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Park, Hyeon Keo
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dc.citation.number 10 -
dc.citation.startPage 104007 -
dc.citation.title NUCLEAR FUSION -
dc.citation.volume 53 -
dc.contributor.author Sabbagh, S. A. -
dc.contributor.author Ahn, J. -W. -
dc.contributor.author Allain, J. -
dc.contributor.author Andre, R. -
dc.contributor.author Balbaky, A. -
dc.contributor.author Bastasz, R. -
dc.contributor.author Battaglia, D. -
dc.contributor.author Bell, M. -
dc.contributor.author Bell, R. -
dc.contributor.author Beiersdorfer, P. -
dc.contributor.author Belova, E. -
dc.contributor.author Berkery, J. -
dc.contributor.author Betti, R. -
dc.contributor.author Bialek, J. -
dc.contributor.author Bigelow, T. -
dc.contributor.author Bitter, M. -
dc.contributor.author Boedo, J. -
dc.contributor.author Bonoli, P. -
dc.contributor.author Boozer, A. -
dc.contributor.author Bortolon, A. -
dc.contributor.author Boyle, D. -
dc.contributor.author Brennan, D. -
dc.contributor.author Breslau, J. -
dc.contributor.author Buttery, R. -
dc.contributor.author Canik, J. -
dc.contributor.author Caravelli, G. -
dc.contributor.author Chang, C. -
dc.contributor.author Crocker, N. -
dc.contributor.author Darrow, D. -
dc.contributor.author Davis, B. -
dc.contributor.author Delgado-Aparicio, L. -
dc.contributor.author Diallo, A. -
dc.contributor.author Ding, S. -
dc.contributor.author D'Ippolito, D. -
dc.contributor.author Domier, C. -
dc.contributor.author Dorland, W. -
dc.contributor.author Ethier, S. -
dc.contributor.author Evans, T. -
dc.contributor.author Ferron, J. -
dc.contributor.author Finkenthal, M. -
dc.contributor.author Foley, J. -
dc.contributor.author Fonck, R. -
dc.contributor.author Frazin, R. -
dc.contributor.author Fredrickson, E. -
dc.contributor.author Fu, G. -
dc.contributor.author Gates, D. -
dc.contributor.author Gerhardt, S. -
dc.contributor.author Glasser, A. -
dc.contributor.author Gorelenkov, N. -
dc.contributor.author Gray, T. -
dc.contributor.author Guo, Y. -
dc.contributor.author Guttenfelder, W. -
dc.contributor.author Hahm, T. -
dc.contributor.author Harvey, R. -
dc.contributor.author Hassanein, A. -
dc.contributor.author Heidbrink, W. -
dc.contributor.author Hill, K. -
dc.contributor.author Hirooka, Y. -
dc.contributor.author Hooper, E. B. -
dc.contributor.author Hosea, J. -
dc.contributor.author Humphreys, D. -
dc.contributor.author Indireshkumar, K. -
dc.contributor.author Jaeger, F. -
dc.contributor.author Jarboe, T. -
dc.contributor.author Jardin, S. -
dc.contributor.author Jaworski, M. -
dc.contributor.author Kaita, R. -
dc.contributor.author Kallman, J. -
dc.contributor.author Katsuro-Hopkins, O. -
dc.contributor.author Kaye, S. -
dc.contributor.author Kessel, C. -
dc.contributor.author Kim, J. -
dc.contributor.author Kolemen, E. -
dc.contributor.author Kramer, G. -
dc.contributor.author Krasheninnikov, S. -
dc.contributor.author Kubota, S. -
dc.contributor.author Kugel, H. -
dc.contributor.author La Haye, R. J. -
dc.contributor.author Lao, L. -
dc.contributor.author LeBlanc, B. -
dc.contributor.author Lee, W. -
dc.contributor.author Lee, K. -
dc.contributor.author Leuer, J. -
dc.contributor.author Levinton, F. -
dc.contributor.author Liang, Y. -
dc.contributor.author Liu, D. -
dc.contributor.author Lore, J. -
dc.contributor.author Luhmann, N., Jr. -
dc.contributor.author Maingi, R. -
dc.contributor.author Majeski, R. -
dc.contributor.author Manickam, J. -
dc.contributor.author Mansfield, D. -
dc.contributor.author Maqueda, R. -
dc.contributor.author Mazzucato, E. -
dc.contributor.author McLean, A. -
dc.contributor.author McCune, D. -
dc.contributor.author McGeehan, B. -
dc.contributor.author McKee, G. -
dc.contributor.author Medley, S. -
dc.contributor.author Meier, E. -
dc.contributor.author Menard, J. -
dc.contributor.author Menon, M. -
dc.contributor.author Meyer, H. -
dc.contributor.author Mikkelsen, D. -
