Results 11 to 20 of about 108,499 (193)
Overview of ASDEX Upgrade results [PDF]
Nuclear Fusion, 2011 The ASDEX Upgrade programme is directed towards physics input to critical elements of the ITER design and the preparation of ITER operation, as well as addressing physics issues for a future DEMO design. After the finalization of the tungsten coating of the plasma facing components, the re-availability of all flywheel-generators allowed high-power ...Kallenbach, A., Adamek, J., Aho-Mantila, L., Akaslompolo, S., Angioni, C., Atanasiu, C.V., Balden, M., Behler, K., Belonohy, E., Bergmann, A., Bernert, M., Bilato, R., Bobkov, V., Boom, J., Bottino, A., Braun, F., Brudgam, M., Buhler, A., Burckhart, A., Chankin, A., Classen, I.G.J., Conway, G.D., Coster, D.P., de Marne, P., D'Inca, R., Drube, R., Dux, R., Eich, T., Endstrasser, N., Engelhardt, K., Esposito, B., Fable, E., Fahrbach, H.U., Fattorini, L., Fischer, R., Flaws, A., Funfgelder, H., Fuchs, J.C., Gal, K., Garcia Munoz, M., Geiger, B., Adamov, M.G., Giannone, L., Giroud, C., Görler, T., da Graca, S., Greuner, H., Gruber, O., Gude, A., Gunter, S., Haas, G., Hakola, A.H., Hangan, D., Happel, T., Hauff, T., Heinemann, B., Herrmann, A., Hicks, N., Hobirk, J., Hohnle, H., Holzl, M., Hopf, C., Horton, L., Huart, M., Igochine, V., Ionita, C., Janzer, A., Jenko, F., Kasemann, C.P., Kalvin, S., Kardaun, O., Kaufmann, M., Kirk, A., Klingshirn, H.J., Kocan, M., Kocsis, G., Kollotzek, H., Konz, C., Koslowski, R., Krieger, K., Kurki-Suonio, T., Kurzan, B., Lackner, K., Lang, P.T., Lauber, P., Laux, M., Leipold, F., Leuterer, F., Lohs, A., Luhmann, N.C., Lunt, T., Lyssoivan, A., Maier, H., Maggi, C., Mank, K., Manso, M.E., Maraschek, M., Martin, P., Mayer, M., McCarthy, P.J., McDermott, R., Meister, H., Menchero, L., Meo, F., Merkel, P., Merkel, R., Mertens, V., Merz, F., Mlynek, A., Monaco, F., Muller, H.W., Munich, M., Murmann, H., Neu, G., Neu, R., Nold, B., Noterdaeme, J.M., Park, H.K., Pautasso, G., Pereverzev, G., Podoba, Y., Pompon, F., Poli, E., Polochiy, K., Potzel, S., Prechtl, M., Pueschel, M.J., Putterich, T., Rathgeber, S.K., Raupp, G., Reich, M., Reiter, B., Ribeiro, T., Riedl, R., Rohde, V., Roth, J., Rott, M., Ryter, F., Sandmann, W., Santos, J., Sassenberg, K., Sauter, P., Scarabosio, A., Schall, G., Schmid, K., Schneider, P.A., Schneider, W., Schramm, G., Schrittwieser, R., Schweinzer, J., Scott, B., Sempf, M., Serra, F., Sertoli, M., Siccinio, M., Sigalov, A., Silva, A., Sips, A.C.C., Sommer, F., Stabler, A., Stober, J., Streibl, B., Strumberger, E., Sugiyama, K., Suttrop, W., Szepesi, T., Tardini, G., Tichmann, C., Told, D., Treutterer, W., Urso, L., Varela, P., Vincente, J., Vianello, N., Vierle, T., Viezzer, E., Vorpahl, C., Wagner, D., Weller, A., Wenninger, R., Wieland, B., Wigger, C., Willensdorfer, M., Wischmeier, M., Wolfrum, E., Wursching, E., Yadikin, D., Yu, Q., Zammuto, I., Zasche, D., Zehetbauer, T., Zhang, Y., Zilker, M., Zohm, H. +193 moreopenaire +7 more sourcesDust investigations at ASDEX Upgrade [PDF]
