The large tokamak JT-60: a history of the fight to achieve the Japanese fusion research mission

IF 0.8 4区 物理与天体物理 Q2 HISTORY & PHILOSOPHY OF SCIENCE
Mitsuru Kikuchi
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引用次数: 2

Abstract

Fusion research was driven by the oil shocks in 1970’s and the concern about climate change during 20th century. This paper addressed the scientific research history of JT-60, the tokamak that achieved record fusion performances and opened the way toward the continuous operation of a tokamak fusion reactor through its scientific discoveries. The paper also highlighted technical struggles to improve machine capabilities and to solve technical issues faced during the JT-60 project. The missions of JT-60 were to achieve equivalent energy break-even (Q = PDTequi. / Pheat ≥ 1) and to establish a scientific basis for fusion reactor. The JT-60 made several modifications to reach equivalent break-even condition and continued efforts were made by the JT-60 team to solve critical technical issues during 23 years of research operation. Scientific success of JT-60 led to current ITER projects and the modification of JT-60 to a superconducting tokamak, JT-60SA. This paper is intended to be useful for the future researchers and managers of large-scale project by giving dynamical evolutions and highlighting key players. I dedicate this paper to Hiroshi Kishimoto, who made an outstanding contribution in managing the JT-60 research project.

大型托卡马克JT-60:为实现日本聚变研究任务而奋斗的历史
20世纪70年代的石油危机和20世纪对气候变化的担忧推动了核聚变研究。本文介绍了创造聚变性能记录的托卡马克JT-60的科学研究历史,并通过其科学发现为托卡马克聚变反应堆的连续运行开辟了道路。该文件还强调了提高机器性能和解决JT-60项目中面临的技术问题的技术斗争。JT-60的任务是实现等效能量平衡(Q = PDTequi)。/ phe≥1),为核聚变反应堆建立科学依据。JT-60进行了几次修改以达到等效的收支平衡条件,并且在23年的研究操作中,JT-60团队继续努力解决关键技术问题。JT-60的科学成功导致了当前的ITER项目,并将JT-60修改为超导托卡马克,JT-60SA。本文旨在通过给出动态演变和突出关键参与者,为未来大型项目的研究人员和管理人员提供有用的信息。我谨以此篇论文献给在JT-60研究项目管理中做出杰出贡献的岸本浩。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
The European Physical Journal H
The European Physical Journal H HISTORY & PHILOSOPHY OF SCIENCE-PHYSICS, MULTIDISCIPLINARY
CiteScore
1.60
自引率
10.00%
发文量
13
审稿时长
>12 weeks
期刊介绍: The purpose of this journal is to catalyse, foster, and disseminate an awareness and understanding of the historical development of ideas in contemporary physics, and more generally, ideas about how Nature works. The scope explicitly includes: - Contributions addressing the history of physics and of physical ideas and concepts, the interplay of physics and mathematics as well as the natural sciences, and the history and philosophy of sciences, together with discussions of experimental ideas and designs - inasmuch as they clearly relate, and preferably add, to the understanding of modern physics. - Annotated and/or contextual translations of relevant foreign-language texts. - Careful characterisations of old and/or abandoned ideas including past mistakes and false leads, thereby helping working physicists to assess how compelling contemporary ideas may turn out to be in future, i.e. with hindsight.
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