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Design of the room temperature insulation breaks for ITER correction coil feeders

机译:ITER校正线圈给料机的室温绝缘断裂设计

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The room temperature insulation breaks (RTIBs) for the International Thermonuclear Experimental Reactor (ITER) project insulate the helium (He) outlets of the High Temperature Superconducting (HTS) current leads in the feeders, which can be at up to 30 kV, from the grounded pipework returning the gas to the liquefier plant. Gaseous He at RT is particularly vulnerable to electrical breakdown, requiring an additional design effort as compared to that for cryogenic IBs with more than hundred times denser cryogenic He. To satisfy the working requirements, stainless steel (SS) pipes and glass fiber reinforced plastic (GFRP) were used to develop the RTIBs for the ITER Correction Coil (CC) feeders. Electrical and mechanical analyses of the RTIBs using finite element models were performed. In particular, the electric field distribution along the helium gas path and possible de-bonding or shear failure of the composite were investigated. In this paper, the results of the analysis are discussed. Further experiments indicate the designed RTIB can satisfy the functional requirements.
机译:国际热核实验堆(ITER)项目的室温绝缘断裂(RTIBs)将馈线中的高温超导(HTS)电流引线的氦气(He)出口绝缘,最高可与30 kV接地的管道将天然气返回液化厂。 RT下的气态He尤其容易发生电击穿,与致密低温He百倍的低温IB相比,需要额外的设计工作。为了满足工作要求,使用不锈钢(SS)管和玻璃纤维增​​强塑料(GFRP)来开发用于ITER校正线圈(CC)进料器的RTIB。使用有限元模型对RTIB进行了电气和机械分析。特别是,研究了沿氦气路径的电场分布以及复合材料可能发生的脱粘或剪切破坏。本文讨论了分析结果。进一步的实验表明,所设计的RTIB可以满足功能要求。

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