Physica Scripta, 2009 Investigations on dust in the full tungsten divertor tokamak, ASDEX Upgrade, are summarized. Newly designed collectors are used to distinguish plasma-produced dust from other kinds of debris. Whereas submicron particles are often tungsten spheres, larger ones are agglomerates from tungsten in a boron/carbon matrix.Rohde, V., Balden, M., Lunt, T., ASDEX Upgrade Team +3 moreopenaire +3 more sourcesOverview of physics studies on ASDEX Upgrade [PDF]
Nuclear Fusion, 2019 Abstract The ASDEX Upgrade (AUG) programme, jointly run with the EUROfusion MST1 task force, continues to significantly enhance the physics base of ITER and DEMO. Here, the full tungsten wall is a key asset for extrapolating to future devices.Meyer, H., Angioni, C., Albert, C. G., Arden, N., Arredondo Parra, R., Asunta, O., de Baar, M., Balden, M., Bandaru, V., Behler, K., Bergmann, A., Bernardo, J., Bernert, M., Biancalani, A., Bilato, R., Birkenmeier, G., Blanken, T. C., Bobkov, V., Bock, A., Bolzonella, T., Bortolon, A., Böswirth, B., Bottereau, C., Bottino, A., van den Brand, H., Brezinsek, S., Brida, D., Brochard, F., Bruhn, C., Buchanan, J., Buhler, A., Burckhart, A., Camenen, Y., Carlton, D., Carr, M., Carralero, D., Castaldo, C., Cavedon, M., Cazzaniga, C., Ceccuzzi, S., Challis, C., Chankin, A., Chapman, S., Cianfarani, C., Clairet, F., Coda, S., Coelho, R., Coenen, J. W., Colas, L., Conway, G. D., Costea, S., Coster, D. P., Cote, T. B., Creely, A., Croci, G., Cseh, G., Czarnecka, A., Cziegler, I., D’Arcangelo, O., David, P., Day, C., Delogu, R., de Marné, P., Denk, S. S., Denner, P., Dibon, M., Di Siena, A., Douai, D., Drenik, A., Drube, R., Dunne, M., Duval, B. P., Dux, R., Eich, T., Elgeti, S., Engelhardt, K., Erdös, B., Erofeev, I., Esposito, B., EUROfusion MST1 Team, Fable, E., Faitsch, M., Fantz, U., Faugel, H., Faust, I., Felici, F., Ferreira, J., Fietz, S., Figuereido, A., Fischer, R., Ford, O., Frassinetti, L., Freethy, S., Fröschle, M., Fuchert, G., Fuchs, J. C., Fünfgelder, H., Galazka, K., Galdon-Quiroga, J., Gallo, A., Gao, Y., Garavaglia, S., Garcia-Carrasco, A., Garcia-Muñoz, M., Geiger, B., Giannone, L., Gil, L., Giovannozzi, E., Gleason-González, C., Glöggler, S., Gobbin, M., Görler, T., Gomez Ortiz, I., Gonzalez Martin, J., Goodman, T., Gorini, G., Gradic, D., Gräter, A., Granucci, G., Greuner, H., Griener, M., Groth, M., Gude, A., Günter, S., Guimarais, L., Haas, G., Hakola, A. H., Ham, C., Happel, T., den Harder, N., Harrer, G. F., Harrison, J., Hauer, V., Hayward-Schneider, T., Hegna, C. C., Heinemann, B., Heinzel, S., Hellsten, T., Henderson, S., Hennequin, P., Herrmann, A., Heyn, M. F., Heyn, E., Hitzler, F., Hobirk, J., Höfler, K., Hölzl, M., Höschen, T., Holm, J. H., Hopf, C., Hornsby, W. A., Horvath, L., Houben, A., Huber, A., Igochine, V., Ilkei, T., Ivanova-Stanik, I., Jacob, W., Jacobsen, A. S., Janky, F., Jansen van Vuuren, A., Jardin, A., Jaulmes, F., Jenko, F., Jensen, T., Joffrin, E., Käsemann, C. P., Kallenbach, A., Kálvin, S., Kantor, M., Kappatou, A., Kardaun, O., Karhunen, J., Kasilov, S., Kazakov, Y., Kernbichler, W., Kirk, A., Kjer