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Integrated operation scenarios: Chapter 6 of the special issue: on the path to tokamak burning plasma operation

https://repo.qst.go.jp/records/2002705
https://repo.qst.go.jp/records/2002705
582f7108-afe5-4379-808b-41e1eb595666
アイテムタイプ 学術雑誌論文 / Journal Article(1)
公開日 2026-02-10
タイトル
タイトル Integrated operation scenarios: Chapter 6 of the special issue: on the path to tokamak burning plasma operation
言語 en
言語
言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_6501
資源タイプ journal article
著者 Yong-Su Na

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Yong-Su Na

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Eugenio Schuster

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Eugenio Schuster

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Robert V Budny

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Robert V Budny

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Andrea M Garofalo

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Andrea M Garofalo

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Sang-hee Hahn

× Sang-hee Hahn

Sang-hee Hahn

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Hyun-Tae Kim

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Hyun-Tae Kim

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Florian Koechl

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Florian Koechl

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Alexei R Polevoi

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Alexei R Polevoi

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Jayson Barr

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Jayson Barr

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Matteo Baruzzo

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Matteo Baruzzo

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Devon Battaglia

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Devon Battaglia

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Volodymyr Bobkov

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Volodymyr Bobkov

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Jinil Chung

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Jinil Chung

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Laurent Colas

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Laurent Colas

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Peter C de Vries

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Peter C de Vries

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Siye Ding

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Siye Ding

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Maksim Dubrov

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Maksim Dubrov

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Basilio Esposito

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Basilio Esposito

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Federico Felici

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Federico Felici

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Takaaki Fujita

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Takaaki Fujita

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Jeronimo Garcia

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Jeronimo Garcia

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Xianzu Gong

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Xianzu Gong

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Gustavo Granucci

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Gustavo Granucci

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Yuri Gribov

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Yuri Gribov

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Kazuaki Hanada

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Kazuaki Hanada

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Hayashi Nobuhiko

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Hayashi Nobuhiko

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Walid Helou

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Walid Helou

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Jörg Hobirk

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Jörg Hobirk

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Juan Huang

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Juan Huang

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Ide Shunsuke

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Ide Shunsuke

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Philippe Jacquet

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Philippe Jacquet

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抄録
内容記述タイプ Abstract
内容記述 Here we report the progress of the development and optimization of operational scenarios for ITER and beyond, focusing upon baseline, hybrid, and steady-state scenarios since 2007. This includes advancements made by the integrated operation scenarios (IOS) topical group of the international tokamak physical activity as well as contributions from the broader tokamak community. The key area of research involves developing IOSs that encompass tokamak physics, operation, and technology by utilizing integrated modeling and control strategies. This requires leveraging available actuators to simultaneously control plasma position and shape, MHD activities that could lead to disruptions, transport, plasma-wall interaction and power exhaust, fuel cycle, fusion burn, and tritium breeding. The control extends from the plasma initiation phase, through the current ramp-up, flattop, start and end of the fusion burn, and current ramp-down, to the plasma termination phase. A review of the currently developed scenarios and modeling is provided in terms of (i) optimizing plasma initiation in ITER, (ii) preparing for the low activation phase to fully commission all tokamak systems and establish and validate physics and scenario conditions in preparation for deuterim-tritium (DT) operation, (iii) developing and preparing baseline and hybrid scenarios to demonstrate the feasibility of achieving these regimes within device constraints, (iv) exploring steady-state scenarios to meet ITER’s steady-state goals, (v) evaluating and preparing actuators for ITER, (vi) developing integrated control solutions using shared actuators. The most notable achievements include; (i) the development of ITER demonstration discharges by matching various dimensionless parameters, (ii) the development of scenarios in an ITER-like tungsten environment and DT operation, and (iii) the development of scenarios in superconducting tokamaks, enabling long-pulse operations with similar coil constraints to ITER. Along with these significant achievements, outstanding issues and recommendations for further research and development are provided. Importantly, this study goes beyond simply updating the ITER Physics Basis; it carries profound implications for the broader field of burning plasma research, offering valuable insights and guidance for the next generation of fusion experiments and devices.
書誌情報 Nuclear Fusion

巻 65, p. 093001, 発行日 2025-08
出版者
出版者 IOP Publishing Ltd
DOI
識別子タイプ DOI
関連識別子 10.1088/1741-4326/ade79f
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