor, A. de la Peña
dc.contributor.authorR. Peralta, A. Pereira
dc.contributor.authorP. Pons-Villalonga, H. Polaino
dc.contributor.authorA.B. Portas, E. Poveda
dc.contributor.authorF.J. Ramos, G.A. Rattá
dc.contributor.authorM. Redondo, C. Reynoso
dc.contributor.authorE. Rincón, C. Rodríguez-Fernández
dc.contributor.authorL. Rodríguez-Rodrigo, A. Ros
dc.contributor.authorE. Sánchez, J. Sánchez
dc.contributor.authorE. Sánchez-Sarabia, S. Satake
dc.contributor.authorJ.A. Sebastián, R. Sharma
dc.contributor.authorN. Smith, C. Silva
dc.contributor.authorE.R. Solano, A. Soleto
dc.contributor.authorM. Spolaore, T. Szepesi
dc.contributor.authorF.L. Tabarés, D. Tafalla
dc.contributor.authorH. Takahashi, N. Tamura
dc.contributor.authorH. Thienpondt, A. Tolkachev
dc.contributor.authorR. Unamuno, J. Varela
dc.contributor.authorJ. Vega, J.L. Velasco
dc.contributor.authorI. Voldiner, S. Yamamoto
dc.date.accessioned2025-02-02T13:03:00Z
dc.date.available2025-02-02T13:03:00Z
dc.date.issued2022-04-14
dc.description.abstractTJ-II stellarator results on modelling and validation of plasma flow asymmetries due to on-surface potential variations, plasma fuelling physics, Alfv´en eigenmodes (AEs) control and stability, the interplay between turbulence and neoclassical (NC) mechanisms and liquid metals are reported. Regarding the validation of the neoclassically predicted potential asymmetries, its impact on the radial electric field along the flux surface has been successfully validated against Doppler reflectometry measurements. Research on the physics and modelling of plasma core fuelling with pellets and tracer encapsulated solid pellet injection has shown that, although post-injection particle radial redistributions can be understood qualitatively from NC mechanisms, turbulence and fluctuations are strongly affected during the ablation process. Advanced analysis tools based on transfer entropy have shown that radial electric fields do not only affect the radial turbulence correlation length but are also capable of reducing the propagation of turbulence from the edge into the scrape-off layer. Direct experimental observation of long range correlated structures show that zonal flow structures are ubiquitous in the whole plasma cross-section in the TJ-II stellarator. Alfv´enic activity control strategies using ECRH and ECCD as well as the relation between zonal structures and AEs are reported. Finally, the behaviour of liquid metals exposed to hot and cold plasmas in a capillary porous system container was investigated.es_ES
dc.identifier.citationC. Hidalgo, E. Ascasíbar, D. Alegre, A. Alonso, et. al. ,"Overview of the TJ-II stellarator research programme towards model validation in fusion plasmas",es_ES
dc.identifier.doihttp://dx.doi.org/10.1088/1741-4326/ac2ca1
dc.identifier.issn0029-5515
dc.identifier.urihttps://hdl.handle.net/20.500.14855/4604
dc.language.isoenges_ES
dc.publisherIOP Publishinges_ES
dc.rights.accessRightsopen accesses_ES
dc.subjectstellaratores_ES
dc.subjecttransportes_ES
dc.subjectplasmaes_ES
dc.titleOverview of the TJ-II stellarator research programme towards model validation in fusion plasmas.es_ES
dc.typejournal articlees_ES

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