Hansen, S., Klevarova, V., Kocsis, G., Köhn, A., Koubiti, M., Krieger, K., Krivska, A., Krämer-Flecken, A., Kudlacek, O., Kurki-Suonio, T., Kurzan, B., Labit, B., Lackner, K., Laggner, F., Lang, P. T., Lauber, P., Lebschy, A., Leuthold, N., Li, M., Linder, O., Lipschultz, B., Liu, F., Liu, Y., Lu, Z., Luda di Cortemiglia, T., Lunsford, R., Maggiora, R., Maingi, R., Manso, M. E., Mantica, P., Mantsinen, M., Manz, P., Martin, P., Marrelli, L., Medvedeva, A., Merle, A., Milanesio, D., Nabais, F., Neu, R., Nielsen, A. H., Nielsen, S. K., Nikolaeva, V., Nocente, M., Novikau, I., Odstrcil, T., Papp, G., Piovesan, P., Piron, C., Ploeckl, B., Plyusnin, V., Poli, E., Ramisch, M., Rasmussen, J., Rattá, G. A., Ratynskaia, S., Reimold, F., Reiser, D., Ribeiro, T., Riesch, J., Rivero-Rodriguez, J. F., Rodriguez-Ramos, M., Rohde, V., Salewski, M., Sanchis-Schez, L., Santos, J., Schubert, M., Schwarz-Selinger, T., Shabbir, A., Sias, G., Silvagni, D., Simon, P., Sozzi, C., Spolaore, M., Tardocchi, M., Terranova, D., Tierens, W., Tolias, P., Valisa, M., Varoutis, S., Vianello, N., Vicente, J., Wang, N., Wiesen, S., Zohm, H. +260 moreopenaire +11 more sourcesPhysics of the electric field in the scrape-off layer in ASDEX Upgrade L-mode discharges and comparison to experiments
Nuclear Materials and Energy, 2022 The electric field in the Scrape-Off Layer (SOL) of fusion plasmas is a key quantity affecting the local plasma transport and possibly also the overall plasma confinement. However, the physics determining the SOL electric field is experimentally not well D. Brida, G.D. Conway, J. Adamek, D. Silvagni, P. David, T. Eich, G. Grenfell, M. Komm, U. Plank +8 moredoaj +1 more sourceAnalysis and expansion of the quasi-continuous exhaust (QCE) regime in ASDEX Upgrade
Nuclear Fusion, 2023 The quasi-continuous exhaust (QCE) regime, formerly known as either type-II ELM or small ELM regime is studied in ASDEX Upgrade. The regime is a natural type-I ELM-free H-mode.M. Faitsch, T. Eich, G.F. Harrer, E. Wolfrum, D. Brida, P. David, M. Dunne, L. Gil, B. Labit, U. Stroth, the ASDEX Upgrade Team, the EUROfusion MST1 Team +11 moredoaj +1 more sourceOverview of ASDEX Upgrade results [PDF]
Nuclear Fusion, 2003 Recent results from the ASDEX Upgrade experimental campaigns 2001 and 2002 are presented. An improved understanding of energy and particle transport emerges in terms of a critical gradient model for the temperature gradients. Coupling this to particle diffusion explains most of the observed behaviour of the density profiles, in particular, the ...Zohm, H., Angioni, C., Arslanbekov, R., Atanasiu, C., Becker, G., Becker, W., Behler, K., Behringer, K., Bergmann, A., Bilato, R., Bobkov, V., Bolshukhin, D., Bolzonella, T., Borrass, K., Brambilla, M., Braun, F., Buhler, A., Carlson, A., Conway, G.D., Coster, D.P., Drube, R., Dux, R., Egorov, S., Eich, T., Engelhardt, K., Fahrbach, H.U., Fantz, U., Faugel, H., Finken, K.H., Foley, M., Franzen, P., Fuchs, J.C., Gafert, J., Fournier, K.B., Gantenbein, G., Gehre, O., Geier, A., Gernhardt, J., Goodman, T., Gruber, O., Gude, A., Gunter, S., Haas, G., Hartmann, D., Heger, B., Heinemann, B., Herrmann, A., Hobirk, J., Hofmeister, F., Hohenocker, H., Horton, L.D., Igochine, V., Jacchia, A., Jakobi, M., Jenko, F., Kallenbach, A., Kardaun, O., Kaufmann, M., Keller, A., Kendl, A., Kim, J.W., Kirov, K., Kochergov, R., Kollotzek, H., Kraus, W., Krieger, K., Kurki-Suonio, T., Kurzan, B., Lang, P.T., Lasnier, C., Lauber, P., Laux, M., Leonard, A.W., Leuterer, F., Lohs, A., Lorenz, A., Lorenzini, R., Maggi, C., Maier, H., Mank, K., Manso, M.E., Mantica, P., Maraschek, M., Martines, E., Mast, K.F., McCarthy, P., Meisel, D., Meister, H., Meo, F., Merkel, P., Merkel, R., Merkl, D., Mertens, V., Monaco, F., Muck, A., Muller, H.W., Munich, M., Murmann, H., Na, Y.S., Neu, G., Neu, R., Neuhauser, J., Nguyen, F., Nishijima, D., Nishimura, Y., Noterdaeme, J.M., Nunes, I., Pautasso, G., Peeters, A.G., Pereverzev, G., Pinches, S.D., Poli, E., Proschek, M., Pugno, R., Quigley, E., Raupp, G., Reich, M., Ribeiro, T., Riedl, R., Rohde, V., Roth, J., Ryter, F., Saarelma, S., Sandmann, W., Savtchkov, A., Sauter, O., Schade, S., Schilling, H.B., Schneider, W., Schramm, G., Schwarz, E., Schweinzer, J., Schweizer, S., Scott, B.D., Seidel, U., Serra, F., Sesnic, S., Sihler, C., Silva, A., Sips, A.C.C., Speth, E., Stabler, A., Steuer, K.H., Stober, J., Streibl, B., Strumberger, E., Suttrop, W., Tabasso, A., Tanga, A., Tardini, G., Tichmann, C., Treutterer, W., Troppmann, M., Urano, H., Varela, P., Vollmer, O., Wagner, D., Wenzel, U., Wesner, F., Westerhof, E., Wolf, R., Wolfrum, E., Wursching, E., Yoon, S.W., Yu, Q., Zasche, D., Zehetbauer, T., Zehrfeld, H.P. +167 moreopenaire +8 more sourcesExperiments and modelling on ASDEX Upgrade and WEST in support of tool development for tokamak reactor armour melting assessments
Nuclear Materials and Energy, 2022 The risk of metallic armour melting constitutes a major concern for ITER and DEMO. Combined computational and experimental effort has led to a successful understanding of melt dynamics in present-day tokamaks, but there remain unexplored melting regimes ...S. Ratynskaia, K. Paschalidis, P. Tolias, K. Krieger, Y. Corre, M. Balden, M. Faitsch, A. Grosjean, Q. Tichit, R.A. Pitts +9 moredoaj +1 more sourceThe ASDEX Upgrade discharge schedule [PDF]
Fusion Engineering and Design, 2007 Abstract ASDEX Upgrade's recently commissioned discharge control system (DCS) marks the transition from a traditional programmed system to a highly flexible “data driven” one. The allocation of application processes (APs) to controllers, the interconnection of APs through uniquely named signals, and AP control parameter values are all defined as data,Neu, G., Engelhardt, K., Raupp, G., Treutterer, W., Zasche, D., Zehetbauer, T. +5 moreopenaire +2 more sourcesFusion Materials Development at Forschungszentrum Jülich
Advanced Engineering Materials, Volume 22, Issue 6, June 2020., 2020 In fusion material research, the focus has been twofold‐plasma facing and structural materials allowing to withstand the extreme conditions such as neutron bombardment and high heat fluxes. In this contribution, the background for the choice of tungsten as first wall material is given and the advanced materials developed at Forschungszentrum Jülich ...Jan Willem Coenenwiley +1 more source