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Record W4390039420 · doi:10.1088/1741-4326/ad2fe9

DIII-D research to provide solutions for ITER and fusion energy

2024· article· en· W4390039420 on OpenAlexaff
C. T. Holcomb, Joseph Abbate, Alfredo Abe, A. Abrams, Promise Adebayo-Ige, Susan Agabian, S. Ahmed, N. Aiba, N. Akcay, Tsuyoshi Akiyama, Ryan Albosta, P. Aleynikov, S. L. Allen, H. Anand, James P. Anderson, Y. Andrew, M.B. Ashburn, Arash Ashourvan, Mariah J. Austin, G. Avdeeva, David Ayala, M. Ayub, E. Bagdy, Santanu Banerjee, K. Barada, L. Bardóczi, O. Bardsley, J.L. Barr, E.M. Bass, A. Battey, Z. Bayler, L. Baylor, Torrin Bechtel, Matthew Beidler, E. A. Belli, Thomas Benedett, Zachary Bergstrom, T. N. Bernard, N. Bertelli, R. Bielajew, G.M. Bodner, J.A. Boedo, R. L. Boivin, T. Bolzonella, P. T. Bonoli, A. Bortolon, Sayak Bose, Mark D. Boyer, W. Boyes, L. P. Bradley, R. Brambila, A. Braun, D. P. Brennan, Stefan Bringuier, Lisa Brodsky, M. W. Brookman, J. Brooks, D. L. Brower, W. Ted Brown, J. Buck, S. Buczek, D. Burgess, M.G. Burke, K. H. Burrell, Jalal Butt, R. J. Buttery, I. Bykov, P.J. Byrne, A. Cacheris, Kyle Callahan, J. D. Callen, D. B. Campbell, J. Candy, J. Canik, Luca Cappelli, T. Carlstrom, R. Carr, W. Carrig, B. Carter, T. Carter, I.S. Carvalho, W.P. Cary, L. Casali, Lennard Ceelen, M. Cengher, Ryan Chaban, V. S. Chan, B. H. Chapman, I. Char, J. Chen, R. Chen, X. Chen, Y. Chen, Jose A. Chiriboga, Eunjung Cho, G. J. Choi, Wonjae Choi, H. Choudhury, Satyajit Chowdhury, C. Chrystal, Yang Geun Chung, R.M. Churchill, R. Clark, M. Clément, Jonathan Coburn, S. Coda, Ryan Coffee, C. Collins, J. Colmenares-Fernandez, William Conlin, R.M. Coon, A. J. Creely, N. A. Crocker, C. Crowe, B.J.B. Crowley, T. P. Crowley, M. Curie, Davide Curreli, A. Dal Molin, J. Damba, Eli Dart, A. Dautt-Silva, K. Davda, A. De, N. de Boucaud, Y.L.C. de Jong, Peter de Vries, A. de-Villeroche, Genevieve DeGrandchamp, J.S. deGrassie, D. R. Demers, S. S. Denk, Earl William DeShazer, S. Di Genova, A. Diallo, A. M. Dimits, Rui Ding, S. Ding, David Donovan, Xiaodi Du, Alexander D. Dupuy, Jonah Duran, Andrew Dvorak, F. Effenberg, N.W. Eidietis, D. Elder, D. Eldon, Y. Elsey, D.A. Ennis, Keith Erickson, D. R. Ernst, M. Fajardo, H. Farre-Kaga, M.E. Fenstermacher, N.M. Ferraro, J. Ferron, A. Feyrer, P. J. Fimognari, R. Finden, D. F. Finkenthal, Richard Fitzpatrick, S. Flanagan, B. Ford, W. Fox, S. Freiberger, Liu Fu, K. Gage, Vaish Gajaraj, Iván García, F. García, A. Garcia, M. García-Muñoz, D. Garnier, A. M. Garofalo, Anthony Gattuso, B. Geiger, K. Gentle, Yashika Ghai, K. Gill, F. Glass, P. Gohil, Xianzu Gong, J. Gonzalez-Martin, Yu. A. Gorelov, Vincent Graber, R.S. Granetz, C. Thomas Gray, C. M. Greenfield, B. Grierson, R. J. Groebner, W. Grosnickle, M. Groth, S. Gu, Heng Guo, J. Guterl, W. Guttenfelder, R. Hager, S.H. Hahn, Michael Halfmoon, J. Hall, V. H. Hall-Chen, Federico David