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Updating the design of the feeder components for the ITER magnet system

机译:更新用于ITER磁体系统的馈线组件的设计

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The ITER, superconducting magnet system generates an average heat load of 23 kW at 4 K to the cryoplant, from nuclear and thermal radiation, conduction and electromagnetic heating, and requires current supplies 10-68 kA to 48 individual coils. The helium flow to remove this heat, consisting of supercritical helium at pressures up to 1.0 MPa and temperature between 4.3 and 4.7 K, is distributed to the coils and structures through 30 separate feeder lines. The feeders also contain the electrical supplies to the coil, helium supply pipes and the instrumentation lines, and are integrated with the current lead transitions to room temperature. The components consist of the in-cryostat feeders, the cryostat feedthroughs and the coil terminal boxes (CTBs). This paper discusses the functional requirements on the feeder system and presents the latest design concept and parameters of the feeder components.
机译:ITER超导磁体系统通过核辐射和热辐射,传导和电磁加热,在4 K下为冷冻设备产生23 kW的平均热负荷,并需要向48个单独的线圈供电10-68 kA。用来除去这种热量的氦流通过30条独立的进料管线分配给线圈和结构,该氦流由压力高达1.0 MPa且温度介于4.3和4.7 K之间的超临界氦组成。馈线还包含线圈,氦气供应管和仪表线的电源,并且与电流引线到室温的过渡集成在一起。这些组件由低温恒温器内的馈线,低温恒温器馈通和线圈接线盒(CTB)组成。本文讨论了馈线系统的功能要求,并提出了馈线组件的最新设计概念和参数。

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