dc.contributor.author Miloshevsky, G. -
dc.contributor.author Mueller, D. -
dc.contributor.author Munsat, T. -
dc.contributor.author Myra, J. -
dc.contributor.author Nelson, B. -
dc.contributor.author Nishino, N. -
dc.contributor.author Nygren, R. -
dc.contributor.author Ono, M. -
dc.contributor.author Osborne, T. -
dc.contributor.author Park, Hyeon Keo -
dc.contributor.author Park, J. -
dc.contributor.author Park, Y. S. -
dc.contributor.author Paul, S. -
dc.contributor.author Peebles, W. -
dc.contributor.author Penaflor, B. -
dc.contributor.author Perkins, R. J. -
dc.contributor.author Phillips, C. -
dc.contributor.author Pigarov, A. -
dc.contributor.author Podesta, M. -
dc.contributor.author Preinhaelter, J. -
dc.contributor.author Raman, R. -
dc.contributor.author Ren, Y. -
dc.contributor.author Rewoldt, G. -
dc.contributor.author Rognlien, T. -
dc.contributor.author Ross, P. -
dc.contributor.author Rowley, C. -
dc.contributor.author Ruskov, E. -
dc.contributor.author Russell, D. -
dc.contributor.author Ruzic, D. -
dc.contributor.author Ryan, P. -
dc.contributor.author Schaffer, M. -
dc.contributor.author Schuster, E. -
dc.contributor.author Scotti, F. -
dc.contributor.author Shaing, K. -
dc.contributor.author Shevchenko, V. -
dc.contributor.author Shinohara, K. -
dc.contributor.author Sizyuk, V. -
dc.contributor.author Skinner, C. H. -
dc.contributor.author Smirnov, A. -
dc.contributor.author Smith, D. -
dc.contributor.author Snyder, P. -
dc.contributor.author Solomon, W. -
dc.contributor.author Sontag, A. -
dc.contributor.author Soukhanovskii, V. -
dc.contributor.author Stoltzfus-Dueck, T. -
dc.contributor.author Stotler, D. -
dc.contributor.author Stratton, B. -
dc.contributor.author Stutman, D. -
dc.contributor.author Takahashi, H. -
dc.contributor.author Takase, Y. -
dc.contributor.author Tamura, N. -
dc.contributor.author Tang, X. -
dc.contributor.author Taylor, G. -
dc.contributor.author Taylor, C. -
dc.contributor.author Tritz, K. -
dc.contributor.author Tsarouhas, D. -
dc.contributor.author Umansky, M. -
dc.contributor.author Urban, J. -
dc.contributor.author Untergberg, E. -
dc.contributor.author Walker, M. -
dc.contributor.author Wampler, W. -
dc.contributor.author Wang, W. -
dc.contributor.author Whaley, J. -
dc.contributor.author White, R. -
dc.contributor.author Wilgen, J. -
dc.contributor.author Wilson, R. -
dc.contributor.author Wong, K. L. -
dc.contributor.author Wright, J. -
dc.contributor.author Xia, Z. -
dc.contributor.author Youchison, D. -
dc.contributor.author Yu, G. -
dc.contributor.author Yuh, H. -
dc.contributor.author Zakharov, L. -
dc.contributor.author Zemlyanov, D. -
dc.contributor.author Zimmer, G. -
dc.contributor.author Zweben, S. J. -
dc.date.accessioned 2023-12-22T03:36:20Z -
dc.date.available 2023-12-22T03:36:20Z -
dc.date.created 2015-09-02 -
dc.date.issued 2013-10 -
dc.description.abstract Research on the National Spherical Torus Experiment, NSTX, targets physics understanding needed for extrapolation to a steady-state ST Fusion Nuclear Science Facility, pilot plant, or DEMO. The unique ST operational space is leveraged to test physics theories for next-step tokamak operation, including ITER. Present research also examines implications for the coming device upgrade, NSTX-U. An energy confinement time, tau(E), scaling unified for varied wall conditions exhibits a strong improvement of B-T tau(E) with decreased electron collisionality, accentuated by lithium (Li) wall conditioning. This result is consistent with nonlinear microtearing simulations that match the experimental electron diffusivity quantitatively and predict reduced electron heat transport at lower collisionality. Beam-emission spectroscopy measurements in the steep gradient region of the pedestal indicate the poloidal correlation length of turbulence of about ten ion gyroradii increases at higher electron density gradient and lower T-i gradient, consistent