托卡马克核聚变
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EAST是一个全超导的托卡马克核聚变实验装置,磁体采用超临界氦迫流冷却。
Experimental Advanced Superconducting Tokamak ( EAST ) is a fully superconducting fusion device .
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冷屏是EAST超导托卡马克核聚变实验装置的重要部件之一。
The thermal shield ( TS ) is a main part of EAST superconducting Tokamak .
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EAST托卡马克核聚变实验装置是世界上从事核聚变研究的先进科学设备。
EAST is an advanced device for the study of nuclear fusion around the world .
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介绍了EAST托卡马克核聚变实验装置技术诊断数据采集系统设计。
In this paper the data acquisition system of technical diagnosis of the Tokamak experimental device for nuclear fusion is introduced .
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本文旨在对国家重大科学工程项目EAST(HT-7U)超导托卡马克核聚变实验装置的大型超导磁体关键技术作一介绍。
In this paper , the key technologies of large scale magnet for the EAST superconducting tokamak are introduced .
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HT-7超导托卡马克核聚变装置中中央定时系统实现
Realization of central timing system of HT-7 superconduction Tokamak fusion device
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HT-7U托卡马克核聚变装置中纵场超导磁体系统的设计
Design of toroidal field magnet system for superconducting tokamak HT-7U
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EAST真空室作为超高真空压力容器是EAST超导托卡马克核聚变实验装置的关键部件之一,是等离子体放电的直接场所,其获得的真空度质量直接影响装置运行时等离子体的各项基本物理参数。
The vacuum vessel as an ultrahigh vacuum pressure vessel is one of the important components of the EAST device , providing high quality vacuum conditions for the plasma discharge , which will affect greatly all kinds of plasma parameter .
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介绍了振动时效技术在HT-7U超导托卡马克核聚变大底板、真空装置等能源工程中的应用。
The technology of vibratory stress relief ( VSR ) used in energy engineering , such as HT-7U nuclear fusion superconducting Tokamak massive base plate and vacuum vessel was introduced .
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托卡马克核聚变装置主机安装测量控制基准建立
Establishment of the Survey Control Networks for EAST Tokamak Device Assembly
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实验表明,该爆炸断路器系统满足超导磁体失超后备保护开关系统的要求,将被应用于托卡马克核聚变装置中。
The result shows that this kind of breaker system meets the requirements of the quenching protection breaker system , which will be used in Tokamak device .
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为了研制托卡马克核聚变装置中的大功率抽超后备保护开关,介绍了一种爆炸断路器系统的基本结构及其工作原理,给出了爆炸断路器设计的原则。
In order to study and manufacture a large power backup quenching protection breaker in the Tokamak device , this paper introduces the configuration and the operation principle of a special explosive breaker system , and gives its design principle .
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在托卡马克核聚变实验装置中,装置的热负荷计算、导体超导性能和运行稳定性都与运行温度有很大关系,因而要求低温的温度测量有较高测量精度。
In the tokamak , heat load of the device , the superconducting conductor 's performance and the operating stability , all of these are related to the operating temperature in the tokamak experimental device for nuclear fusion , so we need the high measure precision for Low Temperature Sensors .