Zobrazeno 1 - 10
of 107
pro vyhledávání: '"M J Mantsinen"'
Autor:
G Birkenmeier, E R Solano, I S Carvalho, J C Hillesheim, E Delabie, E Lerche, D Taylor, D Gallart, M J Mantsinen, C Silva, C Angioni, F Ryter, P Carvalho, M Fontana, E Pawelec, S A Silburn, P Sirén, S Aleiferis, J Bernardo, A Boboc, D Douai, P Puglia, P Jacquet, E Litherland-Smith, I Jepu, D Kos, H J Sun, A Shaw, D King, B Viola, R Henriques, K K Kirov, M Baruzzo, J Garcia, A Hakola, A Huber, E Joffrin, D Keeling, A Kappatou, M Lennholm, P Lomas, E de la Luna, C F Maggi, J Mailloux, M Maslov, F G Rimini, N Vianello, G Verdoolaege, H Weisen, M Wischmeier
Publikováno v:
Birkenmeier, G, Solano, E R, Carvalho, I S, Hillesheim, J C, Delabie, E, Lerche, E, Taylor, D, Gallart, D, Mantsinen, M J, Silva, C, Angioni, C, Ryter, F, Carvalho, P, Fontana, M, Pawelec, E, Silburn, S A, Sirén, P, Aleiferis, S, Bernardo, J, Boboc, A, Douai, D, Puglia, P, Jacquet, P, Litherland-Smith, E, Jepu, I, Kos, D, Sun, H J, Shaw, A, King, D, Viola, B, Henriques, R, Kirov, K K, Baruzzo, M, Garcia, J, Hakola, A, Huber, A, Joffrin, E, Keeling, D, Kappatou, A, Lennholm, M, Lomas, P, de la Luna, E, Maggi, C F, Mailloux, J, Maslov, M, Rimini, F G, Vianello, N, Verdoolaege, G, Weisen, H, Wischmeier, M & JET Contributors 2023, ' The role of isotope mass and transport for H-mode access in tritium containing plasmas at JET with ITER-like wall ', Plasma Physics and Controlled Fusion, vol. 65, no. 5, 054001 . https://doi.org/10.1088/1361-6587/acc423
Plasma Physics and Controlled Fusion
Plasma Physics and Controlled Fusion
The required heating power, P L H , to access the high confinement regime (H-mode) in tritium containing plasmas is investigated in JET with ITER-like wall at a toroidal magnetic field of B t = 1.8 T and a plasma current of I p = 1.7 MA. P L H , also
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::35f78c269716fc44da4f3a5877e51e64
https://cris.vtt.fi/en/publications/1c4ed556-dfd3-487b-ade1-ba3eb04cb27e
https://cris.vtt.fi/en/publications/1c4ed556-dfd3-487b-ade1-ba3eb04cb27e
Publikováno v:
UPCommons. Portal del coneixement obert de la UPC
Universitat Politècnica de Catalunya (UPC)
Universitat Politècnica de Catalunya (UPC)
Neutron reactions on fusion reactor materials are key phenomena to be understood to enable fusion as a feasible energy source for future reactors. We present significant improvements and validations of NEUTRO, a deterministic neutron transport code d
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::6b1618188f38d52574fc807475e8023c
https://hdl.handle.net/2117/372898
https://hdl.handle.net/2117/372898
Autor:
A. Huber, M. J. Mantsinen, A. Kappatou, Jonathan Graves, E. Lerche, A. Chomiczewska, Irena Ivanova-Stanik, R. Zagórski, C. D. Challis, J. Hobirk, D. Frigione, Jet Contributors, Giuseppe Telesca
Publikováno v:
Nuclear Fusion
Nuclear fusion 62(6), 066010-(2022). doi:10.1088/1741-4326/ac2a89
Nuclear fusion 62(6), 066010-(2022). doi:10.1088/1741-4326/ac2a89
