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Finite-Element Analysis of Dump Resistor for Prototype Superconducting Magnet Carrying 3.60 MA-t

机译:原型超导磁体载重3.60 MA-t的自卸电阻的有限元分析

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Stability margin, transient ac responses, and protection of the magnet system in the case of abnormal quench are some of the important design drivers of superconducting magnets for fusion reactors. A prototype magnet has been designed using a cable-in-conduit conductor with a nominal operation current of 30 kA at 12 T and 5 K at the Institute for Plasma Research, Gandhinagar, India. Protection of the magnet system during off-normal scenarios leading to quench makes the operation of the magnet system more challenging. An external dump resistor is required to extract the stored magnetic energy of the magnet in case of quench. Such a dump resistor has been designed for this 3.60 MA-turns current-carrying prototype superconducting magnet. Finite-element thermal, structural, and electromagnetic analyses have been done for validating the dump resistor parameters using commercially available Ansys software. The maximum temperature rise of the dump resistor system $(R_{d})$ is found to be 540 K, considering cool down by natural convection only. In addition, the maximum stress between the parallel plates of the $R_{d}$ is found to be less than 1.0 GPa, which is in the acceptable range.
机译:聚变反应堆超导磁体的重要设计驱动因素包括稳定性裕量,瞬态交流响应以及在异常失超情况下对磁体系统的保护。在印度甘地纳加尔的等离子体研究所,使用导线内导体设计了一种原型磁体,该导体在12 T和5 K下的额定工作电流为30 kA。在非正常情况下对磁体系统的保护导致淬火,使磁体系统的操作更具挑战性。在失超的情况下,需要一个外部倾卸电阻来提取磁体存储的磁能。已经为这种3.60 MA匝的载流原型超导磁体设计了这样的泄放电阻器。已经使用市售的Ansys软件进行了有限元的热,结构和电磁分析,以验证转储电阻的参数。发现仅考虑自然对流冷却时,泄放电阻器系统$(R_ {d})$的最大温升为540K。另外,发现$ R_ {d} $的平行板之间的最大应力小于1.0GPa,在可接受的范围内。

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