Halpern, G. W. Hammett, X. Han, C. Hansen, E.C. Hansen, J.M. Hanson, Michael O. Hanson, A. Harris, R. W. Harvey, S. R. Haskey, D. R. Hatch, W.H.J. Hayashi, Agnes Hayes, W. W. Heidbrink, J. L. Herfindal, J. Hicok, E.T. Hinson, T. Hisakado, C. Holcomb, C. Holland, L. Holland, E. M. Hollmann, A. Holm, I. Holmes, K.L. Holtrop, R. Hong, Ryan Hood, L. Horvath, Saeid Houshmandyar, N. T. Howard, E. C. Howell, Weida Hu, Yanglin Hu, Qiming Hu, Y. H. Huang, J. Huang, A.B. Huang, A. Hubbard, J. W. Hughes, Daniel Lewis Humphreys, Juan Carlos Hurtado, A.W. Hyatt, K. Imada, V. Izzo, Azarakhsh Jalalvand, S.C. Jardin, A. Järvinen, Y.M. Jeon, Hantao Ji, Xiang Jian, Jian Li, Y. Jiang, C. A. Johnson, J. R. Johnson, Matthew R. Jones, Sungyeop Joung, P. Jouzdani, E. Jung, E. Kallenberg, R. Kalling, David H. Kaplan, Alan A. Kaptanoglu, D.H. Kellman, J. Kennedy, P.O. Khabanov, J. Kim, H. Kim, Eun‐jin Kim, S. H. Kim, Kyungjin Kim, C. Kim, T. Kim, J.D. King, A. Kinsey, D. Kirk, D. Klasing, A. Kleiner, M. Knolker, M. Kochan, Bruce E. Koel, J.T.W. Koenders, M. E. Koepke, Robert Kolasinski, Egemen Kolemen, Evdokiya Kostadinova, Mark Kostuk, G. Krämer, R. Kube, N. Kumar, R. La Haye, F. M. Laggner, C. Lahban, H. Lan, Russell Landry, R. Lantsov, L. Lao, C.J. Lasnier, C. Lau, R. Leccacorvi, J. Leddy, M. Lee, S. Lee, K Lee, R. Lee, M. Lehnen, A. Léonard, E. Leppink, M. LeSher, Jeff Lestz, J.A. Leuer, N. Leuthold, G. S. Li, Xiang Li, Yang Li, L. Li, N. Li, Z. Li, D. Lin, Zhifang Lin, Y. Lin, E. Linsenmayer, J. Liu, D. Liu, D. Liu, Chang Liu, Zheng-Wei Liu, Yueqiang Liu, C. Liu, A. Loarte-Prieto, S. D. Loch, L.L. LoDestro, N.C. Logan, J. Lohr, J. Lore, Ulises Losada Rodríguez, John Loughran, M. Lowell, T. C. Luce, N. Luhmann, P. Lunia, R. Lunsford, Leonard Lupin‐Jimenez, A. Lvovskiy, B. Lyons, X. Ma, J. Ross Macdonald, Tanmay Macwan, R. Maingi, M. Major, Lakshya Malhotra, M. Margo, C. Marini, A. Marinoni, Assimo Maris, E. H. Martin, J. Mateja, Richard D. Mattes, R. Maurizio, D. Mauzey, Liam McAllister, G. McArdle, J. McClenaghan, K.J. McCollam, G. R. McKee, K. McLaughlin, A.G. McLean, Vedant Mehta, Eric Meier, S. J. Meitner, J. Ménard, O. Meneghini, G. Merlo, Sarah Messer, William H. Meyer, C. Michael, D. Miller, M.A. Miller, Jason W. Mitchell, E. Litvinova Mitra, Charles Moeller, Mohamed A. Mohamed, S. C. Molesworth, Kevin Montes, S. Mordijck, Shira Morosohk, Auna Moser, D. Mueller, S. Munaretto, C. Murphy, C. M. Muscatello, R. A. Myers, A. Nagy, D. Nath, M. Navarro, R. Nazikian, Tom Neiser, A. Nelson, P. Nesbet, F. Nespoli, Paul L. Nguyen, D. Nguyen, R. Nguyen, J.P. Nichols, M. Nocente, L. Nuckols, R. Nygren, T. Odstrčil, M. Okabayashi, Erik Olofsson, D.M. Orlov, David Orozco, Nicholas J. Osborne, T.H. Osborne, Finn H. O’Shea, Diego M. Díaz Pace, Drew A. Packard, André Martinez, C. Pakosta, Chengkang Pan, M. D. Pandya, Dario Panici, A.Y. Pankin, Y. Park, J. Park, J. Park, C. Parker, Scott Parker, P. B. Parks, Matthew Parsons, Sai Tej