The aim of this paper is to numerically study the influences of the impurities on the high power hybrid discharges in the JET ITER-like wall (ILW) configuration in the DD and deuterium–tritium (DT) scenarios. Numerical simulations with the COREDIV
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::9d764d0ae378655acf9c63ba9910bc3b
https://hdl.handle.net/21.11116/0000-000A-382D-621.11116/0000-000A-3085-921.11116/0000-000A-3087-7
https://hdl.handle.net/21.11116/0000-000A-382D-621.11116/0000-000A-3085-921.11116/0000-000A-3087-7
Autor:
D Gallart, M J Mantsinen, J Manyer, E Planas, D M A Taylor, J Garcia, D Frigione, L Garzotti, Hyun-Tae Kim, M Nocente, F Rimini, D Van Eester
Publikováno v:
Plasma Physics and Controlled Fusion. 64:125006
Achieving high-performance conditions and maximizing the fusion yield of plasma discharges have been one of the main goals of recent Joint European Torus (JET) campaigns in preparation for its second deuterium–tritium (D–T) campaign. The simulati
Autor:
J. Ongena, D. King, R. J. Dumont, M. Schneider, D. Van Eester, Jet Contributors, E. Lerche, R. Coelho, Teddy Craciunescu, K. K. Kirov, A. Chomiczewska, Thomas Johnson, M. Van Schoor, D. Rigamonti, R. Bilato, P. A. Schneider, Alcator C-Mod Team, J. Galdon-Quiroga, M. Lennholm, Jacob Eriksson, Antti Hakola, S. D. Pinches, F. Durodié, A. R. Polevoi, P. Jacquet, M. Nocente, Ye. O. Kazakov, M. Maslov, John Wright, Mirko Salewski, A. Thorman, M. Fitzgerald, M. F. F. Nave, D. Gallart, N. Wendler, F. Nabais, A. Kappatou, H. Weisen, M. Dreval, D. Valcarcel, J. Garcia, S. Mazzi, M. J. Mantsinen, Kristel Crombé, C. Giroud, P. Dumortier, S.J. Wukitch, S. Menmuir, EUROfusion Mst Team, U. Plank, D. Keeling, M. Weiland, J. Gonzalez-Martin, P. Lamalle, I. Monakhov, M. Garcia-Munoz, Y. Baranov, Jari Varje, L. Giacomelli, R. Ochoukov, M. Baruzzo, Žiga Štancar, V. G. Kiptily, S. E. Sharapov, V. Bobkov
Publikováno v:
Physics of Plasmas
Kazakov, Y O, Ongena, J, Wright, J C, Wukitch, S J, Bobkov, V, Garcia, J, Kiptily, V G, Mantsinen, M J, Nocente, M, Schneider, M, Weisen, H, Baranov, Y, Baruzzo, M, Bilato, R, Chomiczewska, A, Coelho, R, Craciunescu, T, Crombé, K, Dreval, M, Dumont, R, Dumortier, P, Durodié, F, Eriksson, J, Fitzgerald, M, Galdon-Quiroga, J, Gallart, D, Garcia-Muñoz, M, Giacomelli, L, Giroud, C, Gonzalez-Martin, J, Hakola, A, Jacquet, P, Johnson, T, Kappatou, A, Keeling, D, King, D, Kirov, K K, Lamalle, P, Lennholm, M, Lerche, E, Maslov, M, Mazzi, S, Menmuir, S, Monakhov, I, Nabais, F, Nave, M F F, Ochoukov, R, Polevoi, A R, Pinches, S D, Salewski, M, Schneider, P A, Shaparov, S, Štancar, Ž, Thorman, A, Valcarcel, D, Van Eester, D, Van Schoor, M, Varje, J, Weiland, M & Wendler, N 2021, ' Physics and applications of three-ion ICRF scenarios for fusion research ', Physics of Plasmas, vol. 28, no. 2, 020501 . https://doi.org/10.1063/5.0021818
UPCommons. Portal del coneixement obert de la UPC
Universitat Politècnica de Catalunya (UPC)
idUS. Depósito de Investigación de la Universidad de Sevilla
instname
PHYSICS OF PLASMAS