with turbulence caused by trapped electron instabilities. Density fluctuations in the pedestal top region indicate ion-scale microturbulence compatible with ion temperature gradient and/or kinetic ballooning mode instabilities. Plasma characteristics change nearly continuously with increasing Li evaporation and edge localized modes (ELMs) stabilize due to edge density gradient alteration. Global mode stability studies show stabilizing resonant kinetic effects are enhanced at lower collisionality, but in stark contrast have almost no dependence on collisionality when the plasma is off-resonance. Combined resistive wall mode radial and poloidal field sensor feedback was used to control n = 1 perturbations and improve stability. The disruption probability due to unstable resistive wall modes (RWMs) was surprisingly reduced at very high beta(N)/l(i) > 10 consistent with low frequency magnetohydrodynamic spectroscopy measurements of mode stability. Greater instability seen at intermediate beta(N) is consistent with decreased kinetic RWM stabilization. A model-based RWM state-space controller produced long-pulse discharges exceeding beta(N) = 6.4 and beta(N)/l(i) = 13. Precursor analysis shows 96.3% of disruptions can be predicted with 10 ms warning and a false positive rate of only 2.8%. Disruption halo currents rotate toroidally and can have significant toroidal asymmetry. Global kinks cause measured fast ion redistribution, with full-orbit calculations showing redistribution from the core outward and towards V-parallel to/V = 1 where destabilizing compressional Alfven eigenmode resonances are expected. Applied 3D fields altered global Alfven eigenmode characteristics. High-harmonic fast-wave (HHFW) power couples to field lines across the entire width of the scrape-off layer, showing the importance of the inclusion of this phenomenon in designing future RF systems. The snowflake divertor configuration enhanced by radiative detachment showed large reductions in both steady-state and ELM heat fluxes (ELMing peak values down from 19 MW m(-2) to less than 1.5 MW m(-2)). Toroidal asymmetry of heat deposition was observed during ELMs or by 3D fields. The heating power required for accessing H-mode decreased by 30% as the triangularity was decreased by moving the X-point to larger radius, consistent with calculations of the dependence of E x B shear in the edge region on ion heat flux and X-point radius. Co-axial helicity injection reduced the inductive start-up flux, with plasmas ramped to 1 MA requiring 35% less inductive flux. Non-inductive current fraction (NICF) up to 65% is reached experimentally with neutral beam injection at plasma current I-p = 0.7 MA and between 70-100% with HHFW application at I-p = 0.3 MA. NSTX-U scenario development calculations project 100% NICF for a large range of 0.6 < I-p(MA) < 1.35 -
dc.identifier.bibliographicCitation NUCLEAR FUSION, v.53, no.10, pp.104007 -
dc.identifier.doi 10.1088/0029-5515/53/10/104007 -
dc.identifier.issn 0029-5515 -
dc.identifier.scopusid 2-s2.0-84884899120 -
dc.identifier.uri https://scholarworks.unist.ac.kr/handle/201301/16571 -
dc.identifier.url http://iopscience.iop.org/0029-5515/53/10/104007 -
dc.identifier.wosid 000325005600008 -
dc.language 영어 -
dc.publisher INT ATOMIC ENERGY AGENCY -
dc.title Overview of physics results from the conclusive operation of the National Spherical Torus Experiment -
dc.type Article -
dc.description.journalRegisteredClass scie -
dc.description.journalRegisteredClass scopus -
dc.subject.keywordPlus RESISTIVE WALL MODE -
dc.subject.keywordPlus EXPERIMENT NSTX -
dc.subject.keywordPlus INSTABILITIES -
dc.subject.keywordPlus PLASMAS -
dc.subject.keywordPlus TRANSPORT -
dc.subject.keywordPlus TOKAMAK -
dc.subject.keywordPlus STABILIZATION -
dc.subject.keywordPlus EDGE -
dc.subject.keywordPlus CONFINEMENT -
dc.subject.keywordPlus FACILITY -

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