Paruchuri, C. Paz-Soldan, T. Pederson, W. A. Peebles, B.G. Penaflor, E. Perez, Lavanya Periasamy, R. Perillo, C. C. Petty, Matt Pharr, Dylan Pierce, C. Pierren, S. Pierson, A.Yu. Pigarov, L. Pigatto, D.A. Piglowski, S. D. Pinches, R. I. Pinsker, R.A. Pitts, J. Pizzo, M. Podestá, Ž. Popović, M. Porkolab, Quinn Pratt, G. Prechel, István Pusztai, P. Puthan-Naduvakkate, J. Qian, Xijie Qin, Ookjoo Ra, T. Raines, Kole Rakers, Katharina Rath, J. Rauch, Cristina Rea, Robert A. Reed, A. Reiman, M. Reinke, R. Reksoatmodjo, Qilong Ren, Jun Ren, Y. Ren, M. E. Rensink, T. L. Rhodes, N.J. Richner, J. Ridzon, Greg A. Riggs, J. Riquezes, P. Rodriguez-Fernandez, T.D. Rognlien, G. Ronchi, L. Rondini, Rodrigo Rosati, A. Rosenthal, M.P. Ross, J. C. Rost, A. Rothstein, J.J. Roveto, J. Ruane, D.L. Rudakov, R. Rupani, Gayle Rutherford, S.A. Sabbagh, Jai Sachdev, Nahid Sadeghi, Ari Salmi, F. Salvador, B. Sammuli, C.M. Samuell, A. M. Sandorfi, Chaofeng Sang, D. Santa, J. S. Sarff, O. Sauter, H. Savelli, C. E. Schaefer, Hanna Schamis, J. Schellpfeffer, D. P. Schissel, L. Schmitz, O. Schmitz, P. Schroeder, K. Schultz, Eugenio Schuster, F. Sciortino, F. Scotti, J. T. Scoville, Andrew Seltzman, Jaemin Seo, J. Serrano, I. Sfiligoi, M.W. Shafer, R. Shapov, H. Shen, N. Shi, D. Shiraki, B. Short, Ricardo Shousha, Hang Si, Carlos Sierra, G. Sinclair, P. Sinha, G. Sips, Charles Skinner, T. Slendebroek, J.H. Slief, R.D. Smirnov, S. Smith, D. R. Smith, G. Snoep, P. Snyder, W.M. Solomon, X. Y. Song, A.C. Sontag, V. Soukhanovskii, D. A. Spong, Jared Squire, G. M. Staebler, L. Stagner, T. Stange, P.C. Stangeby, E. Starling, S. Stewart, T. Stoltzfus-Dueck, Stephen Storment, E. J. Strait, David Su, L. Sugiyama, P. J. Sun, Y. Sun, X. Sun, C. Sung, W. Suttrop, Yasuo Suzuki, R. Sweeney, Benjamin T. Taczak, Y. Takemura, W. M. Tang, G. Tardini, D. Taussig, K. Teixeira, Kyle A. Thackston, Deepa Thomas, K. E. Thome, Y. Tinguely, M. Tobin, J.F. Tooker, A. Torrezan de Sousa, P. Traverso, G. Trevisan, E. Trier, Dinh Truong, C.K. Tsui, F. Turco, A. Turnbull, L. Turner, E.A. Unterberg, B. Van Compernolle, R. van Kampen, M. Van Zeeland, B.S. Victor, R. Vieira, E. Viezzer, S. Vincena, Devin Vollmer, J. Wai, M.L. Walker, R. E. Waltz, W.R. Wampler, L. Wang, Y. Wang, H. Wang, Z. Wang, G. Wang, A. Wang, J.G. Watkins, M.L. Watkins, T. L. Watts, Lynne Webber, Kela P. Weber, W. Wehner, Xishuo Wei, David B. Weisberg, A.S. Welander, Amy B. Welsh, A. E. White, R.S. Wilcox, George Wilkie, T. M. Wilks, M. Willensdorfer, Harold S. Wilson, A. Wingen, Muquan Wu, Dajun Wu, S.J. Wukitch, J. Xia, Ruifeng Xie, Z. Xing, Guosheng Xu, X. Q. Xu, Z. Yan, Xu Yang, L. Yang, S.M. Yang, J. Yang, Min-Gu Yoo, Gang Yu, J.H. Yu, A. Zalzali, A. Zamengo, V. Zamkovska, Shawn Zamperini, K. Zarrabi, Emi Zeger, K. Zeller, Long Zeng, X. Zhang, J. Zhang, B. Zhang, Bingzhe Zhao, Chunli Zhao, Yuan Zheng, Yilun Zhu, Jizhao Zhu, J. P. Ziegel, Frederick J. Zimmerman, Carlos Zúñiga