Kazakov, Y O, Ongena, J, Wright, J C, Wukitch, S J, Bobkov, V, Garcia, J, Kiptily, V G, Mantsinen, M J, Nocente, M, Schneider, M, Weisen, H, Baranov, Y, Baruzzo, M, Bilato, R, Chomiczewska, A, Coelho, R, Craciunescu, T, Crombé, K, Dreval, M, Dumont, R, Dumortier, P, Durodié, F, Eriksson, J, Fitzgerald, M, Galdon-Quiroga, J, Gallart, D, García-Muñoz, M, Giacomelli, L, Giroud, C, Gonzalez-Martin, J, Hakola, A, Jacquet, P, Johnson, T, Kappatou, A, Keeling, D, King, D, Kirov, K K, Lamalle, P, Lennholm, M, Lerche, E, Maslov, M, Mazzi, S, Menmuir, S, Monakhov, I, Nabais, F, Nave, M F F, Ochoukov, R, Polevoi, A R, Pinches, S D, Plank, U, Rigamonti, D, Salewski, M, Schneider, P A, Sharapov, S E, Štancar, Ž, Thorman, A, Valcarcel, D, Van Eester, D, Van Schoor, M, Varje, J, Weiland, M & Wendler, N 2021, ' Physics and applications of three-ion ICRF scenarios for fusion research ', Physics of Plasmas, vol. 28, no. 2, 020501 . https://doi.org/10.1063/5.0021818
Physics of plasmas 28 (2021): 020501-1–020501-21. doi:10.1063/5.0021818
info:cnr-pdr/source/autori:Kazakov Y.O.; Ongena J.; Wright J.C.; Wukitch S.J.; Bobkov V.; Garcia J.; Kiptily V.G.; Mantsinen M.J.; Nocente M.; Schneider M.; Weisen H.; Baranov Y.; Baruzzo M.; Bilato R.; Chomiczewska A.; Coelho R.; Craciunescu T.; Crombe K.; Dreval M.; Dumont R.; Dumortier P.; Durodie F.; Eriksson J.; Fitzgerald M.; Galdon-Quiroga J.; Gallart D.; Garcia-Munoz M.; Giacomelli L.; Giroud C.; Gonzalez-Martin J.; Hakola A.; Jacquet P.; Johnson T.; Kappatou A.; Keeling D.; King D.; Kirov K.K.; Lamalle P.; Lennholm M.; Lerche E.; Maslov M.; Mazzi S.; Menmuir S.; Monakhov I.; Nabais F.; Nave M.F.F.; Ochoukov R.; Polevoi A.R.; Pinches S.D.; Plank U.; Rigamonti D.; Salewski M.; Schneider P.A.; Sharapov S.E.; Stancar Z.; Thorman A.; Valcarcel D.; Van Eester D.; Van Schoor M.; Varje J.; Weiland M.; Wendler N./titolo:Physics and applications of three-ion ICRF scenarios for fusion research/doi:10.1063%2F5.0021818/rivista:Physics of plasmas/anno:2021/pagina_da:020501-1/pagina_a:020501-21/intervallo_pagine:020501-1–020501-21/volume:28
Kazakov, Y O, Ongena, J, Wright, J C, Wukitch, S J, Bobkov, V, Garcia, J, Kiptily, V G, Mantsinen, M J, Nocente, M, Schneider, M, Weisen, H, Baranov, Y, Baruzzo, M, Bilato, R, Chomiczewska, A, Coelho, R, Craciunescu, T, Crombé, K, Dreval, M, Dumont, R, Dumortier, P, Durodié, F, Eriksson, J, Fitzgerald, M, Galdon-Quiroga, J, Gallart, D, Garcia-Muñoz, M, Giacomelli, L, Giroud, C, Gonzalez-Martin, J, Hakola, A, Jacquet, P, Johnson, T, Kappatou, A, Keeling, D, King, D, Kirov, K K, Lamalle, P, Lennholm, M, Lerche, E, Maslov, M, Mazzi, S, Menmuir, S, Monakhov, I, Nabais, F, Nave, M F F, Ochoukov, R, Polevoi, A R, Pinches, S D, Salewski, M, Schneider, P A, Shaparov, S, Štancar, Ž, Thorman, A, Valcarcel, D, Van Eester, D, Van Schoor, M, Varje, J, Weiland, M & Wendler, N 2021, ' Physics and applications of three-ion ICRF scenarios for fusion research ', Physics of Plasmas, vol. 28, no. 2, 020501 . https://doi.org/10.1063/5.0021818
UPCommons. Portal del coneixement obert de la UPC
Universitat Politècnica de Catalunya (UPC)
idUS. Depósito de Investigación de la Universidad de Sevilla
