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THE INTEGRATED DESIGN OF THE ITER MAGNETS AND THEIR AUXILIARY SYSTEMS

机译:异质磁铁及其辅助系统的集成设计

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The magnet system design for the International Thermonuclear Experimental Reactor (ITER) [1] hasrnreached a high degree of integration to meet performance and operation requirements, including reliability andrnmaintainability, in a cost effective manner. This paper identifies the requirements of long inductive burn time,rnlarge number of tokamak pulses, operational flexibility for the poloidal field (PF) system, magnet reliability andrnthe cost constraints as the main design drivers. Key features of the magnet system which stem from these designrndrivers are described, together with interfaces and integration aspects of certain auxiliary systems.
机译:国际热核实验堆(ITER)[1]的磁体系统设计已达到高度集成,可以经济高效地满足性能和运行要求,包括可靠性和可维护性。本文确定了长的感应燃烧时间,大量的托卡马克脉冲,极向场(PF)系统的操作灵活性,磁体可靠性以及成本约束等主要设计要求。描述了源自这些设计驱动器的磁体系统的关键特征,以及某些辅助系统的接口和集成方面。

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