Zobrazeno 1 - 10
of 79
pro vyhledávání: '"J. Varju"'
Autor:
M. Peterka, J. Seidl, T. Markovic, A. Loarte, N.C. Logan, J.-K. Park, P. Cahyna, J. Havlicek, M. Imrisek, L. Kripner, R. Panek, M. Sos, P. Bilkova, K. Bogar, P. Bohm, A. Casolari, Y. Gribov, O. Grover, P. Hacek, M. Hron, K. Kovarik, M. Tomes, D. Tskhakaya, J. Varju, P. Vondracek, V. Weinzettl, the COMPASS Team
Publikováno v:
Nuclear Fusion, Vol 64, Iss 10, p 106029 (2024)
This work presents the first analysis of the disruptive locked mode (LM) triggered by the dynamics of a confinement change. It shows that, under certain conditions, the LM threshold during the transient is significantly lower than expected from stead
Externí odkaz:
https://doaj.org/article/966d800f749b448ebab36ecfad1a69e3
Autor:
R. Dejarnac, J. Horacek, M. Hron, M. Jerab, J. Adamek, S. Atikukke, P. Barton, J. Cavalier, J. Cecrdle, M. Dimitrova, E. Gauthier, M. Iafrati, M. Imrisek, A. Marin Roldan, G. Mazzitelli, D. Naydenkova, A. Prishvitcyn, M. Tomes, D. Tskhakaya, G. Van Oost, J. Varju, P. Veis, A. Vertkov, P. Vondracek, V. Weinzettl
Publikováno v:
Nuclear Materials and Energy, Vol 25, Iss , Pp 100801- (2020)
Power handling experiments with a special liquid metal divertor module based on the capillary porous system technology were performed in the tokamak COMPASS. The performance of two metals (Li and LiSn alloy) were tested for the first time in a divert
Externí odkaz:
https://doaj.org/article/39ecacf10354486ea8238d048ce335f5
Autor:
J. Horacek, R. Dejarnac, J. Cecrdle, D. Tskhakaya, A. Vertkov, J. Cavalier, P. Vondracek, M. Jerab, P. Barton, G. van Oost, M. Hron, V. Weinzettl, D. Sestak, S. Lukes, J. Adamek, A. Prishvitsin, M. Iafratti, Y. Gasparyan, Y. Vasina, D. Naydenkova, J. Seidl, E. Gauthier, G. Mazzitelli, M. Komm, J. Gerardin, J. Varju, M. Tomes, S. Entler, J. Hromadka, R. Panek
Publikováno v:
Nuclear Materials and Energy, Vol 25, Iss , Pp 100860- (2020)
Two small liquid metal targets based on the capillary porous structure were exposed to the divertor plasma of the tokamak COMPASS. The first target was wetted by pure lithium and the second one by a lithium-tin alloy, both releasing mainly lithium at
Externí odkaz:
https://doaj.org/article/230c13f0b42d4d68ad26ca6a897fb8df
Akademický článek
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Akademický článek
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Publikováno v:
Plasma Physics and Controlled Fusion
We introduce detailed numerical modelling of the fast neutral particles inside the duct of a new neutral beam injector (NBI) recently installed at the COMPASS tokamak (major radius R 0 = 0.56 m , vessel midplane minor radius a = 0.23 m , toroidal fie
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::c5327156face5e15797760985506e1cd
https://hdl.handle.net/21.11116/0000-000C-32FA-221.11116/0000-000C-32FC-0
https://hdl.handle.net/21.11116/0000-000C-32FA-221.11116/0000-000C-32FC-0
Autor:
M. Hron, J. Adámek, J. Cavalier, R. Dejarnac, O. Ficker, O. Grover, J. Horáček, M. Komm, E. Macúšová, E. Matveeva, R. Pánek, M. Peterka, J. Seidl, D. Tskhakaya, V. Yanovskiy, F.J. Artola, S. Atikukke, P. Bartoň, A. Bencze, M. Berta, P. Bílková, W. Bin, K. Bogár, O. Bogár, P. Böhm, I. Borodkina, S. Brezinsek, F. Brochard, P. Buratti, J. Čaloud, A. Casolari, C. Castaldo, J. Čečrdle, J. Čeřovský, D. Cipciar, A. Devitre, M. Dimitrova, I. Ďuran, S. Entler, M. Farník, H. Fernandes, D. Fridrich, Š. Fuková, E. Gauthier, J. Gerardin, M. Gobbin, G. Grenfell, Y. Gribov, M. Grof, J. Gunn, P. Háček, J. Havlíček, A. Havránek, C. Hidalgo, K. Hromasová, O. Hronova, M. Iafrati, M. Imríšek, N. Isernia, F. Jaulmes, M. Jeřáb, M. Jirsa, P. Junek, A. Kallenbach, O. Kovanda, K. Kovařík, J. Krbec, L. Kripner, L. Krlín, P. Kulhánek, M. Lehnen, N. Lemoine, X. Litaudon, Y.Q. Liu, N.C. Logan, T. Loarer, A. Loarte, P. Lourenco, S. Lukes, P. Mácha, M. Rabinski, A. Marin