instname
PHYSICS OF PLASMAS
Kazakov, Y O, Ongena, J, Wright, J C, Wukitch, S J, Bobkov, V, Garcia, J, Kiptily, V G, Mantsinen, M J, Nocente, M, Schneider, M, Weisen, H, Baranov, Y, Baruzzo, M, Bilato, R, Chomiczewska, A, Coelho, R, Craciunescu, T, Crombé, K, Dreval, M, Dumont, R, Dumortier, P, Durodié, F, Eriksson, J, Fitzgerald, M, Galdon-Quiroga, J, Gallart, D, García-Muñoz, M, Giacomelli, L, Giroud, C, Gonzalez-Martin, J, Hakola, A, Jacquet, P, Johnson, T, Kappatou, A, Keeling, D, King, D, Kirov, K K, Lamalle, P, Lennholm, M, Lerche, E, Maslov, M, Mazzi, S, Menmuir, S, Monakhov, I, Nabais, F, Nave, M F F, Ochoukov, R, Polevoi, A R, Pinches, S D, Plank, U, Rigamonti, D, Salewski, M, Schneider, P A, Sharapov, S E, Štancar, Ž, Thorman, A, Valcarcel, D, Van Eester, D, Van Schoor, M, Varje, J, Weiland, M & Wendler, N 2021, ' Physics and applications of three-ion ICRF scenarios for fusion research ', Physics of Plasmas, vol. 28, no. 2, 020501 . https://doi.org/10.1063/5.0021818
Physics of plasmas 28 (2021): 020501-1–020501-21. doi:10.1063/5.0021818
info:cnr-pdr/source/autori:Kazakov Y.O.; Ongena J.; Wright J.C.; Wukitch S.J.; Bobkov V.; Garcia J.; Kiptily V.G.; Mantsinen M.J.; Nocente M.; Schneider M.; Weisen H.; Baranov Y.; Baruzzo M.; Bilato R.; Chomiczewska A.; Coelho R.; Craciunescu T.; Crombe K.; Dreval M.; Dumont R.; Dumortier P.; Durodie F.; Eriksson J.; Fitzgerald M.; Galdon-Quiroga J.; Gallart D.; Garcia-Munoz M.; Giacomelli L.; Giroud C.; Gonzalez-Martin J.; Hakola A.; Jacquet P.; Johnson T.; Kappatou A.; Keeling D.; King D.; Kirov K.K.; Lamalle P.; Lennholm M.; Lerche E.; Maslov M.; Mazzi S.; Menmuir S.; Monakhov I.; Nabais F.; Nave M.F.F.; Ochoukov R.; Polevoi A.R.; Pinches S.D.; Plank U.; Rigamonti D.; Salewski M.; Schneider P.A.; Sharapov S.E.; Stancar Z.; Thorman A.; Valcarcel D.; Van Eester D.; Van Schoor M.; Varje J.; Weiland M.; Wendler N./titolo:Physics and applications of three-ion ICRF scenarios for fusion research/doi:10.1063%2F5.0021818/rivista:Physics of plasmas/anno:2021/pagina_da:020501-1/pagina_a:020501-21/intervallo_pagine:020501-1–020501-21/volume:28
This paper summarizes the physical principles behind the novel three-ion scenarios using radio frequency waves in the ion cyclotron range of frequencies (ICRF). We discuss how to transform mode conversion electron heating into a new flexible ICRF tec
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::282f52165e94314d1c498bb72da7f4b7
Autor:
Yu. V. Yakovenko, Žiga Štancar, M. Nocente, J. Ongena, Jet Contributors, Michael Fitzgerald, E. Khilkevich, M. F. F. Nave, Gabor Szepesi, D. Taylor, S. E. Sharapov, A. E. Shevelev, M. J. Mantsinen, M. Iliasova, Vasily Kiptily, Ye. O. Kazakov
Publikováno v:
Nuclear Fusion
Nuclear fusion 60 (2020): 112003-1–112003-9. doi:10.1088/1741-4326/ab79cb