Bibliographic record

VenueNuclear Fusion · 2024
Typearticle
Languageen
FieldPhysics and Astronomy
TopicMagnetic confinement fusion research
Canadian institutionsUniversity of Toronto
FundersFusion Energy SciencesOffice of ScienceU.S. Department of Energy
KeywordsDivertorPedestalTokamakDIII-DNuclear engineeringFusion powerPlasmaPhysicsComputational physicsMechanicsMaterials scienceNuclear physics

Abstract

fetched live from OpenAlex

Abstract The DIII-D tokamak has elucidated crucial physics and developed projectable solutions for ITER and fusion power plants in the key areas of core performance, boundary heat and particle transport, and integrated scenario operation, with closing the core-edge integration knowledge gap being the overarching mission. New experimental validation of high-fidelity, multi-channel, non-linear gyrokinetic turbulent transport models for ITER provides strong confidence it will achieve Q ⩾ 10 operation. Experiments identify options for easing H-mode access in hydrogen, and give new insight into the isotopic dependence of transport and confinement. Analysis of 2,1 islands in unoptimized low-torque IBS demonstration discharges suggests their onset time occurs randomly in the constant β phase, most often triggered by non-linear 3-wave coupling, thus identifying an NTM seeding mechanism to avoid. Pure deuterium SPI for disruption mitigation is shown to provide favorable slow cooling, but poor core assimilation, suggesting paths for improved SPI on ITER. At the boundary, measured neutral density and ionization source fluxes are strongly poloidally asymmetric, implying a 2D treatment is needed to model pedestal fuelling. Detailed measurements of pedestal and SOL quantities and impurity charge state radiation in detached divertors has validated edge fluid modelling and new self-consistent ‘pedestal-to-divertor’ integrated modeling that can be used to optimize reactors. New feedback adaptive ELM control minimizes confinement reduction, and RMP ELM suppression with sustained high core performance was obtained for the first time with the outer strike point in a W-coated, compact and unpumped small-angle slot divertor. Advances have been made in integrated operational scenarios for ITER and power plants. Wide pedestal intrinsically ELM-free QH-modes are produced with more reactor-relevant conditions, Low torque IBS with W-equivalent radiators can exhibit predator-prey oscillations in T e and radiation which need control. High- β P scenarios with q min &gt; 2, q 95 –7.9, β N &gt; 4, β T –3.3% and H 98y2 &gt; 1.5 are sustained with high density ( <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" overflow="scroll"> <mml:mrow> <mml:mrow> <mml:mover> <mml:mi>n</mml:mi> <mml:mo stretchy="false">¯</mml:mo> </mml:mover> </mml:mrow> </mml:mrow> </mml:math> = 7E19 m −3 , f G –1) for 6 τ E , improving confidence in steady-state tokamak reactors. Diverted NT plasmas achieve high core performance with a non-ELMing edge, offering a possible highly attractive core-edge integration solution for reactors.

Fetched live from OpenAlex and de-inverted. Abstracts are not stored in this database: the inverted indexes are 8.6 GB of the frame’s 9.3 GB of text, and the host has 13 GB free.

How this classification was reachedexpand

Full frame distilled prediction

Teacher imitation

Not calibrated prevalence, not ground truth. Human validation pending. Learned from the 10,348 direct Codex labels and 10,348 direct Gemma labels. Candidate is the union of thresholded teacher heads; consensus is their intersection. These outputs are machine_predicted_unvalidated and are not human labels or direct frontier model labels.

metaresearch head score (Codex)0.001
metaresearch head score (Gemma)0.000
Version: codex-gemma-dda1882f352aValidation status: machine_predicted_unvalidated
Candidate categoriesInsufficient payload (model declined to judge)
Consensus categoriesnone
DomainCandidate signal: none · Consensus signal: none
Study designCandidate signal: Not applicable · Consensus signal: none
GenreCandidate signal: Empirical · Consensus signal: Empirical
Teacher disagreement score0.807
Threshold uncertainty score0.959

Codex and Gemma teacher scores by category

CategoryCodexGemma
Metaresearch0.0010.000
Meta-epidemiology (narrow)0.0000.000
Meta-epidemiology (broad)0.0000.000
Bibliometrics0.0000.000
Science and technology studies0.0000.000
Scholarly communication0.0000.000
Open science0.0000.001
Research integrity0.0000.000
Insufficient payload (model declined to judge)0.0420.000

Machine scores (provisional)

The two teacher heads of the student model, read on this work. A score orders the frame for review; it never asserts a category, and the validation status ships verbatim with every row.

Baseline scores from an immature model (maturity gate not passed, 7 training rounds). Scores rank; they never assert a category.

Opus teacher head0.043
GPT teacher head0.329
Teacher spread0.286 · how far apart the two teachers sit on this one work
Validation statusscore_only:v0-immature-baseline · verbatim from the scoring run: score_only means the number may rank works, and no category label ships from it

Classification

machine, unvalidated

Machine predicted; a candidate call from one teacher head, not a consensus.

Study designNot applicable
Domainnot available
GenreEmpirical

How this classification was reached, model by model and score by score, is at the end of the page under "How this classification was reached".

Quick stats

Citations10
Published2024
Admission routes1
Has abstractyes

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