Roldan, T. Markovič, J. Matějíček, G. Mazzitelli, J. Mlynář, I. Mysiura, F. Napoli, D. Naydenkova, J.-K. Park, N. Patel, P. Pavlo, R. Pitts, A. Podolník, M. Poradzinski, J. Preinhaelter, A. Prishvitsin, D. Refy, R. Roccella, D. Šesták, O. Shyshkin, V. Škvára, M. Šos, M. Spolaore, J. Stöckel, J. Svoboda, M. Tomeš, A. Torres, P. Turjanica, G. Tynan, M. Valovič, G. Van Oost, M. Varavin, J. Varju, P. Veis, M. Vilemova, F. Villone, P. Vondráček, V. Weinzettl, F. Žáček, G. Zadvitskiy, J. Zajac, D.R. Zaloga, J. Zebrowski, S. Zoletnik
Publikováno v:
Nuclear Fusion
Nuclear Fusion, 2021, ⟨10.1088/1741-4326/ac301f⟩
Nuclear Fusion, IOP Publishing, 2021, ⟨10.1088/1741-4326/ac301f⟩
Nuclear fusion 62 (2022): 042021-1–042021-17. doi:10.1088/1741-4326/ac301f
info:cnr-pdr/source/autori:Hron, M.; Adamek, J.; Cavalier, J.; Dejarnac, R.; Ficker, O.; Grover, O.; Horacek, J.; Komm, M.; Macusova, E.; Matveeva, E.; Panek, R.; Peterka, M.; Seidl, J.; Tskhakaya, D.; Yanovskiy, V.; Artola, F. J.; Atikukke, S.; Barton, P.; Bencze, A.; Berta, M.; Bilkova, P.; Bin, W.; Bogar, K.; Bogar, O.; Bohm, P.; Borodkina, I.; Brezinsek, S.; Brochard, F.; Buratti, P.; Caloud, J.; Casolari, A.; Castaldo, C.; Cecrdle, J.; Cerovsky, J.; Cipciar, D.; Devitre, A.; Dimitrova, M.; Duran, I.; Entler, S.; Farnik, M.; Fernandes, H.; Fridrich, D.; Fukova, S.; Gauthier, E.; Gerardin, J.; Gobbin, M.; Grenfell, G.; Gribov, Y.; Grof, M.; Gunn, J.; Hacek, P.; Havlicek, J.; Havranek, A.; Hidalgo, C.; Hromasova, K.; Hronova, O.; Iafrati, M.; Imrisek, M.; Isernia, N.; Jaulmes, F.; Jerab, M.; Jirsa, M.; Junek, P.; Kallenbach, A.; Kovanda, O.; Kovarik, K.; Krbec, J.; Kripner, L.; Krlin, L.; Kulhanek, P.; Lehnen, M.; Lemoine, N.; Litaudon, X.; Liu, Y. Q.; Logan, N. C.; Loarer, T.; Loarte, A.; Lourenco, P.; Lukes, S.; Macha, P.; Rabinski, M.; Marin Roldan, A.; Markovic, T.; Matejicek, J.; Mazzitelli, G.; Mlynar, J.; Mysiura, I.; Napoli, F.; Naydenkova, D.; Park, J.-K.; Patel, N.; Pavlo, P.; Pitts, R.; Podolnik, A.; Poradzinski, M.; Preinhaelter, J.; Prishvitsin, A.; Refy, D.; Roccella, R.; Sestak, D.; Shyshkin, O.; Skvara, V.; Sos, M.; Spolaore, M.; Stockel, J.; Svoboda, J.; Tomes, M.; Torres, A.; Turjanica, P.; Tynan, G.; Valovic, M.; Van Oost, G.; Varavin, M.; Varju, J.; Veis, P.; Vilemova, M.; Villone, F.; Vondracek, P.; Weinzettl, V.; Zacek, F.; Zadvitskiy, G.; Zajac, J.; Zaloga, D. R.; Zebrowski, J.; Zoletnik, S./titolo:Overview of the COMPASS results */doi:10.1088%2F1741-4326%2Fac301f/rivista:Nuclear fusion/anno:2022/pagina_da:042021-1/pagina_a:042021-17/intervallo_pagine:042021-1–042021-17/volume:62
NUCLEAR FUSION
Nuclear fusion 62(4), 042021-(2022). doi:10.1088/1741-4326/ac301f
Nuclear Fusion, 2021, ⟨10.1088/1741-4326/ac301f⟩
Nuclear Fusion, IOP Publishing, 2021, ⟨10.1088/1741-4326/ac301f⟩
Nuclear fusion 62 (2022): 042021-1–042021-17. doi:10.1088/1741-4326/ac301f