info:cnr-pdr/source/autori:Kiptily, V. G.; Kazakov, Ye.; Fitzgerald, M.; Nocente, M.; Iliasova, M.; Khilkevich, E.; Mantsinen, M. J.; Nave, M. F. F.; Ongena, J.; Sharapov, S. E.; Shevelev, A. E.; Stancar, Z.; Szepesi, G.; Taylor, D. M. A.; Yakovenko, Yu. V./titolo:Excitation of elliptical and toroidal Alfven eigenmodes by(3)He-ions of the MeV-energy range in hydrogen-rich JET plasmas/doi:10.1088%2F1741-4326%2Fab79cb/rivista:Nuclear fusion/anno:2020/pagina_da:112003-1/pagina_a:112003-9/intervallo_pagine:112003-1–112003-9/volume:60
Nuclear fusion 60 (2020): 112003-1–112003-9. doi:10.1088/1741-4326/ab79cb
info:cnr-pdr/source/autori:Kiptily, V. G.; Kazakov, Ye.; Fitzgerald, M.; Nocente, M.; Iliasova, M.; Khilkevich, E.; Mantsinen, M. J.; Nave, M. F. F.; Ongena, J.; Sharapov, S. E.; Shevelev, A. E.; Stancar, Z.; Szepesi, G.; Taylor, D. M. A.; Yakovenko, Yu. V./titolo:Excitation of elliptical and toroidal Alfven eigenmodes by(3)He-ions of the MeV-energy range in hydrogen-rich JET plasmas/doi:10.1088%2F1741-4326%2Fab79cb/rivista:Nuclear fusion/anno:2020/pagina_da:112003-1/pagina_a:112003-9/intervallo_pagine:112003-1–112003-9/volume:60
Elliptical (EAE) and toroidal Alfven eigenmode (TAE) instabilities have been observed in hydrogen-rich JET discharges of theD-(He-3)-Hion cyclotron resonance heating (ICRH) scenario, which is characterized by strong absorption of radio frequency wave
Autor:
M. J. Mantsinen, R. Bilato, Alessandro Biancalani, Frank Jenko, Tobias Görler, A. Banon Navarro, Emanuele Poli, F.N. deOliveira-Lopes, A. Di Siena
Publikováno v:
Nuclear Fusion
Autor:
E. Lerche, John Wright, D. Gallart, K. K. Kirov, Jet Contributors, Ph. Jacquet, M. J. Mantsinen
Publikováno v:
AIP Conference Proceedings
A tritium (T) campaign is planned in preparation for the deuterium-tritium (D-T) campaign at the Joint European Torus (JET). These experiments will be the first experiments involving T with the ITER-like plasma-wall facing components materials. They
Autor:
A. Chomiczewska, J. Ongena, D. Van Eester, Jet Contributors, Ye. O. Kazakov, V. Bobkov, N. Krawczyk, E. Kowalska-Strzęciwilk, M. J. Mantsinen, E. Lerche, Th. Pütterich, G. Pucella
Publikováno v:
AIP Conference Proceedings
The effect of the novel ‘three-ion’ D-(3He)-H minority ICRH heating scheme on the behavior of the metallic impurities at JET-ILW is discussed. The reported experiment was performed in L-mode plasmas at a magnetic field BT = 3.2 T, plasma current
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::45e6fcbd3983e63c7d0bf23d2b7b33e0
https://hdl.handle.net/21.11116/0000-0007-4CB7-621.11116/0000-0007-379C-C21.11116/0000-0007-379E-A
https://hdl.handle.net/21.11116/0000-0007-4CB7-621.11116/0000-0007-379C-C21.11116/0000-0007-379E-A
Autor:
K. K. Kirov, D. Van Eester, Y. Baranov, Ye. O. Kazakov, E. Lerche, P. Huynh, Thomas Johnson, Mike Machielsen, Pierre Dumortier, I. Monakhov, Jonathan Graves, J. Ongena, Jet Contributors, Ph. Jacquet, M. J. Mantsinen, D. Gallart, F. J. Casson, V. G. Kiptily
Publikováno v:
AIP Conference Proceedings
Ion cyclotron resonance heating (ICRH) plays an important role in high performance JET-ILW plasma discharges, both for keeping the heavy impurities away from the plasma centre as for increasing the core ion temperature to boost fusion performance. Wh