info:cnr-pdr/source/autori:Hron, M.; Adamek, J.; Cavalier, J.; Dejarnac, R.; Ficker, O.; Grover, O.; Horacek, J.; Komm, M.; Macusova, E.; Matveeva, E.; Panek, R.; Peterka, M.; Seidl, J.; Tskhakaya, D.; Yanovskiy, V.; Artola, F. J.; Atikukke, S.; Barton, P.; Bencze, A.; Berta, M.; Bilkova, P.; Bin, W.; Bogar, K.; Bogar, O.; Bohm, P.; Borodkina, I.; Brezinsek, S.; Brochard, F.; Buratti, P.; Caloud, J.; Casolari, A.; Castaldo, C.; Cecrdle, J.; Cerovsky, J.; Cipciar, D.; Devitre, A.; Dimitrova, M.; Duran, I.; Entler, S.; Farnik, M.; Fernandes, H.; Fridrich, D.; Fukova, S.; Gauthier, E.; Gerardin, J.; Gobbin, M.; Grenfell, G.; Gribov, Y.; Grof, M.; Gunn, J.; Hacek, P.; Havlicek, J.; Havranek, A.; Hidalgo, C.; Hromasova, K.; Hronova, O.; Iafrati, M.; Imrisek, M.; Isernia, N.; Jaulmes, F.; Jerab, M.; Jirsa, M.; Junek, P.; Kallenbach, A.; Kovanda, O.; Kovarik, K.; Krbec, J.; Kripner, L.; Krlin, L.; Kulhanek, P.; Lehnen, M.; Lemoine, N.; Litaudon, X.; Liu, Y. Q.; Logan, N. C.; Loarer, T.; Loarte, A.; Lourenco, P.; Lukes, S.; Macha, P.; Rabinski, M.; Marin Roldan, A.; Markovic, T.; Matejicek, J.; Mazzitelli, G.; Mlynar, J.; Mysiura, I.; Napoli, F.; Naydenkova, D.; Park, J.-K.; Patel, N.; Pavlo, P.; Pitts, R.; Podolnik, A.; Poradzinski, M.; Preinhaelter, J.; Prishvitsin, A.; Refy, D.; Roccella, R.; Sestak, D.; Shyshkin, O.; Skvara, V.; Sos, M.; Spolaore, M.; Stockel, J.; Svoboda, J.; Tomes, M.; Torres, A.; Turjanica, P.; Tynan, G.; Valovic, M.; Van Oost, G.; Varavin, M.; Varju, J.; Veis, P.; Vilemova, M.; Villone, F.; Vondracek, P.; Weinzettl, V.; Zacek, F.; Zadvitskiy, G.; Zajac, J.; Zaloga, D. R.; Zebrowski, J.; Zoletnik, S./titolo:Overview of the COMPASS results */doi:10.1088%2F1741-4326%2Fac301f/rivista:Nuclear fusion/anno:2022/pagina_da:042021-1/pagina_a:042021-17/intervallo_pagine:042021-1–042021-17/volume:62
NUCLEAR FUSION
Nuclear fusion 62(4), 042021-(2022). doi:10.1088/1741-4326/ac301f
COMPASS addressed several physical processes that may explain the behaviour of important phenomena. This paper presents results related to the main fields of COMPASS research obtained in the recent two years, including studies of turbulence, L–H tr
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::d702e50d57be5a1cd1653d23c280e45e
https://hal.univ-lorraine.fr/hal-03441665/file/Hron+et+al_2021_Nucl._Fusion_10.1088_1741-4326_ac301f.pdf
https://hal.univ-lorraine.fr/hal-03441665/file/Hron+et+al_2021_Nucl._Fusion_10.1088_1741-4326_ac301f.pdf
Publikováno v:
Plasma Physics and Controlled Fusion. 65:025004
Two identical neutral beam injectors (NBIs) have been installed on the COMPASS tokamak. Each of them is capable of producing a deuterium (or hydrogen, helium) neutral beam with nominal power of up to 400 kW at 40 keV. Since the COMPASS tokamak is a c
Autor:
A. Weckmann, P. Petersson, J. Varju, M. Jerab, J. Horacek, J. Adamek, P. Vondracek, E. Fortuna, M. Hron, M. Rubel
Publikováno v:
Fusion Engineering and Design. 179:113118
Autor:
Radomir Panek, T. Markovic, P. Cahyna, R. Dejarnac, J. Havlicek, J. Horacek, M. Hron, M. Imrisek, P. Junek, M. Komm, D. Sestak, J. Urban, J. Varju, V. Weinzettl, J. Adamek, P. Bilkova, P. Bohm, M. Dimitrova, P. Hacek, K. Kovarik, J. Krbec, J. Mlynar, A. Podolnik, J. Seidl, J. Stockel, M. Tomes, F. Zajac, K. Mitosinkova, M. Peterka, P. Vondracek, null the COMPASS team
Publikováno v:
Fusion Engineering and Design. 123:11-16
The paper describes the conceptual design of the COMPASS Upgrade (COMPASS-U) tokamak which represents a compact, medium-size, high-magnetic-field and high-density device with a flexible set of poloidal field coils for generation of single, double nul